evidence_id	paper_id	publication_year	paper_title	doi	article_gene_name	article_gene_or_locus_id	accession	sequence_database	sequence_type	article_reported_length	retrieved_nucleotide_length	retrieved_protein_length	current_ncbi_loc_id	website_standard_gene_id	current_ncbi_geneid	ncbi_protein_id	reference_assembly_accession	alignment_source	percent_identity	query_coverage_percent	alignment_length	mapping_confidence	website_annotation	current_site_predicted_localization	mapping_evidence	article_experimental_localization	article_direct_interactor	nucleotide_sequence_5_to_3	protein_sequence_1_letter	sequence_source	sequence_availability	evidence_classification	source_url
CORE-006_PP663235	CORE-006	2026	Functional characterization of SmNRAMP1 allelic variants conferring reduced cadmium uptake in Salvia miltiorrhiza.	10.1186/s12870-026-08145-1	SmNRAMP1		PP663235	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	1593	530	LOC131005059	SmilChr01G004712	131005059		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	99.435	100.0	1593	Exact or near-exact sequence match	metal transporter Nramp1		Article-linked accession PP663235; GenBank CDS; active nuclear reference unique top gene LOC131005059; CDS BLAST 99.435% identity/100.00% query span; protein top gene agrees			ATGGCTGCGCCGCCAGTTCAGCCGCAGTTTATGACCACCACCGACCGCAGAACTCATCCCGACGAGTCGCTCATTGATAATATTGAATATGATCAGATTGTTGTGCCGGAGCATAAAAGCTGGAAGAACTTGTTTTCATATATCGGGCCAGGGTTTCTTGTTTGCATTGCTTATATTGATCCAGGAGATTTTCAGACGGATCTGCAGGCCGGAGCTCAGTATAAGTATGGACTACTTTGGATCATATTGCTTGCTTCATGTGCGGCCCTTATTATTCAATCTCTCGCAGCAAACCTAGGAGTTGTTACAGGAAAGCATTTAGCTGAGCACTGTCGAAAGGAATACCCAAGAGTCCCAAATTTTATTTTGTGGATTCTTGCTGAAATAGCCATAGTTGCATGTGACATTCCTGAAGTTATTGGAACAGCATTTGCTCTGAACATGCTTTTCAATATTCCACTGTGGTGCGGTGTGCTTATAACAGGACTTAGTACGTTGGTTCTTCTGTTGCTGCAGCAATACGGGGTGAGAAAGTTTGAGATTTTTATCGCTTTCCTTGTCTTAACAATTGCTGGCTGCTTCTTTGCTGAACTTGGTTATGCAAAGCCCAACTCATCGGAAGTTTTACAAGGCCTTTTTGTTCCCCAACTTAAGGGGAGCGGAGCTACTAAGCTGGCTATTTCACTCCTCGGTGCTATGGTTACGCCGCACAATCTTTTCCTCCATTCAGCATTGGTGCTCTCTAGGAAAATCCCACGATCTGTCAGTGGTATCAAAGAGGCATGCAGATTTTACATGATAGAAAGTGGCTTCGCCTTACTGGTTGCCTTCTTCATCAACATATCAGTTATCTCAGTTAGCGGGGCTGTTTGCAATTCACCGAATCTTAACTCAAAGGAGCATGAAAGCTGCGAGAGCTTGGACCTGAATGAAGCTTCCTTTTTACTTAAGAATGTTCTCGGCAGTTGGAGTTCCAAGCTTTTTGCAATTGCTTTGCTGGCATCAGGACAGAGCTCGACCATAACGGGAACATATGCTGGACAGTATGTTATGCAGGGATTCCTTGACTTGCGGCTGAAGCCATGGATTAGGAACTTTTTAACTCGATGTTTAGCAATTGTTCCTAGTTTAATTGTAGCAATTATCGGTGGAGCTTCTGGGGCTGGAAACTTGATCATCATAGCATCGATGATCTTATCGTTCGAACTTCCTTTTGCACTAATTCCACTTCTGAAGTTCACAAGTTGCAAGACCAAGATGGGCTTATATGTCAACTCATTTGCTATTGCAGCCACTACTTGGATCATCGGCTTCTTGATCATGGGCATCAACATCTTCTACCTAGCTGAAAAGCTAGTGACTTCCCTCCGTCATAGCAGACTGAGCACCGTGGGCATCGTGTTTTGTGGACTGTTGGGGGTCTTGGCCATGCTCGTTTACCTATCCAGCATCGCGTATTTGGTGATCCGTAAGAACAAGGAGGGCTCTCACCTTATCGCGTTGTCGGATAGGCAGGAGGAGAATGCTAGCCTACCTAGACAGGACATAGCTAACATGCAATTACCTCAAACAAGAACAACTGATCATCTTTGA	MAAPPVQPQFMTTTDRRTHPDESLIDNIEYDQIVVPEHKSWKNLFSYIGPGFLVCIAYIDPGDFQTDLQAGAQYKYGLLWIILLASCAALIIQSLAANLGVVTGKHLAEHCRKEYPRVPNFILWILAEIAIVACDIPEVIGTAFALNMLFNIPLWCGVLITGLSTLVLLLLQQYGVRKFEIFIAFLVLTIAGCFFAELGYAKPNSSEVLQGLFVPQLKGSGATKLAISLLGAMVTPHNLFLHSALVLSRKIPRSVSGIKEACRFYMIESGFALLVAFFINISVISVSGAVCNSPNLNSKEHESCESLDLNEASFLLKNVLGSWSSKLFAIALLASGQSSTITGTYAGQYVMQGFLDLRLKPWIRNFLTRCLAIVPSLIVAIIGGASGAGNLIIIASMILSFELPFALIPLLKFTSCKTKMGLYVNSFAIAATTWIIGFLIMGINIFYLAEKLVTSLRHSRLSTVGIVFCGLLGVLAMLVYLSSIAYLVIRKNKEGSHLIALSDRQEENASLPRQDIANMQLPQTRTTDHL	NCBI GenBank PP663235.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/PP663235.1
CORE-006_PP663236	CORE-006	2026	Functional characterization of SmNRAMP1 allelic variants conferring reduced cadmium uptake in Salvia miltiorrhiza.	10.1186/s12870-026-08145-1	SmNRAMP1		PP663236	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	1593	530	LOC131005059	SmilChr01G004712	131005059		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	99.937	100.0	1593	Exact or near-exact sequence match	metal transporter Nramp1		Article-linked accession PP663236; GenBank CDS; active nuclear reference unique top gene LOC131005059; CDS BLAST 99.937% identity/100.00% query span; protein top gene agrees			ATGGCTGCGCCGCCAGTTCAGCCGCAGTTTATGACCACCACCGACCGCAGAACTCATCCCGACGAGTCGCTCATTGATAATATTGAATATGATCAGATTGTTGTGCCGGAGAATAAAAGCTGGAAGAACTTGTTTTCATATATCGGCCCAGGGTTTCTTGTTTGCATTGCTTATATTGATCCAGGAAATTTTCAGACGGATCTGCAGGCCGGAGCTCAGTATAAGTATGGACTACTTTGGATCATATTGCTTGCTTCATGTGCGGCCCTTATTATTCAATCTCTCGCAGCAAACCTAGGAGTTGTTACAGGAAAGCATTTAGCTGAGCACTGTCGAAAGGAATACCCAAGAGTCCCAAATTTTATTTTGTGGATTCTTGCTGAAATAGCCATAGTTGCATGTGACATTCCTGAAGTTATTGGAACAGCATTTGCTCTGAACATGCTTTTCAATATTCCACTGTGGTGCGGTGTGCTTATAACAGGACTTAGTACGTTGGTTCTTCTGTTGCTGCAGCAATACGGGGTGAGAAAGCTTGAGATTTTTATCGCTTTCCTTGTCTTAACAATTGCTGGCTGCTTCTTTGCTGAACTTGGTTATGCAAAGCCCAACTCATCGGAAGTTTTACAAGGCCTTTTTGTTCCCCAACTTAAGGGGAGCGGAGCTACTAAGCTGGCTATTTCACTCCTCGGTGCTATGGTTATGCCGCACAATCTTTTCCTCCATTCAGCATTGGTGCTCTCTAGGAAAATCCCACGATCTGTCAGTGGTATCAAAGAGGCATGCAGATTTTACATGATAGAAAGTGGCTTCGCCTTACTGGTTGCCTTCTTCATCAACATATCAGTTATCTCAGTTAGCGGGGCTGTTTGCAATTCACCGAATCTTAACTCAAAGGAGCTTGAAAGCTGCGAGAGCTTGGACCTGAATGAAGCTTCCTTTTTACTTAAGAATGTTCTCGGCAGTTGGAGTTCCAAGCTTTTTGCAATTGCTTTGCTGGCATCAGGACAGAGCTCGACCATAACGGGAACATATGCTGGACAGTATGTTATGCAGGGATTCCTTGACTTGCGGCTGAAGCCATGGATTAGGAACTTTTTAACTCGATGTTTAGCAATTGTTCCTAGTTTAATTGTAGCAATTATCGGTGGAGCTTCTGGGGCTGGAAACTTGATCATCATAGCATCGATGATCTTATCGTTCGAACTTCCTTTTGCACTAATTCCGCTTCTGAAGTTCACAAGTTGCAAGACCAAGATGGGCTTATATGTCAACTCATTTGCTATTGCAGCCACTACTTGGATCATCGGCTTCTTGATCATGGGCATCAACATCTTCTACCTAGCTGAAAAGCTAGTGACTTCCCTCCGTCATAGCAGACTGAGCATCGTGGGCATCGTGTTTTGTGGACTGTTGGGGGTCTTGGCCATGCTCGTTTACCTATCCAGCATCGCGTATTTGGTGATCCGTAAGAACAAGGAGGGCTCTCACCTTATCGCGTTGTCGGATAGGCAGGAGGAGAATGCTAGCCTACCTAGACAGGACATAGCTAACATGCAATTACCTCAAACAAGAACAACTGATCATCTTTGA	MAAPPVQPQFMTTTDRRTHPDESLIDNIEYDQIVVPENKSWKNLFSYIGPGFLVCIAYIDPGNFQTDLQAGAQYKYGLLWIILLASCAALIIQSLAANLGVVTGKHLAEHCRKEYPRVPNFILWILAEIAIVACDIPEVIGTAFALNMLFNIPLWCGVLITGLSTLVLLLLQQYGVRKLEIFIAFLVLTIAGCFFAELGYAKPNSSEVLQGLFVPQLKGSGATKLAISLLGAMVMPHNLFLHSALVLSRKIPRSVSGIKEACRFYMIESGFALLVAFFINISVISVSGAVCNSPNLNSKELESCESLDLNEASFLLKNVLGSWSSKLFAIALLASGQSSTITGTYAGQYVMQGFLDLRLKPWIRNFLTRCLAIVPSLIVAIIGGASGAGNLIIIASMILSFELPFALIPLLKFTSCKTKMGLYVNSFAIAATTWIIGFLIMGINIFYLAEKLVTSLRHSRLSIVGIVFCGLLGVLAMLVYLSSIAYLVIRKNKEGSHLIALSDRQEENASLPRQDIANMQLPQTRTTDHL	NCBI GenBank PP663236.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/PP663236.1
P014_KY435890	P014	2025	Overexpression of SmGRAS5 enhances tolerance to abiotic stresses in Salvia miltiorrhiza.	10.1016/j.plaphy.2025.109669	SmGRAS5		KY435890	NCBI GenBank	full-length ORF	not reported in the checked text	1041	346	LOC131024222	SmilChr05G002318	131024222		GCF_028751815.1	nucleotide	99.232	100.0	1041	Exact or near-exact sequence match	GRAS family protein RAM1-like	Nucleus (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"ATGAGTTCTGCTACTGGCAGTCCTATTCAGAGATTAGCTTTCTATCTCTCTGAAGCACTC
AGTTTGAAGATTGCTAATGAAGATAGAGAAAAGAAGCAACACGAGAAGAAGAAACTGGTG
GTCAGGCATTTAGAGCCAACAAAGTGTGTGAATTCGATTCCTATTTATTTCAAGCAGTTT
CCTGTCACTCAGATTACCAATCTAGTCGGAAGCCACACCATTCTACATTATCTGGATAAG
GTGAGAAGGATCCACATCGTTGATCTTGAGATCAGGAGTGGAGTGCAGTGGGTGCAGTTT
ATGCAGGATGCTTCTGCGCCAAGTGAGCATCCTATCCAGCATCTCAAGATCACTGCTGTT
GGGACCAGCTCAAAAAAGTCGATTCTGGAGGAGACGGGTAGGCAACTGGCAAGCTTTGCT
GAGTCTGTGAGCTTGAAGTTCACTTTTGGGGTAGTGGTGGTGGAGGATGTTTTAGAGCTG
AATCAAGACCTGTTTGAGCTCGATGCTGATGAAGCTGTCGTTGTTTATGCAGCCTACAGT
CTGGTGACGATGGTTGGAAGGGCTGAGCGTCTTAATCATGTGATGGAGGTCATCAAAAGC
CTGAGGCCTTGTATCATGGTGGTCACGGAAATGGAGGCCAACTGTAACTCTCCGAGCTTC
ACAGAGCGTTTTGTTGAGAGTTTGTTTATGTTTGGTGCATTGTTCGATTCTCTGGCAGAG
TGTTTGAAGGGTGAAGAGACGAGTAGAATGGATATCGAGTCCACGTTGTTTAGGTCATCC
ATAAACAATGTGTTGGCAGCTGAAGGAGATGAGATGATGCTGAGGCATGTTCCTATACAT
GTTTGGAGGGCTTCTTTTGATGGTTTTGGACTGCTGGAGACGGAACTGAGCTTCTCGTCT
CTGGAGCAAGCTAATTTGCTGCTCCGAGATTTCTCCTATGGGAGCTCCGTCACATTGTGC
AGGAACGGTGGATGCCTAACCGTTGGTTGGAAGGGGACGCCGCTTACTTCACTATCTGCT
TGGAAGCTTCCCAAACACTGA"	"MSSATGSPIQRLAFYLSEALSLKIANEDREKKQHEKKKLVVRHLEPTKCVNSIPIYFKQF
PVTQITNLVGSHTILHYLDKVRRIHIVDLEIRSGVQWVQFMQDASAPSEHPIQHLKITAV
GTSSKKSILEETGRQLASFAESVSLKFTFGVVVVEDVLELNQDLFELDADEAVVVYAAYS
LVTMVGRAERLNHVMEVIKSLRPCIMVVTEMEANCNSPSFTERFVESLFMFGALFDSLAE
CLKGEETSRMDIESTLFRSSINNVLAAEGDEMMLRHVPIHVWRASFDGFGLLETELSFSS
LEQANLLLRDFSYGSSVTLCRNGGCLTVGWKGTPLTSLSAWKLPKH"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1016/j.plaphy.2025.109669
P024_KY435890	P024	2025	SmGRAS5 acts as a positive regulator in GA-induced biosynthesis of tanshinones in Salvia miltiorrhiza hairy roots.	10.1016/j.plantsci.2025.112440	SmGRAS5		KY435890	NCBI GenBank	full-length ORF	not reported in the checked text	1041	346	LOC131024222	SmilChr05G002318	131024222		GCF_028751815.1	nucleotide	99.232	100.0	1041	Exact or near-exact sequence match	GRAS family protein RAM1-like	Nucleus (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmGRAS5: nucleus		"ATGAGTTCTGCTACTGGCAGTCCTATTCAGAGATTAGCTTTCTATCTCTCTGAAGCACTC
AGTTTGAAGATTGCTAATGAAGATAGAGAAAAGAAGCAACACGAGAAGAAGAAACTGGTG
GTCAGGCATTTAGAGCCAACAAAGTGTGTGAATTCGATTCCTATTTATTTCAAGCAGTTT
CCTGTCACTCAGATTACCAATCTAGTCGGAAGCCACACCATTCTACATTATCTGGATAAG
GTGAGAAGGATCCACATCGTTGATCTTGAGATCAGGAGTGGAGTGCAGTGGGTGCAGTTT
ATGCAGGATGCTTCTGCGCCAAGTGAGCATCCTATCCAGCATCTCAAGATCACTGCTGTT
GGGACCAGCTCAAAAAAGTCGATTCTGGAGGAGACGGGTAGGCAACTGGCAAGCTTTGCT
GAGTCTGTGAGCTTGAAGTTCACTTTTGGGGTAGTGGTGGTGGAGGATGTTTTAGAGCTG
AATCAAGACCTGTTTGAGCTCGATGCTGATGAAGCTGTCGTTGTTTATGCAGCCTACAGT
CTGGTGACGATGGTTGGAAGGGCTGAGCGTCTTAATCATGTGATGGAGGTCATCAAAAGC
CTGAGGCCTTGTATCATGGTGGTCACGGAAATGGAGGCCAACTGTAACTCTCCGAGCTTC
ACAGAGCGTTTTGTTGAGAGTTTGTTTATGTTTGGTGCATTGTTCGATTCTCTGGCAGAG
TGTTTGAAGGGTGAAGAGACGAGTAGAATGGATATCGAGTCCACGTTGTTTAGGTCATCC
ATAAACAATGTGTTGGCAGCTGAAGGAGATGAGATGATGCTGAGGCATGTTCCTATACAT
GTTTGGAGGGCTTCTTTTGATGGTTTTGGACTGCTGGAGACGGAACTGAGCTTCTCGTCT
CTGGAGCAAGCTAATTTGCTGCTCCGAGATTTCTCCTATGGGAGCTCCGTCACATTGTGC
AGGAACGGTGGATGCCTAACCGTTGGTTGGAAGGGGACGCCGCTTACTTCACTATCTGCT
TGGAAGCTTCCCAAACACTGA"	"MSSATGSPIQRLAFYLSEALSLKIANEDREKKQHEKKKLVVRHLEPTKCVNSIPIYFKQF
PVTQITNLVGSHTILHYLDKVRRIHIVDLEIRSGVQWVQFMQDASAPSEHPIQHLKITAV
GTSSKKSILEETGRQLASFAESVSLKFTFGVVVVEDVLELNQDLFELDADEAVVVYAAYS
LVTMVGRAERLNHVMEVIKSLRPCIMVVTEMEANCNSPSFTERFVESLFMFGALFDSLAE
CLKGEETSRMDIESTLFRSSINNVLAAEGDEMMLRHVPIHVWRASFDGFGLLETELSFSS
LEQANLLLRDFSYGSSVTLCRNGGCLTVGWKGTPLTSLSAWKLPKH"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1016/j.plantsci.2025.112440
P013_PQ882505	P013	2025	Discovery of the roles of SmMAPK4 in regulating tanshinone biosynthesis in Salvia miltiorrhiza.	10.1111/nph.70825	SmMAPK4	MAPK(026751) (article transcriptome locus)	PQ882505	NCBI GenBank	sequence record	not reported in the checked text	1134	377	LOC131020684	SmilChr04G003884	131020684	XP_057805646.1	GCF_028751815.1	protein	100.0	100.0	377	Exact or near-exact sequence match	mitogen-activated protein kinase homolog MMK2	Nucleus (1.000); Cytoplasm (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmMAPK4: nucleus and cytoplasm	SmMAPK4 - SmBTS1 (Y2H; GST pull-down; Co-IP in Nicotiana benthamiana; split-firefly luciferase complementation)	"ATGTCGGCTATGTCGAAGGAGTCGAGCTCAGGTGATCACGGTGGAAATAATTTCCATGGC
GTGCCAACGCATGGCGGGAGATATATGCAGTACAATTTGTACGGAAATCTCTTCGAAGTT
TCTAGAAAGTATGTCCCTCTCAGGCCCGTCGGCCGTGGGGCCTATGGCATTGTATGTGCC
GCTGTAAACTCTGAGACACGTGAAGAAGTCGCCATTAAGAAGATTGGCAATGCATTTGAT
AATAGAATTGATGCCAAGAGGACATTACGAGAAATCAAACTTCTACTTCACATGGATCAT
GATAATGTGATCGCAATTAAAGACATAATACGGCCACCACAGAAGGAGAACTTCAACGAT
GTGTACATTGTTTATGAACTTATGGACACTGATCTTCACCAGATTATCCGGTCCAATCAA
CCATTGGCCGATGACCACTGTCGGTATTTCCTTTACCAAATACTACGGGGACTTAAGTAT
GTCCATTCCGCAAACGTCTTGCATCGAGATCTTAAACCGAGTAATTTGCTCCTCAATGCT
AATTGTGATCTGAAAATCGGAGATTTTGGTCTCGCAAGGACAACATCTGAGACTGATTTC
ATGACGGAGTATGTTGTTACTCGTTGGTATCGAGCTCCAGAACTGCTCCTAAATTGTTCA
GAATACACTGCTGCAATTGATATCTGGTCCGTAGGTTGCATACTCGGTGAGATCATGACA
AGACAACCTCTATTTCCCGGAAAAGATTATGTTCATCAGTTGAGACTCATCACAGAGCTA
ATTGGCTCTCCAGATGATGCCAGTCTCGGGTTTCTTAGAAGCAATAATGCCCGAAGATAC
GTTAGGCAGCTCCCGCAGTACCCAAAGCAACAATTTTCTGCCAGATTTTCGAATACTGCT
CCTGGAGCTCTGGATTTATTAGAGAAAATGCTCGTGTTTGACCCAAGCAGGCGCATTACA
GTTAATGAGGCTCTCTGTCATCCGTACTTAGCACCCCTTCATAATATTAACGAGGAACCT
GTTTGCCCTCGGCCTTTTGCCTTCGACTTTGAGCAGCCATCGGTTACTGAAGAGCACATC
AAGGAACTCATATGGAGGGAATCTGTAAGATTCAATCCTGACCCAACTTACTGA"	"MSAMSKESSSGDHGGNNFHGVPTHGGRYMQYNLYGNLFEVSRKYVPLRPVGRGAYGIVCA
AVNSETREEVAIKKIGNAFDNRIDAKRTLREIKLLLHMDHDNVIAIKDIIRPPQKENFND
VYIVYELMDTDLHQIIRSNQPLADDHCRYFLYQILRGLKYVHSANVLHRDLKPSNLLLNA
NCDLKIGDFGLARTTSETDFMTEYVVTRWYRAPELLLNCSEYTAAIDIWSVGCILGEIMT
RQPLFPGKDYVHQLRLITELIGSPDDASLGFLRSNNARRYVRQLPQYPKQQFSARFSNTA
PGALDLLEKMLVFDPSRRITVNEALCHPYLAPLHNINEEPVCPRPFAFDFEQPSVTEEHI
KELIWRESVRFNPDPTY"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1111/nph.70825
P003_KP257557.1	P003	2025	Deciphering the role of a novel basic helix-loop-helix (bHLH) transcription factor: SmbHLH125 in Salvia miltiorrhiza secondary metabolism through transcriptomic and metabolomic insights.	10.1016/j.ijbiomac.2025.145067	SmbHLH125		KP257557.1	NCBI GenBank	cDNA/CDS record	full ORF 550 bp; CDS 279 bp; 92 aa	282	93	LOC131025225	SmilChr05G004170	131025225	XP_057810865.1	GCF_028751815.1	protein	98.925	100.0	93	High-confidence sequence match	transcription factor PRE6-like	Nucleus (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmbHLH125: nucleus		"ATGTCTAGCAGAAGATCGCGTTCGAGGGCGGCGTCGGGATCCTCGAGGATAACCGACGAT
CAGATCGCCGACCTCGTCTCAAAATTGCAGCAACTCATCCCCGAGATCCGCAGCCGCCGT
TCCGACAAGGCTTCGGCTTCGAAGGTGTTGCAGGAGACGTGCAACTACATAAGGAACTTG
CACAGAGAGGTGGATGATCTGAGCCATCGATTGTCGGGGCTGCTGGAATCGACGGACGGC
GACAGCGCTCAAGCCGCCATTATTAGGAGCTTGCTATTGTAA"	"MSSRRSRSRAASGSSRITDDQIADLVSKLQQLIPEIRSRRSDKASASKVLQETCNYIRNL
HREVDDLSHRLSGLLESTDGDSAQAAIIRSLLL"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1016/j.ijbiomac.2025.145067
P031_OP009356	P031	2023	SmWD40-2 functions as a positive regulator of both tanshinones and phenolic acids biosynthesis in Salvia miltiorrhiza Bunge hairy roots		SmWD40-2		OP009356	NCBI GenBank	complete CDS	not reported in the checked text	1275	424	LOC131018845	SmilChr01G001557	131018845		GCF_028751815.1	nucleotide	100.0	100.0	1275	Exact or near-exact sequence match	WD-40 repeat-containing protein MSI1-like	Nucleus (1.000); Nucleoplasm (0.600)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmWD40-2: mainly nucleus; weak cell-membrane signal		"ATGGAAAAAGACGACGACGAGATGAGGGGGGAGATTGAGGAGCGGCTGGTAAATGAGGAG
TACAAGATTTGGAAGAAGAACACGCCGTTCCTCTACGATTTGGTCGTCACTCACGCGCTC
GAGTGGCCGTCGCTGACCGTGGAGTGGCTGCCCGACCGGGAGGAGCCGCCGGGCAAGGAT
TACTCTGCCCAGAAGATGATTCTCGGTACCCACACTTCCGAGAACGAGCCCAATTACCTC
ATGCTCGCCAGGATTCAGCTGCCTCTCGAGGACACCGAGAACGATTCCCGCCATTACGAC
GATGAACGGTCTGAATTCGGTGGATTTGGCTGCACTAATGGCAAGGTTCAAATTATCCAG
CAAATAAATCATGATGGGGAGGTCAATCGAGCCCGTTACATGCCCCAAAATCCATTTATT
ATCGCCACCAAGACTGTTAGTGCGGAAGTTTATGTTTTCGACTATAGCAAACATCCCTCA
AAGCCTCCTCTAGATGGTGCATGTAACCCTGATTTGAGGCTAAGGGGCCACAGCACTGAA
GGGTATGGTTTATCGTGGAGTCAGTTCAAGGATGGTCATCTTTTGAGTGGTTCGGATGAT
GCCCAAATATGTTTGTGGGATATAAATGCAACTCCGAAGAATAATGCTCTAGATGCAATG
CAAACATTTAAGATTCATGAAGGTGTTGTTGAAGATGTGGCATGGCACCTCAGGCATGAA
TATCTGTTTGGGTCGGTTGGAGATGACCAGCATCTTCATATATGGGATCTCCGATCTCCT
TCAGTCAACAAGCCGATACAATCTGTAGTAGCCCATCAAAGCGAGGTAAACTGTTTGGCT
TTCAATCCTTTTAATGAGTGGGTTCTGGCAACGGGTTCCACTGACAAGACTGTCAAGTTA
TTTGACATGCGAAGGATTTCTACCGCACTCCACAAATTTGACTGTCACAAGGAGGAGGTT
TTCCAGGTCGGATGGAACCCAAAGAACGAGACCATCTTAGCTTCGTGTTGTCTTGGTAGA
AGACTGATGGTCTGGGATCTCAGCAGGATTAATGAAGAGCAGTCGTCGGAGGATGCTGAG
GATGGACCACCGGAGCTCGTATTCATTCATGGTGGCCATACGAGTAAAATCTCCGACTTC
TCATGGAACCCTTGTGAAGACTGGGTTGTTGCTAGCGTGGCGGAGGACAACATACTTCAA
ATATGGCAGATGTCTGAGAACATCTACCATGATGAAGATGATGTGCCTGTGAATGACGCC
ATGAAAGGCTCCTAG"	"MEKDDDEMRGEIEERLVNEEYKIWKKNTPFLYDLVVTHALEWPSLTVEWLPDREEPPGKD
YSAQKMILGTHTSENEPNYLMLARIQLPLEDTENDSRHYDDERSEFGGFGCTNGKVQIIQ
QINHDGEVNRARYMPQNPFIIATKTVSAEVYVFDYSKHPSKPPLDGACNPDLRLRGHSTE
GYGLSWSQFKDGHLLSGSDDAQICLWDINATPKNNALDAMQTFKIHEGVVEDVAWHLRHE
YLFGSVGDDQHLHIWDLRSPSVNKPIQSVVAHQSEVNCLAFNPFNEWVLATGSTDKTVKL
FDMRRISTALHKFDCHKEEVFQVGWNPKNETILASCCLGRRLMVWDLSRINEEQSSEDAE
DGPPELVFIHGGHTSKISDFSWNPCEDWVVASVAEDNILQIWQMSENIYHDEDDVPVNDA
MKGS"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://www.ncbi.nlm.nih.gov/nuccore/OP009356
CORE-032_JN831118	CORE-032	2022	SmDXS5, acting as a molecular valve, plays a key regulatory role in the primary and secondary metabolism of tanshinones in Salvia miltiorrhiza.	10.3389/fpls.2022.1043761	SmDXS5		JN831118	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	2112	703	LOC131020949	SmilChr04G004077	131020949		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	98.737	97.44	2058	Exact or near-exact sequence match	probable 1-deoxy-D-xylulose-5-phosphate synthase, chloroplastic		Article-linked accession JN831118; GenBank CDS; active nuclear reference unique top gene LOC131020949; CDS BLAST 98.737% identity/97.44% query span; protein top gene agrees			ATGGCTCTGAACACACTCTCCTTTTGTGGGAGTCTGAGAAAGGGAGTGGGCTCAGATGCTCACAGCAACAGGCTGCATGGGGTGGATCAACAGTGTCACTTTTCTTTCAAGGCAAAGAGAAGTTCAAGTGGGATTTGTGCATCATCTTCAAAAAGAGGGGAATATTTCTCAGAGAAGCCTCCAACTCCTCTTCTGGACTCTATCAACTATCCAAACCACATGAAAAATCTCTCACTAAAGGAGCTGCAGCAACTCGCGGATGAGCTGAGGTCCGATCTTATTTTCAATGTGTCGAAAACGGGGGGCCACCTTGGCTCCGGCCTCGGTGTGATTGAGCTCACCGTGGCTCTTCACTACGTGTTTGAAGCGCCTCAAGATCGAATACTTTGGGATGTTGGCCACCAGTCTTATCCTCACAAGATTCTAACTGGACGAAGAGACAGGATGCCGACTTTGAGACAGACAGACGGCCTCTCTGGCTTCACCAAGCGGTCTGAGAGTGACTACGACTGCTTTGGCGCTGGCCATAGCTCCACCACAATCTCTGCAGGATTAGGAATGGCTGTGGGAAGGGATCTGAAAGGAAGGAAAAATCATGTAGTTGCTGTGATAGGCGATGGTGCCATGACGGCAGGTCAGGCATACGAAGCAATGAACAATGCCGGCTATCTTGACTCGGATATGATTGTGATTCTCAACGACAACAAGCAAGTCTCTCTCCCGACTGCAACTCTGGACGGGCCTAGCCCTCCCGTTGGAGCACTGAGTCGTGCCTTGAGCAGGCTGCAGTCCAATCGACCTCTTAGAGAGCTAGGAGAAGCTTCCAAGGGAGGGTCGATGCACGAGCTTGCAGCAAAGCACGGTCGTGGCCTAATGAGTGGCTCTGGCTCTACTCTGTTTGAAGAGCTCGGGCTTTACTACATCGGCCCCGTTGATGGTCACAATATACATGACCTGACAACAATTCTTGCACGAGTTAAGAACACGAAGATAACAGGTCCGGTGCTGATCCACGTTGTCACGGAGAAGGGCAAGGGGTATCCGTATGCAGAACGAGCTGCAGACAAGTATCACGGTGTGAGCAAGTTTGATCCGGCAACGGGGAAGCAATTTAAGGCCAATGCTCGGACGCAGTCCTACACGACGTGCTTTGCAAGGGCGTTGATAGCAGAGGCCGAGGCAGACGAGGATGTGGTGGCCATCCACGCTGCAATGGGGGGCGGGACGGGGTTGGACCTCTTCAATCACAGGTTCCCGACAAGGTGTTTCGACGTTGGGATCGCGGAGCAGCATGCTGTGACATTTGCTGCAGGTTTGGCATGTGAGGGCATCAAGCCATTCTGTGCAATCTACTCGTCTTTCATGCAGAGGGCTTATGATCAGGTGGTGCACGACGTCGATCTGCAGAAGCTGCCGGTGAGGTTTGCAATGGACCGGGCTGGTTTGGTCGGGGCGGACGGCCCCACACATTGTGGGGCTTTTGATGTGTCCTTCATGGCCTGCTTGCCTAACATGGTGGTCATGGCTCCCTCGGATGAGGCCGAGCTGTGCCATATGGTCTCGACTGCTGCTGCCATAGATGACCGGCCGTGCTGCTTCCGTTACCCTAGAGGAGACGGGGTAGGCGTGGAGCTGCCACCGGGGAACAAAGGAGTTCCCCTTGAGGTCGGTAGGGGCCGGATACTTGTCGAAGGCGAGAGAGTCGCGCTCTTGGGCTACGGGGCAGCTGTGCAGAGCTGTTTAGCTGCAGCTGCACTGCTTGAGCCCCATGGCCTGCGGTTGACGGTCGCGGACGCCCGTTTTTGCAAGCCGCTCGACCGAGCCCTCGTCCGGAACTTGGCTCGAACGCACGACGCCCTGATCACGGTCGAGGAGGGCTCGGTTGGTGGCTTTGGATCACACGTTGCTCACTTTTTGGCTCTCGATGGACTTCTTGATGGCAACTTGAAGTGGAGGCCACTAGTACTTCCCGATCGATACGTCGACCACGGAGCTCCGGCCGATCAGCTGACGCAAGTGGGGCTGACGCCGTCGTGCATCGCGGCAACGATCTTCAATATACTTGGGAGTTGGAAATCCAGAGAAGCTTTAGAGATCATCTTTAGAAATTAG	MALNTLSFCGSLRKGVGSDAHSNRLHGVDQQCHFSFKAKRSSSGICASSSKRGEYFSEKPPTPLLDSINYPNHMKNLSLKELQQLADELRSDLIFNVSKTGGHLGSGLGVIELTVALHYVFEAPQDRILWDVGHQSYPHKILTGRRDRMPTLRQTDGLSGFTKRSESDYDCFGAGHSSTTISAGLGMAVGRDLKGRKNHVVAVIGDGAMTAGQAYEAMNNAGYLDSDMIVILNDNKQVSLPTATLDGPSPPVGALSRALSRLQSNRPLRELGEASKGGSMHELAAKHGRGLMSGSGSTLFEELGLYYIGPVDGHNIHDLTTILARVKNTKITGPVLIHVVTEKGKGYPYAERAADKYHGVSKFDPATGKQFKANARTQSYTTCFARALIAEAEADEDVVAIHAAMGGGTGLDLFNHRFPTRCFDVGIAEQHAVTFAAGLACEGIKPFCAIYSSFMQRAYDQVVHDVDLQKLPVRFAMDRAGLVGADGPTHCGAFDVSFMACLPNMVVMAPSDEAELCHMVSTAAAIDDRPCCFRYPRGDGVGVELPPGNKGVPLEVGRGRILVEGERVALLGYGAAVQSCLAAAALLEPHGLRLTVADARFCKPLDRALVRNLARTHDALITVEEGSVGGFGSHVAHFLALDGLLDGNLKWRPLVLPDRYVDHGAPADQLTQVGLTPSCIAATIFNILGSWKSREALEIIFRN	NCBI GenBank JN831118.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/JN831118.1
P025_MT921839	P025	2021	SmJRB1 positively regulates the accumulation of phenolic acid in Salvia miltiorrhiza	10.1016/j.indcrop.2021.113417	SmJRB1		MT921839	NCBI GenBank	ORF/CDS record	607 aa predicted protein	1824	607	LOC130997349	SmilChr08G002720	130997349		GCF_028751815.1	nucleotide	99.452	100.0	1824	Exact or near-exact sequence match	transcription factor MTB1	Nucleus (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmJRB1: nucleus	SmJRB1 - SmJAZ3; SmJAZ9 (Y2H; BiFC)	"ATGGGGGTTGTTGGTTGGAGTAATGAAGATAAGGCGATGGCAGCAGCGGTTTTGGGAACT
AAGGCTTTTGATTACTTGATGTCGAGCTCAGTTTCTGCTGAATGCTCGTTAATGGCGATG
GGGAGTGATGAGAATTTGCAGAATAAGCTTGCAGATCTTGTAGAGCGCCCAAATTCTTCC
AATTTTTGTTGGAATTATGCAATTTTCTGGCAGCTCTCTAGGTCCAAGGCTGGGGACTTG
GTGTTGGGATGGGGGGACGGGTGTTGTCGAGAACCTCGTGATGATGAGGAATCTGAGGTT
ACTCGAATTCTCAAAATGAGGCTCGAGGATGAATCTCAGCAGACAATGAGGAAAAGGGTT
CTCCAGAGGTTGCATACTTTGTTTGGAGGAGGCGATGAGGAAAATTATGCTTTTGGATTG
GATAAGGTAACGGACACTGAGATGTTTTTCCTGGCATCAATGTACTTTTCCTTCCCCAGG
GGCGAAGGAGGCCCTGGGAGGTGTTTTGGATCTGGCAAGTATGTCTGGTTGTCGGATTCA
TTGAAGTCTTCCGTTGATTACTGTGTTAGGTCATTCCTTGCAAAGTCGGCTGGCATGCAA
ACTATTGTTTTGATCCCAACTGACGTTGGGGTAGTTGAATTAGGGTCGGTCAGATGCATC
CCGGAAAGTATGGAGCTAGTCAAGGTGGTTGGATCTTCCTTTTCGTCGTTTTCTTCACTC
CACAGGTCGAAACAAGCTGCAGCTGCGGCTGTGGTGACAGTAACGGACAAAAAGGATACG
AATGCCCCCATTCCTAACCTGGCTATTGGTAACCGACCAGAAGTTGCTCCCAAGATTTTC
GGGCAGGACTTAAATTCAAGCCATGTGCAATTTAGGGAAAATGTTTCCGTTAGGAAACCA
GAAGTGCAAGAAAGGACTTGGGACGCAAGTGGAAACAGGAACAGGCTACCATTTACCAAC
AATCGCAATGGTTTTCATGGCGCTACGTGGACACAGTATAGTAATGTAAGGCTAGGGAGT
CCAGTAGAGGTTTACAGTCCTCAGACTCCAGCCAAAAAGCGTGCTGAGGTTGCCAACAGG
AATAGAGAGGGGTTCATGATTAATAATTTTCAGCATCAAAAGCCAGCTCAAATGCGCATA
GATTTTACTGGAGCGACCTCAAGGCCTTTAACCTCCTCACATCCACAGAGTCTCGAATCT
GAGCTTTCAGATGTTGAGGCTTCATGCAAGGAAGAGGCTGCAGGCCTATCAGAAGATAAG
AGGCCGAGGAAGCGTGGTAGGAAGCCTGCCAATGGAAGAGACGAACCCCTCAATCATGTA
GAGGCAGAAAGACAGCGAAGAGAGAAGCTGAACCAGCGCTTCTACGCTCTACGAGCTGTT
GTACCAAATATCTCTAAGATGGATAAAGCTTCCCTCCTTGGAGATGCTATTGCTTACATA
ACCGAACTGCAGAAGAAGCTCAAGGACATGGAGTCTGAGAGAGAAAGACTTGGCAGCATA
TCGAGAGAAGCATCTGTTTCAGAAGCTAATTCAAACAGAGAATCACAAGACCTGCTGGCT
TCGAGCATTAACATCGAAGCTGGCCGTGAAGAAGTCACTATTAGGATTAGCTGCCCGCTG
GACGCCCATCCAGCATCAAGAGTCATCCAAGCAATCAATGATGCACAGGCAACTATCATC
GATGCAAAAATGGCTACAGGGAGTGAGCGAGTGTTCCACACATTCGTTGTCAAATCCCAT
GGATCCGAACGACTAACTAAGGAGAAGCTGATCGAAGCGTTTTCTCGTAGATCCAGCTCT
CCCCATCAGTTATCTCTCGGGTAA"	"MGVVGWSNEDKAMAAAVLGTKAFDYLMSSSVSAECSLMAMGSDENLQNKLADLVERPNSS
NFCWNYAIFWQLSRSKAGDLVLGWGDGCCREPRDDEESEVTRILKMRLEDESQQTMRKRV
LQRLHTLFGGGDEENYAFGLDKVTDTEMFFLASMYFSFPRGEGGPGRCFGSGKYVWLSDS
LKSSVDYCVRSFLAKSAGMQTIVLIPTDVGVVELGSVRCIPESMELVKVVGSSFSSFSSL
HRSKQAAAAAVVTVTDKKDTNAPIPNLAIGNRPEVAPKIFGQDLNSSHVQFRENVSVRKP
EVQERTWDASGNRNRLPFTNNRNGFHGATWTQYSNVRLGSPVEVYSPQTPAKKRAEVANR
NREGFMINNFQHQKPAQMRIDFTGATSRPLTSSHPQSLESELSDVEASCKEEAAGLSEDK
RPRKRGRKPANGRDEPLNHVEAERQRREKLNQRFYALRAVVPNISKMDKASLLGDAIAYI
TELQKKLKDMESERERLGSISREASVSEANSNRESQDLLASSINIEAGREEVTIRISCPL
DAHPASRVIQAINDAQATIIDAKMATGSERVFHTFVVKSHGSERLTKEKLIEAFSRRSSS
PHQLSLG"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1016/j.indcrop.2021.113417
P037_KF437883	P037	2021	Transcription factor SmSPL7 promotes anthocyanin accumulation and negatively regulates phenolic acid biosynthesis in Salvia miltiorrhiza		SmSPL7		KF437883	NCBI GenBank	complete ORF	not reported in the checked text	2325	774	LOC131020947	SmilChr04G004075	131020947		GCF_028751815.1	nucleotide	98.546	100.0	2338	High-confidence sequence match	squamosa promoter-binding-like protein 7	Nucleus (0.800)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmSPL7: nucleus		"ATGCAGCAAAATCCATCATCGCACCCAACCCCAATTCCACCAACCGAAGCCCTAATTCCG
GCCGACGACCCCGCCGCGTCCTCCCTCTTCGACTGGTCGGATTTCCTCGACTTCAACCTC
GATGAGGGCGGCCTCCACGCCGCGCCGTCGCTTCCCCAATCCGAGCAGGAGCAGGAGCAG
CCCGGGGGGTTTGACCCGGGCCAGGAAAAGCCCGGCGCGGTGAGGAAGAGGGACCCGAGA
TTGCTGTGCTCCAATTTCCTAGCACGGGTCCCCTGTGCCTGCCCCGAATTGGATCAGAAG
CTGGCTGAGGAGGAGCGCGAGCTCCCCGGCAAGAAGCGGACCCGGATAGCCAGAGGGCCC
GGCGGCCCGGCCCGGTGCCAGGTGCCCGGCTGCGAGGCTGATATCAGTGAGCTTAAAGGG
TACCACAGGCGGCACCGTGTTTGCTTGCGGTGCGCCAATGCGGGCTCTGTGCTTCTTGAT
GGCGATAGCAAGAGATATTGCCAGCAGTGTGGAAAGTTCCATATCTTGTCAGATTTTGAT
GAGGGGAAACGTAGTTGTAGGAGGAAACTAGAACGTCACAATAACAGACGTAGAAGAAAA
CCGAATGATTCCAAAGAAGGTGCGGAAAAGGAATCTCAACTGATAGTCTTGGCTGATGAT
CTCAGCGGCGATGATGATGCTGGAAAAGATGGAATAAGTGTGAATGGTCAGATTGAAGAT
AAGGAGCTTTTGCTGGAGTCGGATGGGCAGGTCTCTGCTCTAGGCTCGCAGACTCTCCAA
AGTGATAGTGTCGTATCATTATCCACCTCTGGCGAACCTCACGTCGAAGCTGATACACAG
AATCCGAAAATCAAGCAGTCTCCACCCTACTGTGACAACAAGAGCAGTTTTTCCTCCGCG
GGTAGGGTCTCTTTCAAGCTCTACGATTGGAATCCAGCTGAATTTCCTCGACGACTCCGA
CTTCAAATATTCCAATGGTTGGCTAGCATGCCTGTCGAGTTGGAGGGGTATATCCGTCCG
GGTTGTACAATCTTGACTGCTTTTATTGCAATGCCAAAGCCAGTGTGGCGTGAGTTATTG
GAGGAACCGTCTTTATGCATAAAAGATCTTGTCTTGTCACCTGGGAGCCTTTTGTCGGGA
AGAGGCCCAATGCATGTTTATCTAAATGACATGATTTTTCGAATCACAGAAGATGCATCT
TTGGTACACGAGGTTAAAGTAAAGGATCGAGCTCCAAAGCTTCATTACATTCATCCAAAT
TGCTTTGAGGCTGGCAGGCCAATGGAATTCGTGGCCTGTGGAAGCCATCTACTTCAACCG
AACTTCCGGTTTCTAATTTCATTTGCTGGACAGTACCTAGCATATAAAATCCGTGTTTCG
TCTCCGTGTGAGAAAGGGGACGCCGGAAGTGCTGACCATCAGTTGTTGAAGATATATGTC
CCTCAAATTGATATTGCTCTTTCTGGCCCCGCTTTTGTCGAGGTTGAAAACCAGTCTGGC
TTGTCCAACTTCATCCCGGTCCTCGTTGGTGACAAAGAAACGTGTGCAGAGATGGAGATC
CTGCAACAGAAGTCCGGCACGCCTTCCTCCTCCCACGAACGAGAACATTTGTCTCCACAG
CCTGCATGCAGGGTTCTTGCTTCTCGACAAGTGGAGTTCAACGAACTCGTCTTAGATGTG
GCGTGGTTGCTAAAGAAACCAGCATCAGAGCAAAAGCTGACATCGTCCCGCATTCTAAGA
TCTAACTGTTTATTGGAGTACTTGATGGGAAAGGAGTCTACCGTCGTTCTGGAGGGACTG
TGTCGCTCGTTGAGATCCGCGATAGACAACAACTTGGTTGACGGCGATTCTAATTCCGAC
ATGAGGTTACTACAGAAAAATATCGACGCTGCACAAAGGAGGCTCGCTCCGAAATCACAT
GAAAAAGTGGTTGCGGATACGCCTGCACCGAGTGGAGATCGTTGCAGCCACATTCCGGAA
AACGATACCTCGCCTTCCGTCCCGTCAGCTAATCAGGGTCTCCGTAGCACGGTGAGGAGC
CTGCTGGGGCTCGTCGCGAGGCCCCCATCCTCTCTAGACGAAGAAGATGCGACGGTTCCT
CTCTTGAAAGACAAAGTGATCATGAACGTCGATCTTCAGGAGAGGCCGAGAGGGTCTTGC
AGTCGCTCGTTGTCAACAACACTTTCTACTTCGCGGCTCCTCATAGTGGCGGTTATGGCC
GTCGGTGTCTGTTTCGGAGTGTGTGCGGCCGTCCTCCACCCTCAACGGGTCGGCCAGATC
ACGTCGACCATACACAGCTGCCTATTCGACATCTCCCAACGCTAA"	"MQQNPSSHPTPIPPTEALIPADDPAASSLFDWSDFLDFNLDEGGLHAAPSLPQSEQEQEQ
PGGFDPGQEKPGAVRKRDPRLLCSNFLARVPCACPELDQKLAEEERELPGKKRTRIARGP
GGPARCQVPGCEADISELKGYHRRHRVCLRCANAGSVLLDGDSKRYCQQCGKFHILSDFD
EGKRSCRRKLERHNNRRRRKPNDSKEGAEKESQLIVLADDLSGDDDAGKDGISVNGQIED
KELLLESDGQVSALGSQTLQSDSVVSLSTSGEPHVEADTQNPKIKQSPPYCDNKSSFSSA
GRVSFKLYDWNPAEFPRRLRLQIFQWLASMPVELEGYIRPGCTILTAFIAMPKPVWRELL
EEPSLCIKDLVLSPGSLLSGRGPMHVYLNDMIFRITEDASLVHEVKVKDRAPKLHYIHPN
CFEAGRPMEFVACGSHLLQPNFRFLISFAGQYLAYKIRVSSPCEKGDAGSADHQLLKIYV
PQIDIALSGPAFVEVENQSGLSNFIPVLVGDKETCAEMEILQQKSGTPSSSHEREHLSPQ
PACRVLASRQVEFNELVLDVAWLLKKPASEQKLTSSRILRSNCLLEYLMGKESTVVLEGL
CRSLRSAIDNNLVDGDSNSDMRLLQKNIDAAQRRLAPKSHEKVVADTPAPSGDRCSHIPE
NDTSPSVPSANQGLRSTVRSLLGLVARPPSSLDEEDATVPLLKDKVIMNVDLQERPRGSC
SRSLSTTLSTSRLLIVAVMAVGVCFGVCAAVLHPQRVGQITSTIHSCLFDISQR"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://www.ncbi.nlm.nih.gov/nuccore/KF437883
CORE-036_KM823184	CORE-036	2021	Integrated Transcriptomics and Proteomics to Reveal Regulation Mechanism and Evolution of SmWRKY61 on Tanshinone Biosynthesis in Salvia miltiorrhiza and Salvia castanea.	10.3389/fpls.2021.820582	SmWRKY61		KM823184	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	507	168	LOC131003859	SmilChr01G004509	131003859		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	99.801	99.01	502	Exact or near-exact sequence match	probable WRKY transcription factor 41		Article-linked accession KM823184; GenBank CDS; active nuclear reference unique top gene LOC131003859; CDS BLAST 99.801% identity/99.01% query span; protein top gene agrees			ATGGAAAGCGAGTATCTTGAGCTGTACAAATCAGTGGTTAGTGAGATCAGCAAAGGGATGGAGCAAGTGAAAGAGTGTTGTTCCAACAAGGAGCAAGATGGATTCTTGGAGAGAATGTTGTCTTCCCATGAAGAGGCTCTATTGATTCTTACGGGGCGTGCTCCACAGGGACAATGTCAGTCAGGGATATCATCGTTATCAGATCCTCCCGACTCTCCAACTGGATCCAAAGATGCAAGAAGCCGTTTGTGGAAAAGGGAATACTTTAAGAGAAGAAATAAAATTGTCAAGATTGAGGCATCCTCTGATTCTGAACTACCACACGAGGATGGATATGCTTGGAGGAAGTACGGCAAGAAAGCTATCCTTAATGCCAAATATCCAAGAGGCTATTATAGATGCATTCAGAGTAAAACTTGTTTGGCTAAAAAACGAGTACAGAGGTCAGACGATGGGACTGTATTTGAGGTCACATACAAAGGACAGCATACATGCCCAGGCCTTTAG	MESEYLELYKSVVSEISKGMEQVKECCSNKEQDGFLERMLSSHEEALLILTGRAPQGQCQSGISSLSDPPDSPTGSKDARSRLWKREYFKRRNKIVKIEASSDSELPHEDGYAWRKYGKKAILNAKYPRGYYRCIQSKTCLAKKRVQRSDDGTVFEVTYKGQHTCPGL	NCBI GenBank KM823184.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/KM823184.1
CORE-051_MK704422	CORE-051	2019	Overexpression of SmANS Enhances Anthocyanin Accumulation and Alters Phenolic Acids Content in Salvia miltiorrhiza and Salvia miltiorrhiza Bge f. alba Plantlets.	10.3390/ijms20092225	SmANS		MK704422	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	1110	369	LOC130994631	SmilChr07G003934	130994631		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	98.468	100.0	1110	Exact or near-exact sequence match	leucoanthocyanidin dioxygenase		Article-linked accession MK704422; GenBank CDS; active nuclear reference unique top gene LOC130994631; CDS BLAST 98.468% identity/100.00% query span; protein top gene agrees			ATGGTTGCTACACCGGCTCCAACTCCAAGCCCGCGGGTTGAGGAACTGGCCCGAAGCGGGCTCGACACCATCCCCAAAGACTACGTACGGCCCGAAGAAGAGCTCAAAAGCATCCGCGACATTTTCGCCGAAGAGAAAAGCATCCTCGACGGGCCGCAGCTGCCGACGATCGATCTGGAGGAGATCGACTCCAGCGACGAGGAGACGCGGCGGAGGTGCTACGACGAGGTGAAGAAGGCGGCGATGGACTGGGGGGTGATGCACCTGATCAACCACGGGATACCTGAGGAGCTCACGAGCCGTGTGAAGGCGGCCGGGGAGGAGTTCTTCGAGCTGCCGGTGGAGGAGAAGGAGAAGTACGCCAACGAGCAGGCGGCCGGCAACGTGCAGGGCTATGGAAGCAAGCTCGCCAACAACGCCAGTGGGCAGCTCGAGTGGGAGGACTATTTTTTCCATTGTGTGCTGCCGGAGGAGAAGAGGGACTTGTCTATTTGGCCCAAGCACCCAGCTGATTATATACCGGCTACATGCGAATATGCAAAGCAGCTACGCGGGCTAGCAACGAAGATACTATCAGTCTTATCGGTCGGGCTAGGATTGGAACAAGGTAGGCTAGAGAAAGAAGTCGGCGGATTGGAGGATCTAATCCTCCAAATGAAGATAAACTTCTACCCGAAATGCCCTCAGCCTGAGCTCGCCCTCGGCGTCGAGGCGCACACAGATGTCAGCGCGCTCACCTTCATCCTCCACAACATGGTCCCGGGGCTCCAGCTCTTCTACGAGGGCAAATGGGTCACCGCAAAATGCGTGCCAAACTCGATCATCATGCACATCGGCGACACGATCGAGATCTTGAGCAACGGTAAGTACAAGAGCATCCTGCACCGTGGGCTGGTCAACAAGGAGAAGGTGAGGATCTCTTGGGCAGTTTTCTGCGAGCCGCACAAGGACAAGATCGTCCTCAAGCCGTTGCCGGAGATCTTATCCGAGGCTGAACCACCGCGGTTCGAGCCTCGCACATTTGCACAGCATCTCGAGGGCAAGTTGTTTAGGAAGGCCGCCGGCGGTGGCGTTGAGGATAAGAAGCCTGATTATGATAAATCGAGTTGA	MVATPAPTPSPRVEELARSGLDTIPKDYVRPEEELKSIRDIFAEEKSILDGPQLPTIDLEEIDSSDEETRRRCYDEVKKAAMDWGVMHLINHGIPEELTSRVKAAGEEFFELPVEEKEKYANEQAAGNVQGYGSKLANNASGQLEWEDYFFHCVLPEEKRDLSIWPKHPADYIPATCEYAKQLRGLATKILSVLSVGLGLEQGRLEKEVGGLEDLILQMKINFYPKCPQPELALGVEAHTDVSALTFILHNMVPGLQLFYEGKWVTAKCVPNSIIMHIGDTIEILSNGKYKSILHRGLVNKEKVRISWAVFCEPHKDKIVLKPLPEILSEAEPPRFEPRTFAQHLEGKLFRKAAGGGVEDKKPDYDKSS	NCBI GenBank MK704422.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/MK704422.1
P030_MH707439	P030	2019	SmPPT, a 4-hydroxybenzoate polyprenyl diphosphate transferase gene involved in ubiquinone biosynthesis, confers salt tolerance in Salvia miltiorrhiza.	10.1007/s00299-019-02463-5	SmPPT		MH707439	NCBI GenBank	full-length cDNA	ORF 1182 bp; 393 aa	1182	393	LOC130988561	SmilChr06G001027	130988561		GCF_028751815.1	nucleotide	100.0	100.0	1182	Exact or near-exact sequence match	4-hydroxybenzoate polyprenyltransferase, mitochondrial	Mitochondrion (1.000); Mitochondrion membrane (1.000); Mitochondrion inner membrane (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmPPT: mitochondria (mainly; not exclusive)		"ATGGCATTTCATGGCTTATCCCGAACCGCTCGGAGCCTCCGCAAGCTCCGCCAGCGCCAC
TCGTCTCTCTCCGCCGTGCACACTTATTTCCACTCGCCTCCACCCTCCGCCGACTCGTGC
CACCTCTTCCAAGTCTCCGGAATTTTTCCCTCCAAAAATCAAGTTTACAATGACAGCAAT
TCATTCCGGTCAATTGGAGCCTATCACCATCTTCTTCAGTATTCTAGCTTTTCCACTGTA
CCATCCGATGAGAAACGAGAAAAATCGAAAAATTCCAAGGGTAATGAGTGTGATCGGTCG
TGGATTGATGTTTATTTACCGGAAAAGGCGCGGCCCTACGCTCGGCTCGCTCGGCTGGAC
AAGCCGATAGGGACTTGGCTCCTGGCTTGGCCGTGTATGTGGTCAATTACGATGGCGGCA
GCTCCAGGGAGCCTTCCGGATATTAAGATGATGATGATTTTTGGAACAGGGGCGTTGCTG
CTGCGTGGCGCAGGGTGCACTGTCAATGATCTATTAGATCGAGATATTGACACCAAGGTA
GACAGGACAAGGTCAAGGCCCATAGCAAGTGGTGTACTTTCACCCTTCCGGGGAATTTGT
TTTCTTGGTTTTCAATTGCTTTTGGGGTTGGAAATTCTTCTGCAACTGAACAATTTTAGC
CGTGTTCTGGGAGCTTCATCTCTGCTGCTTGTCTTTTCATACCCTCTGATGAAGAGACTG
ACGTATTGGCCTCAGGCCTATCTTGGATTGACATTTAACTGGGGTGCTTTACTTGGTTGG
GCTGCTGTTAGAGGAAGCCTTGATCCTGCTATAGTGATCCCTCTTTATGCATCTGGTGTA
TTTTGGACCCTCGTTTACGATACAATTTATGCACATCAGGACAAGGAAGACGATATGAGA
GTGGGTGTCAAATCAACAGCCTTGAGGTTTGGAGATTCAACGAAAGAATGGATTTCTGGC
TTTGGAGCAGCATGTATCGGTAGCCTTGCTCTTAGTGGATATAATGCCAATCTTGAATGG
CCATATTACGTATTCTTAGCTGGTGCATCGACACAATTAGCTTGGCAGATATTCACAGTT
GACCTTTCAAGCCGTGCTGATTGCAACAGAAAATTTGTATCCAATAAATGGTTTGGAGCT
ATTATCTGCAGTGGGATTCTCTTTGGAAGACTCGTATCTTAG"	"MAFHGLSRTARSLRKLRQRHSSLSAVHTYFHSPPPSADSCHLFQVSGIFPSKNQVYNDSN
SFRSIGAYHHLLQYSSFSTVPSDEKREKSKNSKGNECDRSWIDVYLPEKARPYARLARLD
KPIGTWLLAWPCMWSITMAAAPGSLPDIKMMMIFGTGALLLRGAGCTVNDLLDRDIDTKV
DRTRSRPIASGVLSPFRGICFLGFQLLLGLEILLQLNNFSRVLGASSLLLVFSYPLMKRL
TYWPQAYLGLTFNWGALLGWAAVRGSLDPAIVIPLYASGVFWTLVYDTIYAHQDKEDDMR
VGVKSTALRFGDSTKEWISGFGAACIGSLALSGYNANLEWPYYVFLAGASTQLAWQIFTV
DLSSRADCNRKFVSNKWFGAIICSGILFGRLVS"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s00299-019-02463-5
P008_AAZ67354	P008	2017	HPPR encodes the hydroxyphenylpyruvate reductase required for the biosynthesis of hydrophilic phenolic acids in Salvia miltiorrhiza.	10.1016/S1875-5364(18)30008-6	HPPR		AAZ67354	NCBI GenBank	translated protein	313 aa	0	313	LOC130992480	SmilChr07G001314	130992480	XP_057773114.1	GCF_028751815.1	protein	97.764	100.0	313	High-confidence sequence match	hydroxyphenylpyruvate reductase	Mitochondrion (1.000); Chloroplast (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmHPPR: cytoplasm			"MEAIGVLMLCPMNSYLEQELDKRFKLFRYWTQPKQREFLAQQAESIRAIVGNSNSGADAD
IIDSLPKLEIVSSFSVGLDRIDLLKCKEKGIRVTNTPDVLTEDVADLAIGLMLAVLRRIC
ECDKYVRSGAWKLGDFKLTTKFSGKRVGIIGLGRIGLAVAERAEAFDCPINYYSRSKKAN
TNYTYYGSVVELASNSDILVVACALTPETTHIVNREVMDALGPKGVLINIGRGPHVDEAE
LVSALVEGRLGGAGLDVFEKEPEVPEQLFGLENVVLLPHVGSGTVETRKVMADLVLGNLE
AHFSSKPLLTPVV"	protein FASTA retrieved from NCBI	protein_only	Article accession plus sequence alignment to current reference	https://doi.org/10.1016/S1875-5364(18)30008-6
P008_DQ099741	P008	2017	HPPR encodes the hydroxyphenylpyruvate reductase required for the biosynthesis of hydrophilic phenolic acids in Salvia miltiorrhiza.	10.1016/S1875-5364(18)30008-6	HPPR		DQ099741	NCBI GenBank	full-length cDNA	cDNA 1066 bp; ORF 939 bp; 313 aa	1117	313	LOC130992480	SmilChr07G001314	130992480	XP_057773114.1	GCF_028751815.1	protein	97.764	100.0	313	High-confidence sequence match	hydroxyphenylpyruvate reductase	Mitochondrion (1.000); Chloroplast (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29	SmHPPR: cytoplasm		"GCGGGGACCACTCAAACACCATCTCCCTCCCCCGCCACCAACGCCGCCGCTGCCGCGAAA
ATGGAGGCGATCGGTGTTCTGATGTTGTGCCCCATGAACAGCTACTTGGAGCAAGAGCTC
GACAAGCGGTTCAAGCTCTTCCGCTACTGGACCCAGCCGAAGCAGCGGGAATTCCTCGCT
CAGCAGGCCGAGTCGATCCGCGCGATTGTCGGGAACTCCAACTCCGGCGCCGACGCCGAT
ATCATCGACTCACTGCCGAAATTGGAGATAGTTTCGAGCTTCAGCGTGGGATTGGACAGA
ATCGACTTGCTCAAGTGTAAGGAAAAGGGGATTAGGGTTACCAACACGCCCGATGTGCTG
ACGGAAGACGTCGCGGATTTGGCGATCGGGTTGATGCTGGCGGTTCTGAGGCGGATTTGC
GAGTGCGACAAGTATGTGAGGAGCGGGGCGTGGAAATTAGGAGACTTCAAGTTGACTACT
AAGTTCAGTGGCAAAAGAGTTGGCATCATAGGATTGGGCAGAATCGGGTTAGCAGTTGCT
GAGCGAGCAGAGGCATTCGATTGTCCCATCAATTACTACTCAAGATCCAAGAAAGCCAAC
ACAAACTACACGTACTATGGCAGCGTTGTTGAATTGGCATCAAACAGCGATATCCTAGTG
GTAGCATGTGCCCTGACTCCAGAAACAACCCACATTGTGAACCGGGAAGTAATGGATGCA
CTGGGTCCGAAGGGAGTTCTGATCAACATTGGACGGGGACCCCATGTTGATGAAGCCGAA
CTGGTGTCAGCTCTTGTGGAGGGTCGTCTGGGTGGCGCTGGACTTGATGTCTTTGAAAAG
GAACCCGAGGTGCCCGAGCAACTGTTTGGCCTCGAAAACGTAGTTCTGTTGCCACATGTG
GGGAGCGGCACCGTGGAAACGCGTAAAGTCATGGCTGACCTTGTTCTGGGAAATTTGGAA
GCTCACTTTTCCAGCAAGCCTCTGTTAACACCTGTGGTTTGATAACTCTTTGAAAGCTGT
TGATCCCATCTATTGAGAGGCACGCATGTTTGGTATCCTCAGTCAGTGATGAATTCATGT
TTTGGGTCTTGTTAATTGTTTCATTCAAATAAAAAAA"	"MEAIGVLMLCPMNSYLEQELDKRFKLFRYWTQPKQREFLAQQAESIRAIVGNSNSGADAD
IIDSLPKLEIVSSFSVGLDRIDLLKCKEKGIRVTNTPDVLTEDVADLAIGLMLAVLRRIC
ECDKYVRSGAWKLGDFKLTTKFSGKRVGIIGLGRIGLAVAERAEAFDCPINYYSRSKKAN
TNYTYYGSVVELASNSDILVVACALTPETTHIVNREVMDALGPKGVLINIGRGPHVDEAE
LVSALVEGRLGGAGLDVFEKEPEVPEQLFGLENVVLLPHVGSGTVETRKVMADLVLGNLE
AHFSSKPLLTPVV"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1016/S1875-5364(18)30008-6
P017_JX113685	P017	2017	Overexpression of SmMYB9b enhances tanshinone concentration in Salvia miltiorrhiza hairy roots.	10.1007/s00299-017-2154-8	SmMYB9b		JX113685	NCBI GenBank	full-length cDNA	1207 bp cDNA; 264 aa	1207	264	LOC131024270	SmilChr05G002378	131024270	XP_057809772.1	GCF_028751815.1	protein	98.864	100.0	264	High-confidence sequence match	transcription factor MYB108	Nucleus (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"TCCCTCCTTTATCCTCTTCCACATCAACACAACCCCACCCCCTTTCTCTCTCTACATCTA
TACATCACCACCACTTTCTCTCTCCACACCATCATCAACTTTTCTTGTTGAGGGAGGATT
CCTAGAGAGCGAAATTAACACGAGATGGATCATCACCAAGATGACACAAAATCATCAAGA
AATTACAGCCAAAGTGAAGAAGATTTGTTGGAGCTGAGGAGAGGGCCATGGACAGTTGAT
GAAGATTTTACTCTCATCAACTATATAGCCCACCATGGCGAAGGCCGTTGGAATTCTCTA
GCTCGCTCTGCAGGTTTGAAGAGAACCGGCAAGAGCTGCAGATTGAGGTGGCTAAACTAC
CTGCGGCCCGACGTCCGCCGCGGAAACATCACTCTCGAGGAGCAGCTGCTCATTCTCGAA
CTCCATTCTCGTTGGGGAAATAGGTGGTCGAAAATAGCACAACATTTACCGGGAAGGACG
GACAACGAGATCAAGAACTACTGGCGCACGCGTGTGCAAAAGCATGCTAAGCAGCTGAAA
TGTGACGTGAACAGCAAGCAATTCAAGGACACCATGCGCTACCTATGGATGCCAAGATTG
GTGGAGCGCATCCAAGCCGCCGCCGCCGCCGCCCCAAATCTCGACGTGGCCGTGGCCCTG
CCGCGCCCCGAGAATTCGAGCGCGGCCGCGTCGTCGGAGTCCTTCGGGACGCCCGCGTCG
GACCTGACGGATTGCTACAACAATCAGGATTGCTATGCGGCAAATAATAATCAGTTTAGC
TATGGCGATCAGTTGTCGCTAAGCAGCCCAAGTGGATACTTCAATCAAGGGCTGGATTTC
GGCGGGCAGTGGGCGATGGACGGCGGAGATGCGTCGGACAGTTTGTGGAGCGTGGATGAC
GTGTGGTTCTTGCAGCAGCAGTTCAACACCAATGCTTGACTTCTTCATCATATATAGTTA
TTAGTTCATCAACATTTCATCACAAAGGATACATAAACCCTAGAAAAATAGGTTCTCTTC
TTCATAGTATTTGTGGAGATCAGGGACAAGCTCATTCAACTTTTGATGATATATAGTACT
AGTTTTTATGCTTGTAATTCTTTGTTTCTTCTTTTTTTCTTTAAAAAAAAAAGTTTGTGG
GGGATTTAATGAAGAGAAATTGTAACTTGATCATGCTAGCTACGTGAATTCAAATTCACT
TCAAGCG"	"MDHHQDDTKSSRNYSQSEEDLLELRRGPWTVDEDFTLINYIAHHGEGRWNSLARSAGLKR
TGKSCRLRWLNYLRPDVRRGNITLEEQLLILELHSRWGNRWSKIAQHLPGRTDNEIKNYW
RTRVQKHAKQLKCDVNSKQFKDTMRYLWMPRLVERIQAAAAAAPNLDVAVALPRPENSSA
AASSESFGTPASDLTDCYNNQDCYAANNNQFSYGDQLSLSSPSGYFNQGLDFGGQWAMDG
GDASDSLWSVDDVWFLQQQFNTNA"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s00299-017-2154-8
P017_JX113686	P017	2017	Overexpression of SmMYB9b enhances tanshinone concentration in Salvia miltiorrhiza hairy roots.	10.1007/s00299-017-2154-8	SmMYB9b		JX113686	NCBI GenBank	genomic sequence	1823 bp genomic sequence	1823	264	LOC131024270	SmilChr05G002378	131024270	XP_057809772.1	GCF_028751815.1	protein	98.864	100.0	264	High-confidence sequence match	transcription factor MYB108	Nucleus (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"CGCTAGAGAGGAGACGCATGTGTCAAAGTGTCCACTTTCAACCCCCTCACTCGCTTAAAT
ATATTATTATTTTTAAATACTTCCTATATCCCATTTTTCACAAAGAGTGTGTTGCGAGAT
TAAAATATTTAGCCCACAATGAGCAAATATAAAAAACTCCCCCTCTCTCTCTCTCTCACA
TGCCAACATTTTCAAACCTCTCCTGTTCCATCTATATAAAGCCCCTCCCTCCTTTATCCT
CTTCCACATCAACACAACCCCACCCCCTTTCTCTCTCTACATCTATACATCACCACCACT
TTCTCTCTCCACACCATCATCAACTTTTCTTGTTGAGGGAGGATTCCTAGAGAGCGAAAT
TAACACGAGATGGATCATCACCAAGATGACACAAAATCATCAAGAAATTACAGCCAAAGT
GAAGAAGATTTGTTGGAGCTGAGGAGAGGGCCATGGACAGTTGATGAAGATTTTACTCTC
ATCAACTATATAGCCCACCATGGCGAAGGCCGTTGGAATTCTCTAGCTCGCTCTGCAGGT
AATACTATTAATTCAAATTCTTCCTTTCCTTTCTAAATAAAAAAGTTTTTTTTTTTTTTT
TTTTTTTTTTCATTTTAGTTAGTTAGAGATAAGTGTTGATGATATATGCTCGATGTCCGT
ACAAGAAAAGAATTCGAGGCTAAATCCACTAAAAAGAGCATACAAAAGGTCCAAGAATTT
ACGTGTGAAGCTTTACCAATTAAAGCTGGTTATTATTTTCTTCTTTTCTTTGTTTCAATA
ATTTTTGGTGGTGAAGTAAACAAAATAAATTGATTGATTGATTCAGGTTTGAAGAGAACC
GGCAAGAGCTGCAGATTGAGGTGGCTAAACTACCTGCGGCCCGACGTCCGCCGCGGAAAC
ATCACTCTCGAGGAGCAGCTGCTCATTCTCGAACTCCATTCTCGTTGGGGAAATAGGTAC
ATACATATTAATTTTCCTAATTAATTAACTAATGTTATTATATATATGTAGGTCTGAAAT
TTAATTTCCAACTGATTGTATATATAAATTAATGTGTAGGTGGTCGAAAATAGCACAACA
TTTACCGGGAAGGACGGACAACGAGATCAAGAACTACTGGCGCACGCGTGTGCAAAAGCA
TGCTAAGCAGCTGAAATGTGACGTGAACAGCAAGCAATTCAAGGACACCATGCGCTACCT
ATGGATGCCAAGATTGGTGGAGCGCATCCAAGCCGCCGCCGCCGCCGCCCCAAATCTCGA
CGTGGCCGTGGCCCTGCCGCGCCCCGAGAATTCGAGCGCGGCCGCGTCGTCGGAGTCCTT
CGGGACGCCCGCGTCGGACCTGACGGATTGCTACAACAATCAGGATTGCTATGCGGCAAA
TAATAATCAGTTTAGCTATGGCGATCAGTTGTCGCTAAGCAGCCCAAGTGGATACTTCAA
TCAAGGGCTGGATTTCGGCGGGCAGTGGGCGATGGACGGCGGAGATGCGTCGGACAGTTT
GTGGAGCGTGGATGACGTGTGGTTCTTGCAGCAGCAGTTCAACACCAATGCTTGACTTCT
TCATCATATATAGTTATTAGTTCATCAACATTTCATCACAAAGGATACATAAACCCTAGA
AAAATAGGTTCTCTTCTTCATAGTATTTGTGGAGATCAGGGACAAGCTCATTCAACTTTT
GATGATATATAGTACTAGTTTTTATGCTTGTAATTCTTTGTTTCTTCTTTTTTTCTTTAA
AAAAAAAAGTTTGTGGGGGATTTAATGAAGAGAAATTGTAACTTGATCATGCTAGCTACG
TGAATTCAAATTCACTTCAAGCG"	"MDHHQDDTKSSRNYSQSEEDLLELRRGPWTVDEDFTLINYIAHHGEGRWNSLARSAGLKR
TGKSCRLRWLNYLRPDVRRGNITLEEQLLILELHSRWGNRWSKIAQHLPGRTDNEIKNYW
RTRVQKHAKQLKCDVNSKQFKDTMRYLWMPRLVERIQAAAAAAPNLDVAVALPRPENSSA
AASSESFGTPASDLTDCYNNQDCYAANNNQFSYGDQLSLSSPSGYFNQGLDFGGQWAMDG
GDASDSLWSVDDVWFLQQQFNTNA"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s00299-017-2154-8
P026_HQ676610	P026	2016	SmLEA2, a gene for late embryogenesis abundant protein isolated from Salvia miltiorrhiza, confers tolerance to drought and salt stress in Escherichia coli and S. miltiorrhiza.	10.1007/s00709-016-0981-z	SmLEA2		HQ676610	NCBI GenBank	full-length ORF	not reported in the checked text	1017	319	LOC130995557	SmilChr01G003727	130995557	XP_057776873.1	GCF_028751815.1	protein	99.687	100.0	319	Exact or near-exact sequence match	uncharacterized LOC130995557	Secreted (1.000); Secreted (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"ATGGCGTCTTATGATAAGCCAGATGTGTCCGAAAGGGAAGTGAGGGACAGAGGGGAGAAA
GAGGAAAAGAAAGAAGAGGAGAAGGGTGGCTTTCTGGACAAGGTTAAAGATTTCATCCAC
GACATAGGTGAGAAAATCGAGGAAGCAGTCGGAGTTGGGAAGCCGACTGCGGATGTTACC
GAAATCCACATTCCCCATATCAGTATGGAGAAGGCCGAGATAGTTGTGGACGTCCTTGTC
ACGAACCCGAATCCTGTTCCAATCCCTCTCATCGACATAAACTATTTGATCGAGAGCGAT
GGGAGGAAGCTGGTTTCTGGATTGATCCCTGATGCTGGGACGATACACGCACATGGCTCT
GAGACTGTTAAGCTGCCACTTTGTCTTATATACGATGATATCAAGAGCACGTACGATGAT
ATACAACCAGGAAGTGTGATTCCTTATAGGGTTAAGGTCGACCTCATTGTGGACGTGCCC
GTGTTTGGTAGGCTTACTTTCCCCCTTGAGAAGACCGGAGAGATCCCCGTCCCTTACAAA
CCACAAATCGATCTTGAGAAGGTTCAGTTTGACAAGTTCTCATTCGAGGAAACCACTGCC
ACTCTTCATCTGAAGCTGGGAAACAAGAACGACTTTGACCTATGCCTTAATGACATTGAC
TTTGAGGTTTGGCTATGCGACGTGAGCATTGGCCGCGCTGATCTGAGCAAGTCTACTAAC
ATTGCGAAGAACGGGGAAGGCTACATTGATGTCCCCATCACGTTTCGGCCCAAGGACTGC
GGCTCTGCTCTTTGGGATATGATACGAGGGAAGGGGACGGGGTACGCCATCAAAGGGAAT
ATCAATGTGGACACGCCTTTCGGGGCTATGAAGCTTCCTATCACCAAGGAGGGCGGTGAA
ACTCGTCTCAAGAAGAACAAGGAAGGTGGAGGCGACGAGGATGATGAGGTATGCTTATAA
TGTTGTGCTCATTCATATTCGTTTTCTTCTTTCCTTAGCTGGTATACATTCATCACT"	"MASYDKPDVSEREVRDRGEKEEKKEEEKGGFLDKVKDFIHDIGEKIEEAVGVGKPTADVT
EIHIPHISMEKAEIVVDVLVTNPNPVPIPLIDINYLIESDGRKLVSGLIPDAGTIHAHGS
ETVKLPLCLIYDDIKSTYDDIQPGSVIPYRVKVDLIVDVPVFGRLTFPLEKTGEIPVPYK
PQIDLEKVQFDKFSFEETTATLHLKLGNKNDFDLCLNDIDFEVWLCDVSIGRADLSKSTN
IAKNGEGYIDVPITFRPKDCGSALWDMIRGKGTGYAIKGNINVDTPFGAMKLPITKEGGE
TRLKKNKEGGGDEDDEVCL"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s00709-016-0981-z
CORE-060_JQ936590	CORE-060	2015	Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.	10.1038/srep14048	SmJAZ1		JQ936590	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	543	180	LOC131021433	SmilChr04G002290	131021433		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	99.632	100.0	543	Exact or near-exact sequence match	protein TIFY 10A-like		Article-linked accession JQ936590; GenBank CDS; active nuclear reference unique top gene LOC131021433; CDS BLAST 99.632% identity/100.00% query span; protein top gene agrees			ATGGTTTCGCCGGAAAAAGTTGATTCCGGCAAGTTTCACGGCGGCAGGTCCAACTTCTCGCAAACGTGCACCCTTCTCAGCCAGTACTTGAAGGAGAGGGGCAACTTCGGTGGCCTCACCCTTAACCTGAACCCTAATTTTCCTGAAACCCCCAAAGGGACTGTGAATCTATTGCCAAAGATTGAGCAACCGGATCAGAATCCGAGTGAGCCGAAACCAGAAAAGGAAATTGGGCAGATGACGATATTTTACGCGGGCCAGGTGATAGTACTCGACGACATTCCGGCGGACAAGGCCAAGGAGATCATCAATTTAGCCACCAGCTATCCTTCCGCAGCTGCCGTGAAACCCCACGCTCCTCAGCTGCCGCCTCTTGGATCTGATTTACCAATTGCGAGGAAGAATTCACTAGCCCGGTTTTTGGAGAAGAGGAAAGATAGGATCACCGGAACTGCGCCGTACCAAGCTAGCAAACCGGCGGTGAAGGCGGAGCCATGGCTGGAAATGGGCTCTCAATACCCGCTCCAAATTCAGCGCCATTAG	MVSPEKVDSGKFHGGRSNFSQTCTLLSQYLKERGNFGGLTLNLNPNFPETPKGTVNLLPKIEQPDQNPSEPKPEKEIGQMTIFYAGQVIVLDDIPADKAKEIINLATSYPSAAAVKPHAPQLPPLGSDLPIARKNSLARFLEKRKDRITGTAPYQASKPAVKAEPWLEMGSQYPLQIQRH	NCBI GenBank JQ936590.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/JQ936590.1
CORE-060_KC864779	CORE-060	2015	Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.	10.1038/srep14048	SmJAZ2		KC864779	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	720	239	LOC131013102	SmilChr02G004354	131013102		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	99.857	97.08	699	Exact or near-exact sequence match	protein TIFY 10a-like		Article-linked accession KC864779; GenBank CDS; active nuclear reference unique top gene LOC131013102; CDS BLAST 99.857% identity/97.08% query span; protein top gene agrees			AGACCCCCTCTCTCTCTAGACATGTCTAGTTCAAGAATGGTTTTTGATGGCAGGAGGCAGCCTGGGAGATCAAATTTTGTGCAGACATGTAATCTCTTAAGTCGTTATATTAAGGAAAAAGGGAGTCTCAGAGATTTGAATATCGAAATTGGTGGAAAAGCAGAGAGCCTTGAACACATAGTGAAGCCTGTATTAACTCAATCTTCAATTAAACAACAGCCATTCGTGGCTCCGAAATCGTCCGTTGATGCGCCTACGAGCTGCAAAGAGGATCCAGCAAAGCCATCCCAGTTGACAATATTCTACTCAGGCAGAGTGTTGGTGTTTGATGATTATCCATCTAACAAGGTTGAAGAGCTCGTGGCATTTGCCAAGAAGGAGAGCTCCTGCAGCATTCTCTCGAGCAACATGGACGCTGCTGGTGGGCCCATCTCTAGCTCGCGAGATGGGCTGCCTCCACGGCCTCATCAGGCCGGTACCGGCTCCCACAAGGCTGCCGCCATTTCATCCAACGCCTCTAAGGAGAAAAAGAGCAGCACTACTACTACTACTACTACTGACGCTAATGGTTCAGATCTGCCAATTGCAAGAAGATCGTCACTCCATCGGTTTCTTGAGAAGAGGAAAGATCGATCTGTGGTTAGGGGGCCTTATCATCAAGTTCAAGAACATCCAGGATCTTCTTCAAAGGGAGATGAACAGCTTGAGCTCAAATTATGA	RPPLSLDMSSSRMVFDGRRQPGRSNFVQTCNLLSRYIKEKGSLRDLNIEIGGKAESLEHIVKPVLTQSSIKQQPFVAPKSSVDAPTSCKEDPAKPSQLTIFYSGRVLVFDDYPSNKVEELVAFAKKESSCSILSSNMDAAGGPISSSRDGLPPRPHQAGTGSHKAAAISSNASKEKKSSTTTTTTTDANGSDLPIARRSSLHRFLEKRKDRSVVRGPYHQVQEHPGSSSKGDEQLELKL	NCBI GenBank KC864779.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/KC864779.1
CORE-060_KC864780	CORE-060	2015	Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.	10.1038/srep14048	SmJAZ3		KC864780	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	927	308	LOC131019618	SmilChr04G001738	131019618		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	99.137	100.0	927	Exact or near-exact sequence match	protein TIFY 6B-like		Article-linked accession KC864780; GenBank CDS; active nuclear reference unique top gene LOC131019618; CDS BLAST 99.137% identity/100.00% query span; protein top gene agrees			ATGCAGTGGTCATTCTCCAACAAGGGCTCTGCTCTTCCTCAGCTCTTGTCTTTTCAAGGTGCTCAAGAAGACAAACAACCCAAAACGGGTTTTAATTCTCTTGCACCATCTGGATTGGTTACCTTAACTACCGATGTTTTCGACTCCGATCACAGCCAGTTTCCTGCTTCACAGAAAAGCCATGTTCCTGAGAAGCAAGGTGGGGTTCGTTACACGGTGACAACATACGGAGACACACACAATATACGTCGTGCAATCACCACTTCACCAGCCTCCTACGCTGCTCCTGTGGCCGGATTTCCAGTGGCGAATCCTCTACAAGCCAAGCCTTCTAACAGCGCTGCCGTTGGAACCACTGATTTTAGGAACTCGTGCAAGATCTCGAACACGCCTGCTCAGCTAACCATCTTCTACAACGGCTCAGTATGCGTGTACGACGACATTTCTCCCGAGAAGGCTCAAGCTATTATGCTATTGGCTGGAAATGCACATTCAGTGGCTCCTAAGGCGACGCCTCCTGCAGTTCCCGTCCAGGCCGCCATGCCTAGATGTTCGGTTCCTGACAGGCTAACCATAAACCAGTCTTATGCAACCACACCTCGTCGTTCCAGCCCTGTCCCTATGACCCCCATTAGCGTCTCCCAGTCTGCTAATAAGCCATCTGGAGCTCGTATGTCGCCTCCTATCAATGCTGAGCCTCTGAAAACAGTCATTCCTCTAGGATCTGCAAGCTTTCTATCATCAGACACTGTGCCTCAGTTTCGCAAAAAATCTCTAGCCCGGTTCTTGGAGAAACGCAAGGAGAGGGTGATCAGTGCTTCACCTTATGGTGAGTGTCAATCTGGGGATTATAGCACTGCCGGAGCAGGCGCGATGAGCTTGTCGATGAACTCTTCAGGATCTTGTCCAGTTCCAGCTGCCAATTGA	MQWSFSNKGSALPQLLSFQGAQEDKQPKTGFNSLAPSGLVTLTTDVFDSDHSQFPASQKSHVPEKQGGVRYTVTTYGDTHNIRRAITTSPASYAAPVAGFPVANPLQAKPSNSAAVGTTDFRNSCKISNTPAQLTIFYNGSVCVYDDISPEKAQAIMLLAGNAHSVAPKATPPAVPVQAAMPRCSVPDRLTINQSYATTPRRSSPVPMTPISVSQSANKPSGARMSPPINAEPLKTVIPLGSASFLSSDTVPQFRKKSLARFLEKRKERVISASPYGECQSGDYSTAGAGAMSLSMNSSGSCPVPAAN	NCBI GenBank KC864780.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/KC864780.1
CORE-060_JQ936591	CORE-060	2015	Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.	10.1038/srep14048	SmJAZ8		JQ936591	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	369	122	LOC130985190	SmilChr05G000468	130985190		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	98.374	100.0	369	Exact or near-exact sequence match	protein TIFY 5A		Article-linked accession JQ936591; GenBank CDS; active nuclear reference unique top gene LOC130985190; CDS BLAST 98.374% identity/100.00% query span; protein top gene agrees			ATGAAGCGCAACTGCAATTTGGAGCTTCGGCTCGTAACGCCTTCGGTCTCCTTCCATCTAGCTGATCGCAGCGACTCCATGTTGGATATGAATGAAGAGAGTCCGAACAATACGCAGCAGCTAACAATTTTCTACAATGGAAAAATTGCTTCATGTGATGCTACAGAACTTCAGGCTAGAGCGATCATATCGCTGGCGAGTCGAGAAGTGGAGGAAAAATCGAGCAGGAATTCGCCGCCGCCGCCGCTGAATTCGCCGGTGTACAGCGCGGCGACTGGTATGTCGATGAAGAGGTCGCTGAAGAGATTTCTGGAGAAGAGAAAGAGTAGGGCTCAATCAATGTCGCCATACCTGATTACCAGACAGTAA	MKRNCNLELRLVTPSVSFHLADRSDSMLDMNEESPNNTQQLTIFYNGKIASCDATELQARAIISLASREVEEKSSRNSPPPPLNSPVYSAATGMSMKRSLKRFLEKRKSRAQSMSPYLITRQ	NCBI GenBank JQ936591.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/JQ936591.1
P020_EU003997	P020	2014	RNA interference-mediated repression of SmCPS (copalyldiphosphate synthase) expression in hairy roots of Salvia miltiorrhiza causes a decrease of tanshinones and sheds light on the functional role of SmCPS.	10.1007/s10529-013-1358-4	SmCPS		EU003997	NCBI GenBank	full-length cDNA	2688 bp cDNA; ORF 2382 bp	2613	793	LOC131015110	SmilChr03G004237	131015110	XP_057799344.1	GCF_028751815.1	protein	99.496	100.0	793	Exact or near-exact sequence match	copalyl diphosphate synthase CPS1, chloroplastic	Chloroplast (0.800)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"GGACAAGCAAGCAACACTAAATTTTCTCATACTTTAATTTCTTTCCACATCTCCACTCAA
AGGGAAATTTGAATGGCCTCCTTATCCTCTACAATCCTCAGCCGCTCTCCGGCGGCCCGC
CGCAGAATTACGCCGGCGTCGGCTAAGCTTCACCGGCCGGAATGTTTCGCCACCAGTGCA
TGGATGGGCAGCAGCAGTAAAAACCTTTCTCTCAGCTACCAACTTAATCACAAGAAAATA
TCAGTTGCCACAGTAGATGCGCCGCAGGTGCATGACCACGACGGCACTACCGTTCATCAA
GGCCATGATGCGGTGAAGAATATTGAGGATCCCATTGAATACATCAGGACGTTGTTGAGG
ACGACGGGGGACGGGAGAATAAGCGTGTCGCCGTACGACACGGCGTGGGTGGCGATGATC
AAGGACGTGGAGGGGCGGGACGGCCCCCAGTTCCCCTCCAGCCTCGAGTGGATCGTGCAG
AATCAACTCGAGGATGGATCGTGGGGCGATCAGAAGCTTTTCTGCGTCTACGATCGCCTC
GTCAATACCATCGCGTGCGTGGTAGCCTTGAGATCGTGGAATGTTCATGCTCACAAGGTC
AAAAGAGGAGTGACGTACATCAAGGAAAATGTGGATAAACTTATGGAGGGAAATGAGGAG
CACATGACTTGTGGGTTCGAAGTGGTGTTTCCGGCGCTTCTACAAAAAGCGAAAAGCTTA
GGCATCGAAGATCTTCCTTACGATTCTCCGGCGGTGCAGGAGGTTTATCATGTCAGGGAA
CAAAAGTTGAAAAGGATTCCACTGGAGATTATGCACAAAATACCGACATCATTATTATTT
AGTTTGGAAGGGCTCGAAAATTTGGATTGGGACAAACTTTTGAAACTGCAGTCAGCCGAC
GGTTCCTTCCTCACCTCTCCCTCCTCCACCGCCTTCGCGTTCATGCAAACCAAGGATGAA
AAATGCTACCAATTCATCAAGAACACGATAGACACTTTCAACGGAGGAGCGCCACACACT
TATCCCGTCGACGTGTTTGGAAGGCTCTGGGCGATCGACCGGCTGCAGCGCCTCGGAATT
TCCCGCTTTTTTGAGCCGGAGATTGCTGATTGCTTAAGCCACATCCACAAATTTTGGACG
GATAAGGGAGTTTTCAGTGGGAGAGAATCGGAGTTTTGCGACATTGACGATACATCCATG
GGAATGAGGCTTATGAGGATGCATGGATATGATGTTGATCCAAATGTGCTGAGGAATTTC
AAGCAGAAAGATGGTAAATTCTCTTGCTACGGCGGGCAGATGATCGAGTCGCCTTCTCCG
ATATACAATCTTTACAGAGCTTCTCAGCTCCGATTTCCCGGCGAGGAAATCCTCGAAGAT
GCGAAGAGATTCGCCTACGATTTCTTGAAAGAAAAACTAGCCAACAATCAGATTCTGGAT
AAATGGGTTATTTCTAAGCACTTGCCTGATGAGATCAAGCTCGGGCTAGAGATGCCGTGG
CTCGCCACCCTACCCCGCGTCGAGGCGAAGTACTACATCCAGTACTACGCCGGCTCCGGC
GACGTGTGGATCGGAAAGACGCTGTACAGGATGCCGGAGATCAGCAACGACACGTACCAC
GACCTAGCCAAGACGGATTTCAAGAGATGCCAAGCGAAGCATCAGTTCGAGTGGCTCTAC
ATGCAAGAATGGTACGAGAGCTGCGGCATCGAGGAATTCGGGATAAGCAGAAAGGACCTT
CTGCTTTCCTATTTCTTGGCGACCGCGAGCATCTTCGAGCTCGAGAGGACCAACGAGCGA
ATCGCGTGGGCCAAATCGCAGATCATCGCTAAGATGATCACTTCTTTCTTCAACAAGGAA
ACTACGTCGGAGGAGGACAAGCGAGCTCTTTTGAACGAGCTCGGAAACATTAATGGCCTC
AACGACACAAACGGCGCAGGGAGAGAAGGTGGGGCCGGTAGCATTGCGCTAGCGACCCTC
ACTCAGTTCCTCGAGGGATTCGACAGATACACCAGACACCAGCTGAAAAATGCTTGGAGC
GTATGGCTGACGCAGCTGCAACATGGCGAAGCAGACGACGCGGAGCTCCTAACCAACACG
TTGAACATCTGCGCCGGCCACATCGCCTTCAGGGAAGAAATACTGGCGCACAACGAGTAC
AAAGCTCTCTCCAACCTAACCAGCAAAATCTGTCGACAGCTTTCTTTCATTCAAAGCGAA
AAGGAGATGGGAGTAGAGGGCGAGATCGCAGCGAAATCGAGCATAAAAAACAAGGAACTC
GAAGAAGACATGCAAATGTTGGTGAAGTTGGTGCTTGAGAAATATGGGGGCATAGATAGA
AATATAAAGAAAGCGTTTTTAGCAGTTGCGAAGACTTATTATTACAGAGCGTATCATGCC
GCCGACACCATAGACACACACATGTTTAAAGTGCTTTTCGAGCCAGTCGCGTGAATATTT
TGTTTAAATAAGTATATAGTTGTTTGTGTCGCCACGGGAAAAGAAATGTAACATAATCTT
TTATTATTTTGTATAAATAAAAACAGTTCAGCAGAAATAAAATAAATTTTTAGATTTTCT
CCAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA"	"MASLSSTILSRSPAARRRITPASAKLHRPECFATSAWMGSSSKNLSLSYQLNHKKISVAT
VDAPQVHDHDGTTVHQGHDAVKNIEDPIEYIRTLLRTTGDGRISVSPYDTAWVAMIKDVE
GRDGPQFPSSLEWIVQNQLEDGSWGDQKLFCVYDRLVNTIACVVALRSWNVHAHKVKRGV
TYIKENVDKLMEGNEEHMTCGFEVVFPALLQKAKSLGIEDLPYDSPAVQEVYHVREQKLK
RIPLEIMHKIPTSLLFSLEGLENLDWDKLLKLQSADGSFLTSPSSTAFAFMQTKDEKCYQ
FIKNTIDTFNGGAPHTYPVDVFGRLWAIDRLQRLGISRFFEPEIADCLSHIHKFWTDKGV
FSGRESEFCDIDDTSMGMRLMRMHGYDVDPNVLRNFKQKDGKFSCYGGQMIESPSPIYNL
YRASQLRFPGEEILEDAKRFAYDFLKEKLANNQILDKWVISKHLPDEIKLGLEMPWLATL
PRVEAKYYIQYYAGSGDVWIGKTLYRMPEISNDTYHDLAKTDFKRCQAKHQFEWLYMQEW
YESCGIEEFGISRKDLLLSYFLATASIFELERTNERIAWAKSQIIAKMITSFFNKETTSE
EDKRALLNELGNINGLNDTNGAGREGGAGSIALATLTQFLEGFDRYTRHQLKNAWSVWLT
QLQHGEADDAELLTNTLNICAGHIAFREEILAHNEYKALSNLTSKICRQLSFIQSEKEMG
VEGEIAAKSSIKNKELEEDMQMLVKLVLEKYGGIDRNIKKAFLAVAKTYYYRAYHAADTI
DTHMFKVLFEPVA"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s10529-013-1358-4
P016_AY725206	P016	2014	Overexpression of SmLEA enhances salt and drought tolerance in Escherichia coli and Salvia miltiorrhiza.	10.1007/s00709-014-0626-z	SmLEA		AY725206	NCBI GenBank	full-length ORF	not reported in the checked text	739	164	LOC131007813	SmilChr02G001336	131007813	XP_057790712.1	GCF_028751815.1	protein	100.0	100.0	164	Exact or near-exact sequence match	desiccation protectant protein Lea14 homolog	Secreted (0.800)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"GCACGAGGGAAAAATGGAGCTCTTGGAGAAGGCGAAGAACTACGTGACCGAGAAATTGAC
GAACGTGGCGGTGCCGGAGGCGACGATCGCGGACGTGGATCTGAAAGGCTTCGGCCTCGA
TGGAATCACACTGCTCGCCAAGGTCACCGTCTCCAACCCGTACGGCGTCCCGATCCCGAT
CGGCGAGATCGCGTACGCCGTGAAGAGCAACGAGAGGGTGATCGCGTCCGGCACCATCCC
CGACCCCGGATCTCTCAAGGCCAGCGACAGCACCCACCTTGAGGTCACCGTGAAGGTGCC
GCACAGCGCCGCCATCAGCTTGGTCCGCGACATCGGCGGCGATTGGGACATCGATTATAC
CCTGGCGCTAGGGCTCATCATCGATCTCCCCGTGGTCGGGAATATCACGATTCCGATTTC
GTATCAGGGGGAGATGAAGCTGCCCTCCATTTCTGACTTTTTCAGTGGGACATCGGGTGA
GGCTAACGAGAATGTTGAGGTCAAATAGAAGGATATGTTTTCTGTTTGCTATCACGGAAA
CAATCAATTCTTTCCACTTTTCTTTGCATGGATAAGGCCGGGAAGAATGTAATAAACCCC
TATTTCGATTCTCGCTGTTGTCTTTTTGGGGTTATTTTGTTCCCATCCAACTTTTTATTA
TTAGGATTATTTATATATAAAAAAAATTTGCCGGAAAAAAAAAAAAAAAAAAAAAAAAAA
AAAAAAAAAAAAAAAAAAA"	"MELLEKAKNYVTEKLTNVAVPEATIADVDLKGFGLDGITLLAKVTVSNPYGVPIPIGEIA
YAVKSNERVIASGTIPDPGSLKASDSTHLEVTVKVPHSAAISLVRDIGGDWDIDYTLALG
LIIDLPVVGNITIPISYQGEMKLPSISDFFSGTSGEANENVEVK"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s00709-014-0626-z
P002_JX422213	P002	2013	CYP76AH1 catalyzes turnover of miltiradiene in tanshinones biosynthesis and enables heterologous production of ferruginol in yeasts.	10.1073/pnas.1218061110	CYP76AH1		JX422213	NCBI GenBank	cDNA/CDS record	not reported in the checked text	1488	495	LOC131015108	SmilChr03G004234	131015108		GCF_028751815.1	nucleotide	99.194	100.0	1488	Exact or near-exact sequence match	ferruginol synthase-like	Endoplasmic reticulum (1.000); Endoplasmic reticulum membrane (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"ATGGATTCTTTTCCTCTCCTCGCCGCGCTCTTCTTCATCGCCGCGACGATAACATTCCTC
TCCTTCCGGCGCCGGAGGAACCTCCCTCCGGGGCCGTTCCCCTACCCGATCGTCGGAAAC
ATGCTGCAACTCGGCGCCAACCCTCACCAGGTGTTCGCGAAGCTCTCAAAGAGATACGGC
CCGCTGATGTCGATCCATCTCGGCAGCCTCTACACCGTGATCGTCTCCTCCCCGGAGATG
GCGAAGGAGATCCTCCACAGGCACGGGCAGGTCTTCTCCGGCCGCACCATCGCGCAGGCG
GTGCACGCGTGCGACCACGACAAGATCTCCATGGGGTTCCTCCCCGTGGCCAGCGAGTGG
CGCGACATGCGCAAGATATGCAAGGAGCAGATGTTCTCCAACCAGAGCATGGAGGCCAGC
CAGGGCCTCCGCCGCCAGAAGCTGCAGCAGCTCCTCGACCACGTCCAGAAATGCTCCGAC
AGCGGCCGCGCGGTCGACATCCGCGAGGCCGCCTTCATCACCACGCTCAACCTCATGTCG
GCCACGCTCTTCTCCTCGCAGGCCACCGAGTTCGACTCCAAGGCCACCATGGAGTTCAAG
GAGATCATCGAGGGCGTCGCCACCATCGTCGGCGTGCCCAACTTCGCCGACTACTTCCCC
ATCCTCCGCCCCTTCGACCCGCAGGGTGTCAAGCGCAGGGCGGATGTTTTCTTCGGCAAA
TTGCTCGCCAAAATCGAAGGGTATCTCAATGAGAGGCTCGAATCGAAGAGGGCCAATCCC
AATGCGCCAAAGAAGGATGACTTTTTGGAGATAGTGGTTGATATTATTCAGGCCAACGAG
TTCAAGTTGAAGACGCATCACTTCACCCATCTCATGCTGGACTTGTTCGTGGGAGGATCG
GACACGAACACGACCTCGATCGAGTGGGCCATGTCGGAGCTAGTGATGAACCCGGACAAG
ATGGCTCGACTGAAGGCGGAGCTGAAGAGCGTGGCCGGAGACGAGAAGATCGTGGATGAG
TCGGCAATGCCGAAGCTGCCGTACCTGCAAGCCGTGATAAAGGAGGTGATGCGGATCCAC
CCGCCGGGCCCACTGCTCCTCCCTCGCAAAGCGGAGAGCGATCAGGAGGTGAACGGCTAT
CTCATCCCCAAGGGAACTCAGATACTCATCAACGCGTATGCGATAGGGAGGGATCCGAGT
ATCTGGACCGACCCGGAGACGTTCGACCCGGAACGCTTCCTCGATAACAAGATAGACTTC
AAGGGCCAGGATTACGAGCTCCTTCCGTTCGGGTCGGGTAGACGGGTCTGCCCCGGCATG
CCGCTCGCGACCCGGATCCTGCACATGGCTACTGCGACTCTGGTTCATAACTTCGACTGG
AAACTGGAAGATGACTCCACGGCGGCCGCCGATCACGCCGGCGAGTTGTTTGGGGTGGCC
GTGCGCAGGGCAGTTCCGCTTAGGATTATCCCAATAGTTAAGTCTTAG"	"MDSFPLLAALFFIAATITFLSFRRRRNLPPGPFPYPIVGNMLQLGANPHQVFAKLSKRYG
PLMSIHLGSLYTVIVSSPEMAKEILHRHGQVFSGRTIAQAVHACDHDKISMGFLPVASEW
RDMRKICKEQMFSNQSMEASQGLRRQKLQQLLDHVQKCSDSGRAVDIREAAFITTLNLMS
ATLFSSQATEFDSKATMEFKEIIEGVATIVGVPNFADYFPILRPFDPQGVKRRADVFFGK
LLAKIEGYLNERLESKRANPNAPKKDDFLEIVVDIIQANEFKLKTHHFTHLMLDLFVGGS
DTNTTSIEWAMSELVMNPDKMARLKAELKSVAGDEKIVDESAMPKLPYLQAVIKEVMRIH
PPGPLLLPRKAESDQEVNGYLIPKGTQILINAYAIGRDPSIWTDPETFDPERFLDNKIDF
KGQDYELLPFGSGRRVCPGMPLATRILHMATATLVHNFDWKLEDDSTAAADHAGELFGVA
VRRAVPLRIIPIVKS"	nucleotide FASTA and GenBank CDS translation retrieved from NCBI	nucleotide_and_protein	Article accession plus sequence alignment to current reference	https://doi.org/10.1073/pnas.1218061110
CORE-065_KC213793	CORE-065	2013	Cloning and characterization of a putative R2R3 MYB transcriptional repressor of the rosmarinic acid biosynthetic pathway from Salvia miltiorrhiza.	10.1371/journal.pone.0073259	SmMYB39		KC213793	NCBI GenBank	CDS feature from GenBank nucleotide record	not independently verified in article text	693	230	LOC131001051	SmilChr08G001503	131001051		GCF_028751815.1	nucleotide CDS and protein BLAST against active nuclear reference, 2026-09-27	98.413	100.0	693	Exact or near-exact sequence match	MYB-like transcription factor 4		Article-linked accession KC213793; GenBank CDS; active nuclear reference unique top gene LOC131001051; CDS BLAST 98.413% identity/100.00% query span; protein top gene agrees			ATGGGAAGGTCTCCTTGCTGTGAGAAAGCTCACACAAACAAAGGGGCGTGGACTAAGGAAGAAGACGATCGGCTGGTGGCCTACATCCGCGCCCACGGCGAGGGATGCTGGCGCTCGCTCCCTAAGGCCGCCGGGCTCCTCCGCTGCGGCAAGAGCTGCCGCCTCCGCTGGATCAACTACCTCCGCCCCGATCTCAAGAGAGGCAACTTCACCGAAGAAGAAGACGAACTCATCATCAAACTCCATAGCCTTCTCGGCAACAAATGGTCTCTTATTGCTGGGAGATTGCCGGGGCGGACGGACAACGAGATCAAGAACTACTGGAACACGCACATCAGAAGAAAGCTGGTGAGCCGAGGCATTGATCCCACTACGCATCGCCCCATCAATGAGGCTGAGGCTCAGCCTGCCACAACTATTTCTTTTAATTCATCAAACAAATTACTAGGGAAGGAAGAGAGGCGCAGCCCTAAGTGCCCCGATTTGAATCTTGACCTCAGAATCAGCCCTCCCTATCAACAAGAACCCTTCAAAACAGGTACCGCCAGTAGTAGCAGTACCTTGTGCTTCGCTTGTAGTCTCGGCATCCAAAACAGCAAAGATTGCAGCTGTACAAATACCACTAATTCTGGATTCGATTTTCTGGGATTGAAATCTGGCGTTTTGGATTACAGAAGATTGGAGATGAAATGA	MGRSPCCEKAHTNKGAWTKEEDDRLVAYIRAHGEGCWRSLPKAAGLLRCGKSCRLRWINYLRPDLKRGNFTEEEDELIIKLHSLLGNKWSLIAGRLPGRTDNEIKNYWNTHIRRKLVSRGIDPTTHRPINEAEAQPATTISFNSSNKLLGKEERRSPKCPDLNLDLRISPPYQQEPFKTGTASSSSTLCFACSLGIQNSKDCSCTNTTNSGFDFLGLKSGVLDYRRLEMK	NCBI GenBank KC213793.1, CDS feature	GenBank CDS and translated protein retrieved	Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping	https://www.ncbi.nlm.nih.gov/nuccore/KC213793.1
P012_CV166981	P012	2008	Molecular cloning, expression and characterization of a phenylalanine ammonia-lyase gene (SmPAL1) from Salvia miltiorrhiza.	10.1007/s11033-008-9266-8	SmPAL1		CV166981	NCBI GenBank	partial EST/cDNA fragment	493 bp cloned 3-prime coding fragment; not a complete CDS	440	0	LOC130997735	SmilChr08G003149	130997735		GCF_028751815.1	nucleotide	100.0	84.77	373	High-confidence sequence match	phenylalanine ammonia-lyase-like	Cytoplasm (1.000); Cytosol (1.000)	Live BLAST against current website CDS/protein sequences on 2026-08-29			"GCTCCACCGCGGTGGCGGCCGCTCTAGAACTAGTGGATCCCCCGGGCTGCAGGAATTCGG
CACGAGGGCGAGAAGGACTTGATCCGCGTGGTCGACCGCGAGTACGTTTTCGCCTACATC
GACGACCCCTGCAGCGCCACCTACCCCTTGATGCAGAAGCTGAGGCAGGTGCTCGTCGAT
CACGCCCTCAAGAACGGGGACTTGGAGAAGAACGCGAGCACCTCGATCTTCCAGAAGATC
GAGGCGTTCGAGGAGGAGCTCAAGGCCTTATTGCCCAAGGAGGTGGAGAGCGCGAGGATG
GCCCTCGAGAGCGGGAGCCCCACCGTGGCCAACCGGATAGCGGAGTGCAGGTCGTACCCG
TTGTATAAGTTCATAAGGGAGCAGCTCGGCGCGGGGTTCTTGACGGGGGAGAAGGCGGTG
TCGCCGGGGGAGGAGTGCGA"		nucleotide FASTA retrieved; no translated CDS feature available	nucleotide_only	Article accession plus sequence alignment to current reference	https://doi.org/10.1007/s11033-008-9266-8
