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-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
