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Basic Information
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CGSNL Gene Symbol
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TIFY10C
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Gene Symbol Synonym
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OsJAZ7, JAZ7, OsJAZ 8, OsJAZ8, Os-JAZ8, JAZ8, OsTIFY10c, OsTIFY10c/OsJAZ8
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CGSNL Gene Name
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TIFY GENE 10C
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Gene Name Synonym
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Jasmonate ZIM-domain protein 7, Jasmonate ZIM-domain protein 8.
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Protein Name
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TIFY-DOMAIN PROTEIN 10C
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Allele
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Chromosome No.
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9
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Explanation
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Q69P94. The result of the pull-down assay showed that JA-Ile bound to OsCOI1b-OsJAZ3/4/6/7 co-receptor pairs and to most combinations of OsCOI2-OsJAZs (OsCOI2-OsJAZ1-13/15) (Okumura et al. 2023). OsJAZ8 in Ye et al. (2009), Toda et al. 2013, Yamada et al. (2012) , Svyatyna et al. (2013), Taniguchi et al. (2013), Singh et al. 2015, Uji et al. 2016 & 2017, Wang et al. 2019, Kashihara et al. 2019, He et al. 2020, Yu et al. 2020, Kachewar et al. 2019, Li et al. 2021, Gao et al. 2022, Tan et al. 2022, Lv et al. 2022, Sun et al. 2022, Mehra et al. 2022, Ma et al. 2022, Taniguchi et al. 2023, Li et al. 2023, Wang et al. 2023, He et al. 2023, Liu et al. 2023, Cui et al. 2023, Gandham et al. 2025. OsJAZ7 in Seo et al. (2011) and Lee et al. (2013), Wang et al. 2021, Okumura et al. 2023. GO:1900056: negative regulation of leaf senescence. GO:2000022: regulation of jasmonic acid mediated signaling pathway. GO:0120127: response to zinc ion starvation.
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Trait Class
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Tolerance and resistance - Disease resistance
Tolerance and resistance - Stress tolerance
Vegetative organ - Leaf
Reproductive organ - Heading date
Reproductive organ - panicle
Reproductive organ - Spikelet, flower, glume, awn
Seed - Morphological traits
Character as QTL - Yield and productivity
Vegetative organ - Culm
Vegetative organ - Root
Tolerance and resistance - Insect resistance
Character as QTL - Germination
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Expression
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Sequence/Locus
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cDNA Accession No.
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AK108738
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MSU ID
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LOC_Os09g26780.1
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RAP ID
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Os09g0439200
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Links
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Oryzabase Chromosome View
(
IRGSP 1.0
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Build5
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RAP-DB
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IRGSP 1.0
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Build5
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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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Gandham K., Thomas J., Riaz A., Balakrishnan D., Pereira A., Kariyat R.
Plant Cell Physiol. 2025 66(5) 687-704
Rice master regulator 'HYR' enhances growth and defense mechanisms with consequences for fall armyworm growth and host selection.
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Wang L., Xu G., Li L., Ruan M., Bennion A., Wang G.L., Li R., Qu S.
Proc. Natl. Acad. Sci. U.S.A. 2023 120(13) e2211102120
The OsBDR1-MPK3 module negatively regulates blast resistance by suppressing the jasmonate signaling and terpenoid biosynthesis pathway.
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Cui J., Nishide N., Mashiguchi K., Kuroha K., Miya M., Sugimoto K., Itoh J.I., Yamaguchi S., Izawa T.
Nat Commun 2023 14(1) 3191
Fertilization controls tiller numbers via transcriptional regulation of a MAX1-like gene in rice cultivation.
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Liu J., Nie B., Yu B., Xu F., Zhang Q., Wang Y., Xu W.
Plant Biotechnol. J. 2023 21(8) 1590-1610
Rice ubiquitin-conjugating enzyme OsUbc13 negatively regulates immunity against pathogens by enhancing the activity of OsSnRK1a.
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He Y., Sun S., Zhao J., Huang Z., Peng L., Huang C., Tang Z., Huang Q., Wang Z.
Nat Commun 2023 14(1) 2296
UDP-glucosyltransferase OsUGT75A promotes submergence tolerance during rice seed germination.
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Li H., Xu L., Wu W., Peng W., Lou Y., Lu J.
Biology (Basel) 2023 12(6)
Infestation by the Piercing-Sucking Herbivore <i>Nilaparvata lugens</i> Systemically Triggers JA- and SA-Dependent Defense Responses in Rice.
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Okumura T., Kitajima T., Kaji T., Urano H., Matsumoto K., Inagaki H., Miyamoto K., Okada K., Ueda M.
Biosci. Biotechnol. Biochem. 2023 87(10) 1122-1128
Difference in the ligand affinity among redundant plant hormone receptors of rice OsCOI1a/1b/2-OsJAZs.
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Taniguchi S., Takeda A., Kiryu M., Gomi K.
Int J Mol Sci 2023 24(2)
Jasmonic Acid-Induced β-Cyclocitral Confers Resistance to Bacterial Blight and Negatively Affects Abscisic Acid Biosynthesis in Rice.
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Sun B., Shang L., Li Y., Zhang Q., Chu Z., He S., Yang W., Ding X.
Int J Mol Sci 2022 23(9)
Ectopic Expression of OsJAZs Alters Plant Defense and Development.
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Gao Y., Xiang X., Zhang Y., Cao Y., Wang B., Zhang Y., Wang C., Jiang M., Duan W., Chen D., Zhan X., Cheng S., Liu Q., Cao L.
Int J Mol Sci 2022 23(2)
Disruption of <i>OsPHD1</i>, Encoding a UDP-glucose epimerase, Causes JA Accumulation and Enhanced Bacterial Blight Resistance in Rice.
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Ma J., Morel J.B., Riemann M., Nick P.
BMC Plant Biol. 2022 22(1) 601
Jasmonic acid contributes to rice resistance against Magnaporthe oryzae.
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Lv Y., Ma J., Wei H., Xiao F., Wang Y., Jahan N., Hazman M., Qian Q., Shang L., Guo L.
Front Plant Sci 2022 13 912637
Combining GWAS, Genome-Wide Domestication and a Transcriptomic Analysis Reveals the Loci and Natural Alleles of salt tolerance in Rice (<i>Oryza sativa</i> L.).
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Tan X., Zhang H., Yang Z., Wei Z., Li Y., Chen J., Sun Z.
PLoS Pathog. 2022 18(5) e1010548
NF-YA transcription factors suppress jasmonic acid-mediated antiviral defense and facilitate viral infection in rice.
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Mehra P., Pandey B.K., Verma L., Prusty A., Singh A.P., Sharma S., Malik N., Bennett M.J., Parida S.K., Giri J., Tyagi A.K.
Plant Direct 2022 6(5) e401
<i>OsJAZ11</i> regulates spikelet and seed development in rice.
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Li L., Zhang H., Chen C., Huang H., Tan X., Wei Z., Li J., Yan F., Zhang C., Chen J., Sun Z.
Proc. Natl. Acad. Sci. U.S.A. 2021 118(11)
A class of independently evolved transcriptional repressors in plant RNA viruses facilitates viral infection and vector feeding.
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Wang L., Cao S., Wang P., Lu K., Song Q., Zhao F.J., Chen Z.J.
Proc. Natl. Acad. Sci. U.S.A. 2021 118(13)
DNA hypomethylation in tetraploid rice potentiates stress-responsive gene expression for salt tolerance.
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Pandey B.K., Verma L., Prusty A., Singh A.P., Bennett M.J., Tyagi A.K., Giri J., Mehra P.
Planta 2021 254(1) 8
OsJAZ11 regulates phosphate starvation responses in rice.
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Yu Y., Zhou Y.F., Feng Y.Z., He H., Lian J.P., Yang Y.W., Lei M.Q., Zhang Y.C., Chen Y.Q.
Plant Biotechnol. J. 2020 18(3) 679-690
Transcriptional landscape of pathogen-responsive lncRNAs in rice unveils the role of ALEX1 in jasmonate pathway and disease resistance.
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He L., Chen X., Yang J., Zhang T., Li J., Zhang S., Zhong K., Zhang H., Chen J., Yang J.
New Phytol. 2020 225(2) 896-912
Rice black-streaked dwarf virus-encoded P5-1 regulates the ubiquitination activity of SCF E3 ligases and inhibits jasmonate signaling to benefit its infection in rice.
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Ke Y., Yuan M., Liu H., Hui S., Qin X., Chen J., Zhang Q., Li X., Xiao J., Zhang Q., Wang S.
Proc. Natl. Acad. Sci. U.S.A. 2020 117(7) 3867-3873
The versatile functions of OsALDH2B1 provide a genic basis for growth-defense trade-offs in rice.
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Kachewar N.R., Gupta V., Ranjan A., Patel H.K., Sonti R.V.
BMC Plant Biol. 2019 19(1) 530
Overexpression of OsPUB41, a rice E3 ubiquitin ligase induced by cell wall degrading enzymes, enhances immune responses in Rice and Arabidopsis.
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Kashihara K., Onohata T., Okamoto Y., Uji Y., Mochizuki S., Akimitsu K., Gomi K.
J. Plant Physiol. 2019 232 180-187
Overexpression of OsNINJA1 negatively affects a part of OsMYC2-mediated abiotic and biotic responses in rice.
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Wang J., Zhang Q., Wang Y., Huang J., Luo N., Wei S., Jin J.
Rice (N Y) 2019 12(1) 6
Analysing the rice young panicle transcriptome reveals the gene regulatory network controlled by TRIANGULAR HULL1.
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Ke Y., Kang Y., Wu M., Liu H., Hui S., Zhang Q., Li X., Xiao J., Wang S.
Rice (N Y) 2019 12(1) 25
Jasmonic Acid-Involved OsEDS1 Signaling in Rice-Bacteria Interactions.
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Uji Y., Akimitsu K., Gomi K.
Planta 2017
Identification of OsMYC2-regulated senescence-associated genes in rice.
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Ogawa S., Kawahara-Miki R., Miyamoto K., Yamane H., Nojiri H., Tsujii Y., Okada K.
Biochem. Biophys. Res. Commun. 2017 486(3) 796-803
OsMYC2 mediates numerous defence-related transcriptional changes via jasmonic acid signalling in rice.
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Hakata M., Muramatsu M., Nakamura H., Hara N., Kishimoto M., Iida-Okada K., Kajikawa M., Imai-Toki N., Toki S., Nagamura Y., Yamakawa H., Ichikawa H.
Biosci. Biotechnol. Biochem. 2017 81(5) 906-913
Overexpression of TIFY genes promotes plant growth in rice through jasmonate signaling.
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Uji Y., Taniguchi S., Tamaoki D., Shishido H., Akimitsu K., Gomi K.
Plant Cell Physiol. 2016
Overexpression of OsMYC2 Results in the Up-Regulation of Early JA-Rresponsive Genes and Bacterial Blight Resistance in Rice.
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Ueda Y., Siddique S., Frei M.
Plant Physiol. 2015
A novel gene OsORAP1 enhances cell death in ozone stress in rice (Oryza sativa L.).
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Singh A.P., Pandey B.K., Deveshwar P., Narnoliya L., Parida S.K., Giri J.
Front Plant Sci 2015 6 975
JAZ Repressors: Potential Involvement in Nutrients Deficiency Response in Rice and Chickpea.
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Svyatyna K., Jikumaru Y., Brendel R., Reichelt M., Mithöfer A., Takano M., Kamiya Y., Nick P., Riemann M.
Plant Cell Environ. 2014 37(4) 827-39
Light induces jasmonate-isoleucine conjugation via OsJAR1-dependent and -independent pathways in rice.
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Lee H.Y., Seo J.S., Cho J.H., Jung H., Kim J.K., Lee J.S., Rhee S., Do Choi Y.
PLoS ONE 2013 8(1) e52802
Oryza sativa COI homologues restore jasmonate signal transduction in Arabidopsis COI1-1 mutants.
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Taniguchi S., Hosokawa-Shinonaga Y., Tamaoki D., Yamada S., Akimitsu K., Gomi K.
Plant Cell Environ. 2013 37(2) 451-61
Jasmonate induction of the monoterpene linalool confers resistance to rice bacterial blight and its biosynthesis is regulated by JAZ protein in rice.
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Toda,Y., Tanaka,M., Ogawa,D., Kurata,K., Kurotani,K., Habu,Y., Ando,T., Sugimoto,K., Mitsuda,N., Katoh,E., Abe,K., Miyao,A., Hirochika,H., Hattori,T. and Takeda,S.
Plant Cell 2013 25(5) 1709-1725
RICE SALT SENSITIVE3 Forms a Ternary Complex with JAZ and Class-C bHLH Factors and Regulates Jasmonate-Induced Gene Expression and Root Cell Elongation
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Yamada S., Kano A., Tamaoki D., Miyamoto A., Shishido H., Miyoshi S., Taniguchi S., Akimitsu K., Gomi K.
Plant Cell Physiol. 2012 53(12) 2060-72
Involvement of OsJAZ8 in jasmonate-induced resistance to bacterial blight in rice.
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Seo J.S. , Joo J. , Kim M.J. , Kim Y.K. , Nahm B.H. , Song S.I. , Cheong J.J. , Lee J.S. , Kim J.K. , Choi Y.D.
Plant J. 2011 65(6) 907-21
OsbHLH148, a basic helix-loop-helix protein, interacts with OsJAZ proteins in a jasmonate signaling pathway leading to drought tolerance in rice.
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Ye H,Du H,Tang N,Li X,Xiong L
Plant Mol. Biol. 2009 71(3) 291-305
Identification and expression profiling analysis of TIFY family genes involved in stress and phytohormone responses in rice.
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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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jasmonic acid mediated signaling pathway( GO:0009867 )
leaf senescence( GO:0010150 )
response to wounding( GO:0009611 )
cytosol( GO:0005829 )
nucleus( GO:0005634 )
regulation of defense response( GO:0031347 )
defense response( GO:0006952 )
response to jasmonic acid stimulus( GO:0009753 )
defense response to virus( GO:0051607 )
defense response to bacterium( GO:0042742 )
photoperiodism, flowering( GO:0048573 )
response to salt stress( GO:0009651 )
defense response to fungus( GO:0050832 )
apocarotenoid biosynthetic process( GO:0043289 )
defense response to insect( GO:0002213 )
response to flooding( GO:0009413 )
cellular response to zinc ion starvation( GO:0034224 )
cellular response to potassium ion starvation( GO:0051365 )
cellular response to phosphate starvation( GO:0016036 )
response to starvation( GO:0042594 )
cellular response to nitrogen starvation( GO:0006995 )
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Trait Ontology
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jasmonic acid sensitivity( TO:0000172 )
leaf senescence( TO:0000249 )
chlorophyll content( TO:0000495 )
grain weight( TO:0000590 )
flower number( TO:0002736 )
days to heading( TO:0000137 )
spikelet fertility( TO:0000180 )
plant height( TO:0000207 )
panicle length( TO:0000040 )
flag leaf length( TO:0002757 )
grain number( TO:0002759 )
viral disease resistance( TO:0000148 )
salt tolerance( TO:0006001 )
flowering time( TO:0002616 )
root length( TO:0000227 )
bacterial disease resistance( TO:0000315 )
blast disease( TO:0000074 )
brown planthopper resistance( TO:0000424 )
submergence tolerance( TO:0000524 )
nitrogen sensitivity( TO:0000011 )
phosphorus sensitivity( TO:0000102 )
potassium sensitivity( TO:0000008 )
zinc sensitivity( TO:0000351 )
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Plant Ontology
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4 leaf senescence stage( PO:0001054 )
0 seed germination stage( PO:0007057 )
shoot system( PO:0009006 )
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Related Strains
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Phenotype images
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Last updated
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Oct 21, 2025
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