Reviewer evidence crosswalk
| Published gene | Current Gene ID | Mapping status | Confidence/evidence | Papers and accessions | Function/boundary |
|---|---|---|---|---|---|
CYP76AH1 |
SmilChr03G004234LOC131015108Gene 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-066JX422213CYP76AH1 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]. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmbHLH125 |
SmilChr05G004170LOC131025225Gene Card |
mapped_accession_sequence | High-confidence sequence match Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text |
P003; CORE-015KP257557.1Deciphering the role of a novel basic helix-loop-helix (bHLH) transcription factor: SmbHLH125 in Salvia miltiorrhiza secondary metabolism through transcriptomic and metabolomic insights. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
HPPR |
SmilChr07G001314LOC130992480Gene Card |
mapped_accession_sequence | High-confidence sequence match Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text |
P008; CORE-055DQ099741; AAZ67354HPPR encodes the hydroxyphenylpyruvate reductase required for the biosynthesis of hydrophilic phenolic acids in Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmPAL1 |
SmilChr08G003149LOC130997735Gene Card |
mapped_accession_sequence | High-confidence sequence match Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text |
P012; CORE-068CV166981Molecular cloning, expression and characterization of a phenylalanine ammonia-lyase gene (SmPAL1) from Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmMAPK4 |
SmilChr04G003884LOC131020684Gene 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-009PQ882505Discovery of the roles of SmMAPK4 in regulating tanshinone biosynthesis in Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmGRAS5 |
SmilChr05G002318LOC131024222Gene 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-017KY435890Overexpression 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. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmLEA |
SmilChr02G001336LOC131007813Gene 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-064AY725206Overexpression of SmLEA enhances salt and drought tolerance in Escherichia coli and Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmMYB9b |
SmilChr05G002378LOC131024270Gene Card |
mapped_accession_sequence | High-confidence sequence match Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text |
P017; CORE-057JX113685; JX113686Overexpression of SmMYB9b enhances tanshinone concentration in Salvia miltiorrhiza hairy roots. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmCPS |
SmilChr03G004237LOC131015110Gene 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-062EU003997RNA 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. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmJRB1 |
SmilChr08G002720LOC130997349Gene 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-041MT921839SmJRB1 positively regulates the accumulation of phenolic acid in Salvia miltiorrhiza |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmLEA2 |
SmilChr01G003727LOC130995557Gene 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-059HQ676610SmLEA2, a gene for late embryogenesis abundant protein isolated from Salvia miltiorrhiza, confers tolerance to drought and salt stress in Escherichia coli and S. miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmPPT |
SmilChr06G001027LOC130988561Gene 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-050MH707439SmPPT, a 4-hydroxybenzoate polyprenyl diphosphate transferase gene involved in ubiquinone biosynthesis, confers salt tolerance in Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmWD40-2 |
SmilChr01G001557LOC131018845Gene 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-030OP009356SmWD40-2 functions as a positive regulator of both tanshinones and phenolic acids biosynthesis in Salvia miltiorrhiza Bunge hairy roots |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmSPL7 |
SmilChr04G004075LOC131020947Gene Card |
mapped_accession_sequence | High-confidence sequence match Article accession plus sequence alignment to current reference; abstract-only or inaccessible full text |
P037; CORE-038KF437883Transcription factor SmSPL7 promotes anthocyanin accumulation and negatively regulates phenolic acid biosynthesis in Salvia miltiorrhiza |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmDXS5 |
SmilChr04G004077LOC131020949Gene 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-032JN831118SmDXS5, 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 . |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmANS |
SmilChr07G003934LOC130994631Gene 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-051MK704422Overexpression of SmANS Enhances Anthocyanin Accumulation and Alters Phenolic Acids Content in Salvia miltiorrhiza and Salvia miltiorrhiza Bge f. alba Plantlets. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmWRKY61 |
SmilChr01G004509LOC131003859Gene 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-036KM823184Integrated 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 . |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmNRAMP1 |
SmilChr01G004712LOC131005059Gene 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-006PP663236; PP663235Functional characterization of SmNRAMP1 allelic variants conferring reduced cadmium uptake in Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmMYB39 |
SmilChr08G001503LOC131001051Gene 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-065KC213793Cloning and characterization of a putative R2R3 MYB transcriptional repressor of the rosmarinic acid biosynthetic pathway from Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmJAZ1 |
SmilChr04G002290LOC131021433Gene Card |
mapped_accession_sequence | Exact or near-exact sequence match Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping |
CORE-060JQ936590Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmJAZ2 |
SmilChr02G004354LOC131013102Gene Card |
mapped_accession_sequence | Exact or near-exact sequence match Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping |
CORE-060KC864779Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmJAZ3 |
SmilChr04G001738LOC131019618Gene Card |
mapped_accession_sequence | Exact or near-exact sequence match Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping |
CORE-060KC864780Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmJAZ8 |
SmilChr05G000468LOC130985190Gene Card |
mapped_accession_sequence | Exact or near-exact sequence match Article accession plus GenBank sequence alignment to current nuclear reference; computational identity mapping |
CORE-060JQ936591Combination of transcriptomic and metabolomic analyses reveals a JAZ repressor in the jasmonate signaling pathway of Salvia miltiorrhiza. |
- 论文 accession 与当前参考序列的显式比对;不按名称推断 |
SmCPK20 |
LOC130997118LOC130997118Gene 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 |
LOC131015110LOC131015110Gene 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 |
LOC131001517LOC131001517Gene Card |
mapped_reviewed_name | medium 人工核对的文献基因名映射 |
P02_SmMYB36_tanshinones;P03_SmMYB36_SmERF6_SmERF115 - |
MEP-pathway gene associated with tanshinone biosynthesis regulation. Website function annotation keyword: probable 1-deoxy-D-xylulose-5-phosphate synthase 2, chloroplastic |
SmERF1b-like |
LOC131021933LOC131021933Gene 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 |
LOC130986581LOC130986581Gene Card |
mapped_reviewed_name | medium 人工核对的文献基因名映射 |
P03_SmMYB36_SmERF6_SmERF115;P05_SmMYC2_SmMYB36 - |
Geranylgeranyl pyrophosphate synthase pathway gene targeted by JA/MYC2-related regulation. Website function annotation keyword: geranylgeranyl pyrophosphate synthase, chloroplastic-like |
SmMYB1 |
LOC130992677LOC130992677Gene 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 |
LOC131015177LOC131015177Gene 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 - |
Regulates tanshinone and phenolic acid biosynthesis; affects metabolic flux. BLASTN/BLASTX against website CDS/protein; 97.37% nucleotide identity, 100% query coverage |
SmMYC2 |
LOC130997349LOC130997349Gene 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 |
LOC131002490LOC131002490Gene 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 |
LOC130986085LOC130986085Gene 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 |
LOC131015967LOC131015967Gene Card |
mapped_reviewed_name | medium 人工核对的文献基因名映射 |
P08_SmbHLH60_SmMYC2 - |
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]. |
- 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. |
- 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. |
- 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 . |
- 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. |
- 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. |
- 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. |
- 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. |
- 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 |
- 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 |
- 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. |
- 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. |
- 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. |
- 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 . |
- 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. |
- 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. |
- 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. |
- 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 . |
- 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. |
- 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 |
- 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. |
- 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. |
- 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 . |
- 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 |
- 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. |
- 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. |
- 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 |
- 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 |
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 . |
- 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 |
SmPHA4 |
Unresolved | name_only_unresolved | - full text available |
CORE-042 Plasma Membrane H + -ATPase SmPHA4 Negatively Regulates the Biosynthesis of Tanshinones in Salvia miltiorrhiza . |
- 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 |
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 |
- 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 |
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 |
- 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 |
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]. |
- 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 |
SmMYB2 |
Unresolved | name_only_unresolved | - abstract-only or inaccessible full text |
CORE-047 SmMYB2 promotes salvianolic acid biosynthesis in the medicinal herb Salvia miltiorrhiza. |
- 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 |
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 |
- 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 |
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. |
- 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 |
SmWRKY1 |
Unresolved | name_only_unresolved | - full text available |
CORE-053 Transcription Factor SmWRKY1 Positively Promotes the Biosynthesis of Tanshinones in Salvia miltiorrhiza . |
- 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. |
- 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 |
- 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 |