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Basic Information
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CGSNL Gene Symbol
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ANS
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Gene Symbol Synonym
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ANS, OsANS1, ANS1, LDOX, LDOX1, OsLDOX, OsLDOX1
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CGSNL Gene Name
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ANTHOCYANIDIN SYNTHASE
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Gene Name Synonym
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anthocyanidin synthase, leucoanthocyanidin dioxygenase
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Protein Name
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ANTHOCYANIDIN SYNTHASE
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Allele
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Chromosome No.
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1
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Explanation
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Y07955. TO:0001109: grain color trait.
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Trait Class
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Biochemical character
Coloration - Anthocyanin
Coloration - Others
Seed
Seed - Morphological traits
Tolerance and resistance - Stress tolerance
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Expression
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Sequence/Locus
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cDNA Accession No.
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Y07955
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MSU ID
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LOC_Os01g27490.1
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RAP ID
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Os01g0372500
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Links
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Oryzabase Chromosome View
(
IRGSP 1.0
/
Build5
)
RAP-DB
(
IRGSP 1.0
/
Build5
)
Related IDs List (
IRGSP 1.0
/
Build5
)
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INSD Accession List (Test version)
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-
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Map
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Locate(cM)
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Link map
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Classical linkage map
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References
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Zhu C., Yang X., Chen W., Xia X., Zhang Z., Qing D., Nong B., Li J., Liang S., Luo S., Zhou W., Yan Y., Dai G., Li D., Deng G.
Plant Physiol. 2024 197(1)
WD40 protein OsTTG1 promotes anthocyanin accumulation and CBF transcription factor-dependent pathways for rice cold tolerance.
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Li N., Xu Y., Lu Y.
Plants (Basel) 2024 13(8)
A Regulatory Mechanism on Pathways: Modulating Roles of MYC2 and BBX21 in the Flavonoid Network.
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Mackon E., Jeazet Dongho Epse Mackon GC., Yao Y., Guo Y., Ma Y., Dai X., Jandan T.H., Liu P.
Front Plant Sci 2023 14 1211326
Integrative HPLC profiling and transcriptome analysis revealed insights into anthocyanin accumulation and key genes at three developmental stages of black rice (<i>Oryza sativa</i>. L) caryopsis.
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Zou T., Wang X., Sun T., Rong H., Wu L., Deng J., Guo T., Wang H., Wang J., Huang M.
Int J Mol Sci 2023 24(7)
MYB Transcription Factor <i>OsC1PLSr</i> Involves the Regulation of Purple leaf sheath in Rice.
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Wang J., Zhang C., Li Y.
Genes (Basel) 2022 13(3)
Genome-Wide Identification and Expression Profiles of 13 Key Structural Gene Families Involved in the Biosynthesis of Rice Flavonoid Scaffolds.
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Gu S., Zhuang J., Zhang Z., Chen W., Xu H., Zhao M., Ma D.
Front Plant Sci 2022 13 1110724
Multi-omics approach reveals the contribution of <i>OsSEH1</i> to rice cold tolerance.
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Qiao W., Wang Y., Xu R., Yang Z., Sun Y., Su L., Zhang L., Wang J., Huang J., Zheng X., Liu S., Tian Y., Chen L., Liu X., Lan J., Yang Q.
Theor. Appl. Genet. 2021 134(5) 1531-1543
A functional chromogen gene C from wild rice is involved in a different anthocyanin biosynthesis pathway in indica and japonica.
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Mackon E., Ma Y., Jeazet Dongho Epse Mackon GC., Usman B., Zhao Y., Li Q., Liu P.
Genes (Basel) 2021 12(4)
Computational and Transcriptomic Analysis Unraveled <i>OsMATE34</i> as a Putative anthocyanin transporter in Black Rice (<i>Oryza sativa</i> L.) Caryopsis.
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Yang X., Wang J., Xia X., Zhang Z., He J., Nong B., Luo T., Feng R., Wu Y., Pan Y., Xiong F., Zeng Y., Chen C., Guo H., Xu Z., Li D., Deng G.
Plant J. 2021 107(1) 198-214
OsTTG1, a WD40 repeat gene, regulates anthocyanin biosynthesis in rice.
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Kim D.H., Yang J., Ha S.H., Kim J.K., Lee J.Y., Lim S.H.
Front Plant Sci 2021 12 765049
An OsKala3, R2R3 MYB TF, Is a Common Key Player for Black Rice Pericarp as Main Partner of an OsKala4, bHLH TF.
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Wang Y., Du F., Wang J., Li Y., Zhang Y., Zhao X., Zheng T., Li Z., Xu J., Wang W., Fu B.
Int J Mol Sci 2021 22(17)
Molecular Dissection of the Gene <i>OsGA2ox8</i> Conferring Osmotic Stress Tolerance in Rice.
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Dong N.Q., Sun Y., Guo T., Shi C.L., Zhang Y.M., Kan Y., Xiang Y.H., Zhang H., Yang Y.B., Li Y.C., Zhao H.Y., Yu H.X., Lu Z.Q., Wang Y., Ye W.W., Shan J.X., Lin H.X.
Nat Commun 2020 11(1) 2629
UDP-glucosyltransferase regulates grain size and abiotic stress tolerance associated with metabolic flux redirection in rice.
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Zheng J., Wu H., Zhu H., Huang C., Liu C., Chang Y., Kong Z., Zhou Z., Wang G., Lin Y., Chen H.
New Phytol. 2019 223(2) 705-721
Determining factors, regulation system, and domestication of anthocyanin biosynthesis in rice leaves.
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Chen X., Tao Y., Ali A., Zhuang Z., Guo D., Guo Q., Riaz A., Zhang H., Xu P., Liao Y., Wang J., Sun C., Xiang Q., Wu X.
Int J Mol Sci 2019 20(10)
Transcriptome and Proteome Profiling of Different Colored Rice Reveals Physiological Dynamics Involved in the Flavonoid Pathway.
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Oshima M., Taniguchi Y., Akasaka M., Abe K., Ichikawa H., Tabei Y., Tanaka J.
Breed. Sci. 2019 69(2) 244-254
Development of a visible marker trait based on leaf sheath-specific anthocyanin pigmentation applicable to various genotypes in rice.
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Zaidi S.H.R., Zakari S.A., Zhao Q., Khan A.R., Shah J.M., Cheng F.
Antioxidants (Basel) 2019 8(11)
Anthocyanin Accumulation in Black Kernel Mutant Rice and its Contribution to ROS Detoxification in Response to High Temperature at the Filling Stage.
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Oikawa T., Maeda H., Oguchi T., Yamaguchi T., Tanabe N., Ebana K., Yano M., Ebitani T., Izawa T.
Plant Cell 2015 27(9) 2401-14
The Birth of a Black Rice Gene and Its Local Spread by Introgression.
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Chen X., Itani T., Wu X., Chikawa Y., Irifune K.
Plant Signal Behav 2013 8(12) e27555
Physiological factors affecting transcription of genes involved in the flavonoid biosynthetic pathway in different rice varieties.
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Himi E., Maekawa M., Noda K.
Int J Plant Genomics 2011 2011 369460
Differential expression of three flavanone 3-hydroxylase genes in grains and coleoptiles of wheat.
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Hirose S, Kawahigashi H, Tagiri A, Ohkawa Y.
J. Agric. Food Chem. 2008 56(4) 1259-63.
Herbicide-induced anthocyanin accumulation in transgenic rice by expression of rice OSB2 under the control of rice CYP72A21 promoter.
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Shih CH, Chu H, Tang LK, Sakamoto W, Maekawa M, Chu IK, Wang M, Lo C.
Planta. 2008 228(6) 1043-54.
Functional characterization of key structural genes in rice flavonoid biosynthesis.
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Reddy,A.M., Reddy,V.S., Scheffler,B.E., Wienand,U. and Reddy,A.R.
Metab. Eng. 2007 9(1) 95-111
Novel transgenic rice overexpressing anthocyanidin synthase accumulates a mixture of flavonoids leading to an increased antioxidant potential
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DB Reference
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Gramene ID
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-
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Ontologies
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Gene Ontology
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iron ion binding( GO:0005506 )
vacuole organization( GO:0007033 )
response to wounding( GO:0009611 )
proanthocyanidin biosynthetic process( GO:0010023 )
oxidoreductase activity, acting on single donors with incorporation of molecular oxygen, incorporation of two atoms of oxygen( GO:0016702 )
oxidoreductase activity, acting on paired donors, with incorporation or reduction of molecular oxygen, 2-oxoglutarate as one donor, and incorporation of one atom each of oxygen into both donors( GO:0016706 )
leucocyanidin oxygenase activity( GO:0050589 )
response to light stimulus( GO:0009416 )
flavonoid biosynthetic process( GO:0009813 )
anthocyanin biosynthetic process( GO:0009718 )
response to heat( GO:0009408 )
seed development( GO:0048316 )
response to jasmonic acid stimulus( GO:0009753 )
response to cytokinin stimulus( GO:0009735 )
response to cold( GO:0009409 )
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Trait Ontology
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abiotic stress trait( TO:0000168 )
anthocyanin content( TO:0000071 )
flavonoid content( TO:0000290 )
pericarp color( TO:0000707 )
cytokinin sensitivity( TO:0000167 )
heat tolerance( TO:0000259 )
seed development trait( TO:0000653 )
light sensitivity( TO:0000075 )
cold tolerance( TO:0000303 )
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Plant Ontology
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seed development stage( PO:0001170 )
anther( PO:0009066 )
whole plant fruit ripening stage( PO:0007010 )
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Related Strains
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Phenotype images
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Last updated
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Mar 18, 2026
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