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
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
