Reviewer evidence crosswalk

Published Salvia miltiorrhiza Gene Registry

This registry combines audited published gene names, current gene IDs, accessions, and evidence status. Accession–sequence mappings and manually reviewed name mappings are labeled separately; mapped records link to Gene Card. Name-only records remain unresolved rather than being assigned a current ID.
72Published-name records
34Mapped to current IDs
34Name-only unresolved
4Generic/ambiguous

Show all recordsBack to sequence evidence

Registry results

72 rows
Published geneCurrent Gene IDMapping statusConfidence/evidencePapers and accessionsFunction/boundary
CYP76AH1 SmilChr03G004234
LOC131015108
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P002; CORE-054; CORE-058; CORE-061; CORE-066
JX422213
CYP76AH1 catalyzes turnover of miltiradiene in tanshinones biosynthesis and enables heterologous production of ferruginol in yeasts.; [Overexpression and isolation of CYP76AH1 in Salvia miltiorrhiza hairy roots].; RNA interference targeting CYP76AH1 in hairy roots of Salvia miltiorrhiza reveals its key role in the biosynthetic pathway of tanshinones.; [RNA interference and its effect of CYP76AH1 in biosynthesis of tanshinone].
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmbHLH125 SmilChr05G004170
LOC131025225
Gene Card
mapped_accession_sequence High-confidence sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P003; CORE-015
KP257557.1
Deciphering the role of a novel basic helix-loop-helix (bHLH) transcription factor: SmbHLH125 in Salvia miltiorrhiza secondary metabolism through transcriptomic and metabolomic insights.
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论文 accession 与当前参考序列的显式比对;不按名称推断
HPPR SmilChr07G001314
LOC130992480
Gene Card
mapped_accession_sequence High-confidence sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P008; CORE-055
DQ099741; AAZ67354
HPPR encodes the hydroxyphenylpyruvate reductase required for the biosynthesis of hydrophilic phenolic acids in Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmPAL1 SmilChr08G003149
LOC130997735
Gene Card
mapped_accession_sequence High-confidence sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P012; CORE-068
CV166981
Molecular cloning, expression and characterization of a phenylalanine ammonia-lyase gene (SmPAL1) from Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmMAPK4 SmilChr04G003884
LOC131020684
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P013; CORE-009
PQ882505
Discovery of the roles of SmMAPK4 in regulating tanshinone biosynthesis in Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmGRAS5 SmilChr05G002318
LOC131024222
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P014; P024; CORE-016; CORE-017
KY435890
Overexpression of SmGRAS5 enhances tolerance to abiotic stresses in Salvia miltiorrhiza.; SmGRAS5 acts as a positive regulator in GA-induced biosynthesis of tanshinones in Salvia miltiorrhiza hairy roots.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmLEA SmilChr02G001336
LOC131007813
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P016; CORE-064
AY725206
Overexpression of SmLEA enhances salt and drought tolerance in Escherichia coli and Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmMYB9b SmilChr05G002378
LOC131024270
Gene Card
mapped_accession_sequence High-confidence sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P017; CORE-057
JX113685; JX113686
Overexpression of SmMYB9b enhances tanshinone concentration in Salvia miltiorrhiza hairy roots.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmCPS SmilChr03G004237
LOC131015110
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P020; CORE-062
EU003997
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.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmJRB1 SmilChr08G002720
LOC130997349
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P025; CORE-041
MT921839
SmJRB1 positively regulates the accumulation of phenolic acid in Salvia miltiorrhiza
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmLEA2 SmilChr01G003727
LOC130995557
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P026; CORE-059
HQ676610
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.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmPPT SmilChr06G001027
LOC130988561
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P030; CORE-050
MH707439
SmPPT, a 4-hydroxybenzoate polyprenyl diphosphate transferase gene involved in ubiquinone biosynthesis, confers salt tolerance in Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmWD40-2 SmilChr01G001557
LOC131018845
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P031; CORE-030
OP009356
SmWD40-2 functions as a positive regulator of both tanshinones and phenolic acids biosynthesis in Salvia miltiorrhiza Bunge hairy roots
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmSPL7 SmilChr04G004075
LOC131020947
Gene Card
mapped_accession_sequence High-confidence sequence match
Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text
P037; CORE-038
KF437883
Transcription factor SmSPL7 promotes anthocyanin accumulation and negatively regulates phenolic acid biosynthesis in Salvia miltiorrhiza
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmDXS5 SmilChr04G004077
LOC131020949
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping; full text available
CORE-032
JN831118
SmDXS5, acting as a molecular valve, plays a key regulatory role in the primary and secondary metabolism of tanshinones in Salvia miltiorrhiza.; SmDXS5 , acting as a molecular valve, plays a key regulatory role in the primary and secondary metabolism of tanshinones in Salvia miltiorrhiza .
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmANS SmilChr07G003934
LOC130994631
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping; full text available
CORE-051
MK704422
Overexpression of SmANS Enhances Anthocyanin Accumulation and Alters Phenolic Acids Content in Salvia miltiorrhiza and Salvia miltiorrhiza Bge f. alba Plantlets.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmWRKY61 SmilChr01G004509
LOC131003859
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping; full text available
CORE-036
KM823184
Integrated Transcriptomics and Proteomics to Reveal Regulation Mechanism and Evolution of SmWRKY61 on Tanshinone Biosynthesis in Salvia miltiorrhiza and Salvia castanea.; Integrated Transcriptomics and Proteomics to Reveal Regulation Mechanism and Evolution of SmWRKY61 on Tanshinone Biosynthesis in Salvia miltiorrhiza and Salvia castanea .
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmNRAMP1 SmilChr01G004712
LOC131005059
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping; Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping; full text available
CORE-006
PP663236; PP663235
Functional characterization of SmNRAMP1 allelic variants conferring reduced cadmium uptake in Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmMYB39 SmilChr08G001503
LOC131001051
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping; full text available
CORE-065
KC213793
Cloning and characterization of a putative R2R3 MYB transcriptional repressor of the rosmarinic acid biosynthetic pathway from Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmJAZ1 SmilChr04G002290
LOC131021433
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping
CORE-060
JQ936590
Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmJAZ2 SmilChr02G004354
LOC131013102
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping
CORE-060
KC864779
Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmJAZ3 SmilChr04G001738
LOC131019618
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping
CORE-060
KC864780
Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmJAZ8 SmilChr05G000468
LOC130985190
Gene Card
mapped_accession_sequence Exact or near-exact sequence match
Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping
CORE-060
JQ936591
Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.
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论文 accession 与当前参考序列的显式比对;不按名称推断
SmCPK20 LOC130997118
LOC130997118
Gene Card
mapped_reviewed_name medium-high
人工核对的文献基因名映射
P16_SmCPK20_SmWRKY2

-
Phosphorylates SmWRKY2 to regulate JA-mediated tanshinone synthesis.
Website function annotation keyword: calcium-dependent protein kinase 20-like
SmCPS1 LOC131015110
LOC131015110
Gene Card
mapped_reviewed_name high
人工核对的文献基因名映射
P12_genome_known_tanshinone_genes;P13_CRISPR_SmCPS1

-
Copalyl diphosphate synthase involved in tanshinone/diterpene biosynthesis; CRISPR mutagenesis target.
Website function annotation keyword: copalyl diphosphate synthase CPS1, chloroplastic
SmDXS2 LOC131001517
LOC131001517
Gene Card
mapped_reviewed_name medium
人工核对的文献基因名映射
P02_SmMYB36_tanshinones;P03_SmMYB36_SmERF6_SmERF115

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MEP-pathway gene associated with tanshinone biosynthesis regulation.
Website function annotation keyword: probable 1-deoxy-D-xylulose-5-phosphate synthase 2, chloroplastic
SmERF1b-like LOC131021933
LOC131021933
Gene Card
mapped_reviewed_name high
人工核对的文献基因名映射; abstract-only or inaccessible full text
P09_SmERF1b_like_tanshinone; CORE-031

The SmERF1b-like was involved in tanshinone biosynthesis of Salvia miltiorrhiza hairy root
Regulates tanshinone biosynthesis.
BLASTN/BLASTX against website CDS/protein; 97.41% nucleotide identity, 100% query coverage
SmGGPPS1 LOC130986581
LOC130986581
Gene Card
mapped_reviewed_name medium
人工核对的文献基因名映射
P03_SmMYB36_SmERF6_SmERF115;P05_SmMYC2_SmMYB36

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Geranylgeranyl pyrophosphate synthase pathway gene targeted by JA/MYC2-related regulation.
Website function annotation keyword: geranylgeranyl pyrophosphate synthase, chloroplastic-like
SmMYB1 LOC130992677
LOC130992677
Gene Card
mapped_reviewed_name medium-low
人工核对的文献基因名映射; full text available
P06_SmMYB1_phenolic_acids; CORE-043

The methyl jasmonate-responsive transcription factor SmMYB1 promotes phenolic acid biosynthesis in Salvia miltiorrhiza.
Promotes phenolic acid biosynthesis, partly through CYP98A14 activation.
BLASTX partial MYB-domain hit; 79.65% identity, 53% query coverage
SmMYB36 LOC131015177
LOC131015177
Gene Card
mapped_reviewed_name high
人工核对的文献基因名映射
P02_SmMYB36_tanshinones;P03_SmMYB36_SmERF6_SmERF115;P04_SmCSN5_SmMYB36;P05_SmMYC2_SmMYB36

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Regulates tanshinone and phenolic acid biosynthesis; affects metabolic flux.
BLASTN/BLASTX against website CDS/protein; 97.37% nucleotide identity, 100% query coverage
SmMYC2 LOC130997349
LOC130997349
Gene Card
mapped_reviewed_name low
人工核对的文献基因名映射; abstract-only or inaccessible full text; full text available
P05_SmMYC2_SmMYB36;P06_SmMYB1_phenolic_acids;P08_SmbHLH60_SmMYC2; CORE-012; CORE-033; CORE-056

SmMYC2 positively regulates the resistance to Botrytis cinerea in Salvia miltiorrhiza.; Overexpression of SmMYC2 enhances salt resistance in Arabidopsis thaliana and Salvia miltiorrhiza hairy roots.; Overexpression of SmMYC2 Increases the Production of Phenolic Acids in Salvia miltiorrhiza .
JA-responsive regulator of tanshinone/phenolic-acid pathway genes.
BLASTX top hit to bHLH/MYC-like protein; 32.8% identity, 86% query coverage
SmSCR1 LOC131002490
LOC131002490
Gene Card
mapped_reviewed_name high
人工核对的文献基因名映射; full text available
P07_SmSCR1_tanshinone_root; CORE-035

Overexpression of SmSCR1 Promotes Tanshinone Accumulation and Hairy Root Growth in Salvia miltiorrhiza .
Promotes tanshinone accumulation and hairy root growth.
BLASTN/BLASTX against website CDS/protein; 99.95% nucleotide identity and 99.85% protein identity
SmWRKY2 LOC130986085
LOC130986085
Gene Card
mapped_reviewed_name medium-high
人工核对的文献基因名映射; abstract-only or inaccessible full text
P16_SmCPK20_SmWRKY2; CORE-052

Tanshinone production could be increased by the expression of SmWRKY2 in Salvia miltiorrhiza hairy roots.
Critical regulator of JA-induced tanshinone accumulation.
Website function annotation keyword: probable WRKY transcription factor 2
SmbHLH60 LOC131015967
LOC131015967
Gene Card
mapped_reviewed_name medium
人工核对的文献基因名映射
P08_SmbHLH60_SmMYC2

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Regulates phenolic acids and anthocyanins; antagonistic relationship with SmMYC2.
BLASTP against website protein; top hit 65.63% identity, 99% query coverage
SmPht5 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-001

[Cloning, expression pattern, and functional verification of phosphate transporter protein SmPht5;1 in Salvia miltiorrhiza].
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmNAC36 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-002

SmNAC36 promotes the biosynthesis of bioactive compounds and drought tolerance in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmABCG24 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-003

Identification and functional characterization of SmABCG24 regulating tanshinone transport in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmGA2ox4 Unresolved name_only_unresolved -
full text available
CORE-004

SmGA2ox4 plays a positive role in improving the salt tolerance and tanshinone accumulation of Salvia miltiorrhiza .
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmNAC68 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-005

SmNAC68 transcription factor negatively regulate tanshinone biosynthesis under low-temperature conditions in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmCAD4-mediated Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-007

SmCAD4-mediated lignin biosynthesis and improved root architecture are crucial for drought tolerance in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmAOC1/2 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-008

Functional characterization of the key enzyme gene SmAOC1/2 in Salvia miltiorrhiza Bunge jasmonic acid biosynthesis pathway.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmAOC1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-008

Functional characterization of the key enzyme gene SmAOC1/2 in Salvia miltiorrhiza Bunge jasmonic acid biosynthesis pathway.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
bHLH130 Unresolved name_only_unresolved -
full text available
CORE-010

bHLH130 mediates gibberellin signaling to regulate tanshinone biosynthesis in
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmCPS4 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-011

Targeted knockout of SmCPS4 elevates tanshinone production in Salvia miltiorrhiza
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmCLE25 Unresolved name_only_unresolved -
full text available
CORE-013

Dual roles of SmCLE25 peptide in regulating stresses response and leaf senescence.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmMAPK3 Unresolved name_only_unresolved -
full text available
CORE-014

Rosmarinic Acid Synthase 1 Phosphorylation by SmMAPK3 Is Required for Salicylic Acid-Induced Salvianolic Acid Accumulation in Salvia miltiorrhiza Hairy Roots.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
bHLH Unresolved ambiguous_or_generic -
abstract-only or inaccessible full text
CORE-015

Deciphering the role of a novel basic helix-loop-helix (bHLH) transcription factor: SmbHLH125 in Salvia miltiorrhiza secondary metabolism through transcriptomic and metabolomic insights.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
MYB71 Unresolved name_only_unresolved -
full text available
CORE-018

Gibberellin-Induced Transcription Factor Sm MYB71 Negatively Regulates Salvianolic Acid Biosynthesis in Salvia miltiorrhiza .
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmABCG1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-019

The ABC transporter SmABCG1 mediates tanshinones export from the peridermic cells of Salvia miltiorrhiza root.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmERF106 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-020

The methyl jasmonate-responsive transcription factor SmERF106 promotes tanshinone accumulation in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmPIN3 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-021

Genomic analysis of PIN-FORMED genes reveals the roles of SmPIN3 in root architecture development in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmEIL1 Unresolved name_only_unresolved -
full text available
CORE-022

SmEIL1 transcription factor inhibits tanshinone accumulation in response to ethylene signaling in Salvia miltiorrhiza .
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmTPS1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-023

Functional characterization of terpene synthases SmTPS1 involved in floral scent formation in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmMATE1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-024

A novel Mutidrug and Toxic Compound Extrusion (MATE) gene SmMATE1 from Salvia miltiorrhiza Bunge, is involved in tetracycline induced mitochondrial toxicity adaptation synergically with salvianolic acid B
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
CYP98A Unresolved name_only_unresolved -
full text available
CORE-025

Versatile CYP98A enzymes catalyse meta-hydroxylation reveals diversity of salvianolic acids biosynthesis.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
CYP81C16 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-026

Functional characterization of CYP81C16 involved in the tanshinone biosynthetic pathway in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
MYB12 Unresolved name_only_unresolved -
full text available
CORE-027

Simultaneous Promotion of Salt Tolerance and Phenolic Acid Biosynthesis in Salvia miltiorrhiza via Overexpression of Arabidopsis MYB12 .
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmTIR1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-028

SmTIR1 positively regulates the growth and root development of Salvia miltiorrhiza
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmHD-Zip12 Unresolved name_only_unresolved -
full text available
CORE-029

Analysis of the HD-Zip I transcription factor family in Salvia miltiorrhiza and functional research of SmHD-Zip12 in tanshinone synthesis.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmLAC25 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-034

Overexpression of SmLAC25 promotes lignin accumulation and decreases salvianolic acid content in Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
MYC2 Unresolved ambiguous_or_generic -
abstract-only or inaccessible full text
CORE-037

Simultaneous promotion of tanshinone and phenolic acid biosynthesis in Salvia miltiorrhiza hairy roots by overexpressing Arabidopsis MYC2
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SmSPL6 Unresolved name_only_unresolved -
full text available
CORE-039; CORE-040

SmSPL6 Induces Phenolic Acid Biosynthesis and Affects Root Development in; SmSPL6 Induces Phenolic Acid Biosynthesis and Affects Root Development in Salvia miltiorrhiza .
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SmPHA4 Unresolved name_only_unresolved -
full text available
CORE-042

Plasma Membrane H + -ATPase SmPHA4 Negatively Regulates the Biosynthesis of Tanshinones in Salvia miltiorrhiza .
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SmERF1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-044

The Ethylene Response factor SmERF1 Improves Salinity Tolerance and Impacts Seed Size in Tobacco
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SmMYB97 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-045

JA-Responsive Transcription Factor SmMYB97 Promotes Phenolic Acid and Tanshinone Accumulation in
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SmNAC1 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-046; CORE-063

Integrative omic and transgenic analyses reveal the positive effect of ultraviolet-B irradiation on salvianolic acid biosynthesis through upregulation of SmNAC1.; [Construction of RNAi vectors for SmNAC1 transcription factors of Salvia miltiorrhiza using Gateway cloning technology].
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SmMYB2 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-047

SmMYB2 promotes salvianolic acid biosynthesis in the medicinal herb Salvia miltiorrhiza.
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SmGRAS3 Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-048

SmGRAS3 negatively responds to GA signaling while promotes tanshinones biosynthesis in Salvia miltiorrhiza
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ERF115 Unresolved ambiguous_or_generic -
abstract-only or inaccessible full text
CORE-049

The biosynthesis of phenolic acids is positively regulated by the JA-responsive transcription factor ERF115 in Salvia miltiorrhiza.
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SmWRKY1 Unresolved name_only_unresolved -
full text available
CORE-053

Transcription Factor SmWRKY1 Positively Promotes the Biosynthesis of Tanshinones in Salvia miltiorrhiza .
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
JAZ Unresolved ambiguous_or_generic -
full text available
CORE-060

Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza.
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当前审核材料未形成 accession—序列—网站 ID 闭环;仅作为文献检索记录
SmIPPI Unresolved name_only_unresolved -
abstract-only or inaccessible full text
CORE-067

Analysis and application of salvia miltiorrhiza bunge isopentenylpyrophosphate isomerase (SmIPPI) gene
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Evidence boundaries