遺伝子 - 詳細

詳細 - 遺伝子

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Basic Information
CGSNL 遺伝子シンボル RSUS1
遺伝子シンボルシノニム sus1, RSus1(t), SUS1, SS2, OsScS2, RSs2, RSus1, SuSy1, OsSUS1, RSS2, RSus2, OsRSUS1
CGSNL 遺伝子名 SUCROSE SYNTHASE 1
遺伝子名シノニム イネシュークロース合成酵素1(t)
タンパク質名 SUCROSE SYNTHASE 1
対立遺伝子
染色体番号 3
解説 EC=2.4.1.13 P31924. X59046. D10418 (partial cds). D29733. HQ895719. BGIOSGA010570. TO:0000845: collective phyllome structure morphology trait. a candidate gene for qCo3.1(QTL for Co concentration).
形質クラス 生化学的性質
種子 - 形態学的な特色
耐性、抵抗性 - ストレス耐性
QTLの特性 - 収穫と生産性
発現
Sequence/Locus
cDNA Accession No. AK100334
MSU ID LOC_Os03g28330.1
LOC_Os03g28330.2
LOC_Os03g28330.3
LOC_Os03g28330.4
LOC_Os03g28330.5
RAP ID Os03g0401300
Links Oryzabase Chromosome View ( IRGSP 1.0 / Build5 )
RAP-DB ( IRGSP 1.0 / Build5 )
Related IDs List ( IRGSP 1.0 / Build5 )
INSD Accession List
(Test version)
Link to INSD Accession List
マップ
位置情報(cM)
リンケージマップ Classical linkage map
文献
Guo D., Chen L., Liu S., Jiang W., Ye Q., Wu Z., Wang X., Hu X., Zhang Z., He H., Hu L.
Plants (Basel) 2023  12(17) 
<i>Curling Leaf 1</i>, Encoding a MYB-Domain Protein, Regulates Leaf Morphology and Affects Plant Yield in Rice.
Li J., Zhao T., Chen L., Chen H., Luo D., Chen C., Miao Y., Liu D.
BMC Plant Biol. 2022  22(1)  368
Artemisia argyi allelopathy: a generalist compromises hormone balance, element absorption, and photosynthesis of receptor plants.
Chen Z., Wang Y., Huang R., Zhang Z., Huang J., Yu F., Lin Y., Guo Y., Liang K., Zhou Y., Chen F.
BMC Plant Biol. 2022  22(1)  137
Integration of transcriptomic and proteomic analyses reveals several levels of metabolic regulation in the excess starch and early senescent leaf mutant LSES1 in rice.
Cu S.T., Warnock N.I., Pasuquin J., Dingkuhn M., Stangoulis J.
Sci Rep 2021  11(1)  19230
A high-resolution genome-wide association study of the grain ionome and agronomic traits in rice Oryza sativa subsp. indica.
Tonosaki K., Ono A., Kunisada M., Nishino M., Nagata H., Sakamoto S., Kijima S.T., Furuumi H., Nonomura K.I., Sato Y., Ohme-Takagi M., Endo M., Comai L., Hatakeyama K., Kawakatsu T., Kinoshita T.
Plant Cell 2021  33(1)  85-103
Mutation of the imprinted gene OsEMF2a induces autonomous endosperm development and delayed cellularization in rice.
Zhang R., Hu H., Wang Y., Hu Z., Ren S., Li J., He B., Wang Y., Xia T., Chen P., Xie G., Peng L.
J. Exp. Bot. 2020   
A novel rice fragile culm 24 mutant encodes a UDP-glucose epimerase that affects cell wall property and photosynthesis.
Wang X., Bin-Bin Li, Tian-Tian Ma, Liang-Yu Sun, Tai L., Chun-Hong Hu, Wen-Ting Liu, Wen-Qiang Li, Kun-Ming Chen
BMC Plant Biol. 2020  20(1)  11
The NAD kinase osnadk1 affects the intracellular redox balance and enhances the tolerance of rice to drought.
Fan C., Wang G., Wang Y., Zhang R., Wang Y., Feng S., Luo K., Peng L.
Int J Mol Sci 2019  20(20) 
sucrose synthase Enhances Hull Size and grain weight by Regulating Cell Division and Starch Accumulation in Transgenic Rice.
Sera Y., Hanamata S., Sakamoto S., Ono S., Kaneko K., Mitsui Y., Koyano T., Fujita N., Sasou A., Masumura T., Saji H., Nonomura K.I., Mitsuda N., Mitsui T., Kurusu T., Kuchitsu K.
Sci Rep 2019  9(1)  18544
Essential roles of autophagy in metabolic regulation in endosperm development during rice seed maturation.
Wang M., Zhang T., Peng H., Luo S., Tan J., Jiang K., Heng Y., Zhang X., Guo X., Zheng J., Cheng Z.
Front Plant Sci 2018  9  560
Rice <i>Premature leaf senescence 2</i>, Encoding a Glycosyltransferase (GT), Is Involved in leaf senescence.
Su J., Hu C., Yan X., Jin Y., Chen Z., Guan Q., Wang Y., Zhong D., Jansson C., Wang F., Schnürer A., Sun C.
Nature 2015  523(7562)  602-6
Expression of barley SUSIBA2 transcription factor yields high-starch low-methane rice.
Guevara D.R., El-Kereamy A., Yaish M.W., Mei-Bi Y., Rothstein S.J.
PLoS ONE 2014  9(5)  e96158
Functional characterization of the rice UDP-glucose 4-epimerase 1, OsUGE1: a potential role in cell wall carbohydrate partitioning during limiting nitrogen conditions.
Chang J.C., Liao Y.C., Yang C.C., Wang A.Y.
Physiol Plant 2011  143(3)  219-34
The purine-rich DNA-binding protein OsPuralpha participates in the regulation of the rice sucrose synthase 1 gene expression.
Li C., Wang Y., Liu L., Hu Y., Zhang F., Mergen S., Wang G., Schläppi MR., Chu C.
PLoS Genet. 2011  7(7)  e1002196
A rice plastidial nucleotide sugar epimerase is involved in galactolipid biosynthesis and improves photosynthetic efficiency.
Cho J.I., Kim H.B., Kim C.Y., Hahn T.R., Jeon J.S.
Mol. Cells 2011  31(6)  553-61
Identification and characterization of the duplicate rice sucrose synthase genes OsSUS5 and OsSUS7 which are associated with the plasma membrane.
Takahashi S, Ishimaru K, Yazaki J, Fujii F, Shimbo K, Yamamoto K, Sakata K, Sasaki T, Kishimoto N, Kikuchi S.
Breeding Science 2005  55(2)  153-162
Microarray Analysis of Sink-Source Transition in Rice Leaf Sheaths
Asano T., Kunieda N., Omura Y., Ibe H., Kawasaki T., Takano M., Sato M., Furuhashi H., Mujin T., Takaiwa F., Chuan-yin Wu Cy, Tada Y., Satozawa T., Sakamoto M., Shimada H.
Plant Cell 2002  14(3)  619-28
Rice SPK, a calmodulin-like domain protein kinase, is required for storage product accumulation during seed development: phosphorylation of sucrose synthase is a possible factor.
Wang, A.Y., M.H. Kao, W.H. Yang, Y. Sayion, L.F. Liu, P.D. Lee and J.C. Su
Plant Cell Physiol. 1999  40  800-807.
Differentially and developmentally regulated expression of three rice sucrose synthase genes.
D Y Huang, A Y Wang
Biochem. Mol. Biol. Int. 1998  46(1)  107-13
Purification and characterization of sucrose synthase isozymes from etiolated rice seedlings.
Hihara,Y., Shoda,K., Liu,Q., Hara,C., Umeda,M., Toriyama,K. and Uchiyama,H.
Plant Biotechnol. 1997  14(1)  71-75
Expressed sequence tags in developing anthers of rice (Oryza sativa L.)
Huang,J.W., Chen,J.T., Yu,W.P., Shyur,L.F., Wang,A.Y., Sung,H.Y., Lee,P.D. and Su,J.C.
Biosci. Biotechnol. Biochem. 1996  60(2)  233-239
Complete structures of three rice sucrose synthase isogenes and differential regulation of their expressions.
Yu,W.P., Wang,A.Y., Juang,R.H., Sung,H.Y. and Su,J.C.
Plant Mol. Biol. 1992  18(1)  139-142
Isolation and sequences of rice sucrose synthase cDNA and genomic DNA.
Wang,A.Y., Yu,W.P., Juang,R.H., Huang,J.W., Sung,H.Y. and Su,J.C.
Plant Mol. Biol. 1992  18(6)  1191-1194
Presence of three rice sucrose synthase genes as revealed by cloning and sequencing of cDNA.
Uchimiya,H., Kidou,S., Shimazaki,T., Aotsuka,S., Takamatsu,S., Nishi,R., Hashimoto,H., Matsubayashi,Y., Kidou,N., Umeda,M. and Kato,A.
Plant J. 1992  2(6)  1005-1009
Random sequencing og cDNA librariesreveals a variety of expressed genes in cultured cells of rice (Oryza sativa L.)
TextPresso Search Search textpresso for RSUS1 ( Recent references may be retrievable, but without any warranty )
DB Reference
Gramene ID GR:0061130
オントロジー
Gene Ontology response to other organism( GO:0051707 )
response to carbon dioxide( GO:0010037 )
response to flooding( GO:0009413 )
sucrose synthase activity( GO:0016157 )
sucrose metabolic process( GO:0005985 )
biosynthetic process( GO:0009058 )
response to cadmium ion( GO:0046686 )
plasma membrane( GO:0005886 )
response to osmotic stress( GO:0006970 )
vacuole( GO:0005773 )
response to cold( GO:0009409 )
positive regulation of cell division( GO:0051781 )
Trait Ontology grain yield( TO:0000396 )
grain weight( TO:0000590 )
starch content( TO:0000696 )
grain yield per plant( TO:0000449 )
1000-dehulled grain weight( TO:0000592 )
Plant Ontology -
関連系統
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形質画像
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更新日
2023-12-14 11:38:11.516


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