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Basic Information
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CGSNL Gene Symbol
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SOD4
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Gene Symbol Synonym
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OsSOD4, OsCSD4, OsCu/Zn-SOD1, Cu/Zn-SOD1, OsCSD2, CSD2, OsSOD4-Cu/Zn, SOD4-Cu/Zn, Cu/ZnSOD3, CuZnSOD3, sodCp, OssodCp, OsCu/ZnSOD3, CuZnSOD2, OsSOD1
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CGSNL Gene Name
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SUPEROXIDE DISMUTASE 4
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Gene Name Synonym
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superoxide dismutase 4, Cu-dependent SOD 2
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Protein Name
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SUPEROXIDE DISMUTASE 4
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Allele
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Chromosome No.
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8
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Explanation
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P93407. D85239. AB026724. OsCu/Zn-SOD. OsCSD2 in Andres-Borderia et al. 2017, Navarro et al. 2021. Cu/ZnSOD3 in Huang et al. 2018, Song et al. 2021. OsSOD1 in Lou et al. 20230. GO:0120126: response to copper ion starvation.
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Trait Class
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Biochemical character
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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AK059841
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MSU ID
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LOC_Os08g44770.1
LOC_Os08g44770.2
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RAP ID
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Os08g0561700
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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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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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Feng Z., Xu Y., Xie Z., Yang Y., Lu G., Jin Y., Wang M., Liu M., Yang H., Li W., Liang Z.
Plants (Basel) 2024 13(12)
Overexpression of Abscisic Acid Biosynthesis Gene <i>OsNCED3</i> Enhances Survival Rate and Tolerance to Alkaline Stress in Rice Seedlings.
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Ubaidillah M., Farooq M., Kim K.M.
Sci Rep 2024 14(1) 25217
Enhancing salt tolerance in rice genotypes through exogenous melatonin application by modulating growth patterns and antistress agents.
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Lou D., Lu S., Chen Z., Lin Y., Yu D., Yang X.
BMC Plant Biol. 2023 23(1) 53
Molecular characterization reveals that OsSAPK3 improves drought tolerance and grain yield in rice.
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Zhu F., Wang K., Li D., Liu Z., Li M., Wang Z., Li X., Lan X., Guan Q.
Rice (N Y) 2022 15(1) 69
OsSAP6 Positively Regulates Soda Saline-Alkaline Stress Tolerance in Rice.
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Song Y., Jiang M., Zhang H., Li R.
Molecules 2021 26(8)
Zinc Oxide Nanoparticles Alleviate Chilling Stress in Rice (<i>Oryza Sativa</i> L.) by Regulating Antioxidative System and Chilling Response Transcription Factors.
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Navarro B.B., Del Frari BK., Dias PVDC., Lemainski L.E., Mario R.B., Ponte L.R., Goergen A., Tarouco C.P., Neves V.M., Dressler V.L., Fett J.P., Brunetto G., Sperotto R.A., Nicoloso F.T., Ricachenevsky F.K.
Plant Physiol. Biochem. 2021 158 113-124
The copper economy response is partially conserved in rice (Oryza sativa L.).
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Geun-Hee Choi, Back K.
Biomolecules 2019 9(10)
Suppression of Melatonin 2-Hydroxylase Increases Melatonin Production Leading to the Enhanced Abiotic Stress Tolerance against Cadmium, Senescence, Salt, and Tunicamycin in Rice Plants.
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Huang B., Zhang J.M., Chen X.L., Xin X., Yin G.K., He J.J., Lu X.X., Zhou Y.C.
Plant Cell Rep. 2018
Oxidative damage and antioxidative indicators in 48 h germinated rice embryos during the vitrification-cryopreservation procedure.
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Lou D., Wang H., Liang G., Yu D.
Front Plant Sci 2017 8 993
OsSAPK2 Confers Abscisic Acid Sensitivity and Tolerance to Drought Stress in Rice.
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Rossatto T., do Amaral MN., Benitez L.C., Vighi I.L., Braga E.J.B., de Magalhães Júnior AM., Maia M.A.C., da Silva Pinto L.
Physiol Mol Biol Plants 2017 23(4) 865-875
Gene expression and activity of antioxidant enzymes in rice plants, cv. BRS AG, under saline stress.
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Andrés-Bordería A., Andrés F., Garcia-Molina A., Perea-García A., Domingo C., Puig S., Peñarrubia L.
Plant Mol. Biol. 2017
Copper and ectopic expression of the Arabidopsis transport protein COPT1 alter iron homeostasis in rice (Oryza sativa L.).
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Guan Q.J., Ma H.Y., Wang Z.J., Wang Z.Y., Bu Q.Y., Liu S.K.
BMC Genomics 2016 17(1) 142
A rice LSD1-like-type ZFP gene OsLOL5 enhances saline-alkaline tolerance in transgenic Arabidopsis thaliana, yeast and rice.
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Li C.R., Liang D.D., Li J., Duan Y.B., Li H., Yang Y.C., Qin R.Y., Li L., Wei P.C., Yang J.B.
Plant Cell Environ. 2013 36(4) 775-88
Unravelling mitochondrial retrograde regulation in the abiotic stress induction of rice ALTERNATIVE OXIDASE 1 genes.
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Mahanty S., Kaul T., Pandey P., Reddy R.A., Mallikarjuna G., Reddy C.S., Sopory S.K., Reddy M.K.
Gene 2012 505(2) 309-17
Biochemical and molecular analyses of copper-zinc superoxide dismutase from a C(4) plant Pennisetum glaucum reveals an adaptive role in response to oxidative stress.
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Kaminaka,H., Morita,S., Yokoi,H., Masumura,T. and Tanaka,K.
Plant Cell Physiol. 1997 38(1) 65-69
Molecular cloning and characterization of a cDNA for plastidic copper/zinc-superoxide dismutase in rice (Oryza sativa L.).
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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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superoxide dismutase activity( GO:0004784 )
copper ion binding( GO:0005507 )
zinc ion binding( GO:0008270 )
response to light stimulus( GO:0009416 )
chloroplast stroma( GO:0009570 )
thylakoid( GO:0009579 )
response to iron ion( GO:0010039 )
removal of superoxide radicals( GO:0019430 )
response to copper ion( GO:0046688 )
apoplast( GO:0048046 )
response to salt stress( GO:0009651 )
response to oxidative stress( GO:0006979 )
response to cold( GO:0009409 )
response to alkalinity( GO:0010446 )
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Trait Ontology
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salt tolerance( TO:0006001 )
cold tolerance( TO:0000303 )
oxidative stress( TO:0002657 )
alkali sensitivity( TO:0000481 )
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Plant Ontology
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leaf( PO:0025034 )
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Related Strains
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Phenotype images
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Last updated
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Dec 19, 2024
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