Gene - Detail

Detail of Gene

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Basic Information
CGSNL Gene Symbol WRKY70
Gene Symbol Synonym OsWRKY70
CGSNL Gene Name WRKY GENE 70
Gene Name Synonym Rice WRKY gene70
Protein Name TRANSCRIPTION FACTOR WRKY70
Allele
Chromosome No. 5
Explanation BK005073, DQ298184. WRKY60 in Zhang and Wang (2005) and in Berri et al. (2009). WRKY52 in Wu et al. (2005) and Sun et al. 2014. OsWRKY24 in Islam et al. 2023. PO:0030123: panicle inflorescence.
Trait Class Tolerance and resistance - Disease resistance
Tolerance and resistance - Insect resistance
Tolerance and resistance - Stress tolerance
Character as QTL - Germination
Expression
Sequence/Locus
cDNA Accession No. AK119867
MSU ID LOC_Os05g39720.1
RAP ID Os05g0474800
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
Map
Locate(cM)
Link map Classical linkage map
References
Naithani S., Mohanty B., Elser J., D'Eustachio P., Jaiswal P.
Plants (Basel) 2023  12(11) 
Biocuration of a Transcription Factors Network Involved in Submergence Tolerance during Seed Germination and Coleoptile Elongation in Rice (<i>Oryza sativa</i>).
Li J., Chen Y., Zhang R., Wu B., Xiao G.
Plant Signal Behav 2023  18(1)  2292844
Expression identification of three <i>OsWRKY</i> genes in response to abiotic stress and hormone treatments in rice.
Purwestri Y.A., Nurbaiti S., Putri S.P.M., Wahyuni I.M., Yulyani S.R., Sebastian A., Nuringtyas T.R., Yamaguchi N.
Plants (Basel) 2023  12(15) 
Seed Halopriming: A Promising Strategy to Induce salt tolerance in Indonesian Pigmented Rice.
Bu Z., Li W., Liu X., Liu Y., Gao Y., Pei G., Zhuo R., Cui K., Qin Z., Zheng H., Wu J., Yang Y., Su P., Cao M., Xiong X., Liu X., Zhu Y.
Microbiol Spectr 2023  11(3)  e0482422
The Rice Endophyte-Derived &#x3b1;-Mannosidase ShAM1 Degrades Host Cell Walls To Activate DAMP-Triggered Immunity against Disease.
Islam F., Khan M.S.S., Ahmed S., Abdullah M., Hannan F., Chen J.
Free Radic. Biol. Med. 2023  199  2-16
OsLPXC negatively regulates tolerance to cold stress via modulating oxidative stress, antioxidant defense and JA accumulation in rice.
Yang X., Gu X., Ding J., Yao L., Gao X., Zhang M., Meng Q., Wei S., Fu J.
BMC Genomics 2022  23(1)  278
Gene expression analysis of resistant and susceptible rice cultivars to sheath blight after inoculation with Rhizoctonia solani.
Ye M., Kuai P., Chen S., Lin N., Ye M., Hu L., Lou Y.
Int J Mol Sci 2021  22(22) 
Silencing a Simple extracellular leucine-rich repeat Gene <i>OsI-BAK1</i> Enhances the Resistance of Rice to Brown Planthopper <i>Nilaparvata lugens</i>.
Fang G., Yang S., Ruan B., Liu C., Zhang A., Jiang H., Ding S., Tian B., Zhang Y., Jahan N., Zhu L., Zhang G., Dong G., Zhang Q., Zeng D., Guo L., Gao Z., Qian Q.
Rice (N Y) 2020  13(1)  49
Isolation of TSCD11 Gene for Early Chloroplast Development under High Temperature in Rice.
Shi Y., Chang Y.L., Wu H.T., Shalmani A., Liu W.T., Li W.Q., Xu J.W., Chen K.M.
Plant Cell Rep. 2020  39(12)  1767-1784
OsRbohB-mediated ROS production plays a crucial role in drought stress tolerance of rice.
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.
Gong P., Luo Y., Huang F., Chen Y., Zhao C., Wu X., Li K., Yang X., Cheng F., Xiang X., Wu C., Pan G.
Plant Mol. Biol. 2019  100(1-2)  133-149
Disruption of a Upf1-like helicase-encoding gene OsPLS2 triggers light-dependent premature leaf senescence in rice.
Ye M., Glauser G., Lou Y., Erb M., Hu L.
Plant Cell 2019  31(3)  687-698
Molecular Dissection of Early Defense Signaling Underlying Volatile-Mediated Defense Regulation and Herbivore Resistance in Rice.
Chen J., Hu L., Sun L., Lin B., Huang K., Zhuo K., Liao J.
Mol. Plant Pathol. 2018   
A novel Meloidogyne graminicola effector, MgMO237, interacts with multiple host defence-related proteins to manipulate plant basal immunity and promote parasitism.
Hu L., Ye M., Kuai P., Ye M., Erb M., Lou Y.
New Phytol. 2018  219(3)  1097-1111
OsLRR-RLK1, an early responsive leucine-rich repeat receptor-like kinase, initiates rice defense responses against a chewing herbivore.
Wang A., Shu X., Niu X., Zhao W., Ai P., Li P., Zheng A.
PLoS ONE 2018  13(10)  e0202309
Comparison of gene co-networks analysis provide a systems view of rice (Oryza sativa L.) response to Tilletia horrida infection.
Choi N.Y., Lee E., Lee S.G., Choi C.H., Park S.R., Ahn I., Bae S.C., Hwang C.H., Hwang D.J.
Front Plant Sci 2017  8  1628
Genome-Wide Expression Profiling of OsWRKY Superfamily Genes during Infection with Xanthomonas oryzae pv. oryzae Using Real-Time PCR.
Katsuragi Y., Takai R., Furukawa T., Hirai H., Morimoto T., Katayama T., Murakami T., Che F.S.
Mol. Plant Microbe Interact. 2015   
CD2-1, the C-terminal region of flagellin, modulates the induction of immune responses in rice.
Sun L.J.a, Huang L.b, Li D.Y.b, Zhang H.J.b, Song F.M.b
Zhiwu Shengli Xuebao/Plant Physiology Journal 2014  50  1651-1658
Comprehensive expression analysis suggests overlapping of rice OsWRKY transcription factor genes during abiotic stress responses
Ye M., Song Y., Long J., Wang R., Baerson S.R., Pan Z., Zhu-Salzman K., Xie J., Cai K., Luo S., Zeng R.
Proc. Natl. Acad. Sci. U.S.A. 2013  110(38)  E3631-9
Priming of jasmonate-mediated antiherbivore defense responses in rice by silicon.
Rice WRKY Working Group
Rice (N Y) 2012  5  3
Nomenclature report on rice WRKYs. -Conflict regarding gene names and its solution
Berri S,Abbruscato P,Faivre-Rampant O,Brasileiro AC,Fumasoni I,Satoh K,Kikuchi S,Mizzi L,Morandini P,Pe ME,Piffanelli P
BMC Plant Biol 2009  9  120
Characterization of WRKY co-regulatory networks in rice and Arabidopsis.
Takai R., Kaneda T., Isogai A., Takayama S., Fang-Sik Che
Biosci. Biotechnol. Biochem. 2007  71(2)  590-3
A new method of defense response analysis using a transient expression system in rice protoplasts.
Christian A. Ross Yue Liu Qingxi J. Shen
Journal of integrative plant biology 2007  49(6)  827-842
The WRKY Gene Family in Rice (Oryza sativa)
Ryu,H.S., Han,M., Lee,S.K., Cho,J.I., Ryoo,N., Heu,S., Lee,Y.H., Bhoo,S.H., Wang,G.L., Hahn,T.R. and Jeon,J.S.
Plant Cell Rep. 2006  25(8)  836-847
A comprehensive expression analysis of the WRKY gene superfamily in rice plants during defense response.
Xie Z, Zhang ZL, Zou X, Huang J, Ruas P, Thompson D, Shen QJ.
Plant Physiol. 2005  137 (1)  176-189
Annotations and Functional Analyses of the Rice WRKY Gene Superfamily Reveal Positive and Negative Regulators of Abscisic Acid Signaling in Aleurone Cells
Kun-Lu Wu, Ze-Jian Guo, Hai-Hua Wang, Li J.
DNA research : an international journal for rapid publication of reports on genes and genomes 2005  12(1)  9-26
The WRKY family of transcription factors in rice and Arabidopsis and their origins.
Zhang Y., Wang L.
BMC evolutionary biology 2005  5  1
The WRKY transcription factor superfamily: its origin in eukaryotes and expansion in plants.
Zhang,Z.L., Xie,Z., Zou,X., Casaretto,J., Ho,T.H. and Shen,Q.J.
Plant Physiol. 2004  134 (4)  1500-1513
A Rice WRKY Gene Encodes a Transcriptional Repressor of the Gibberellin Signaling Pathway in Aleurone Cells
Qiu,Y., Jing,S., Fu,J., Li,L. and Yu,D.
Chin. Sci. Bull. 2004  49  2159-2168
Cloning and analysis of expression profile of 13 WRKY genes in rice
TextPresso Search Search textpresso for WRKY70 ( Recent references may be retrievable, but without any warranty )
DB Reference
Gramene ID -
Ontologies
Gene Ontology nucleus( GO:0005634 )
response to gibberellin stimulus( GO:0009739 )
response to jasmonic acid stimulus( GO:0009753 )
response to salicylic acid stimulus( GO:0009751 )
response to cold( GO:0009409 )
response to absence of light( GO:0009646 )
seed germination( GO:0009845 )
response to gravity( GO:0009629 )
response to flooding( GO:0009413 )
pattern recognition receptor signaling pathway( GO:0002221 )
sequence-specific DNA binding( GO:0043565 )
transcription factor activity( GO:0003700 )
defense response( GO:0006952 )
response to water deprivation( GO:0009414 )
response to salt stress( GO:0009651 )
defense response to bacterium( GO:0042742 )
response to molecule of bacterial origin( GO:0002237 )
defense response to insect( GO:0002213 )
response to herbivore( GO:0080027 )
defense response to fungus( GO:0050832 )
jasmonic acid mediated signaling pathway( GO:0009867 )
Trait Ontology bacterial disease resistance( TO:0000315 )
insect damage resistance( TO:0000261 )
drought tolerance( TO:0000276 )
salt tolerance( TO:0006001 )
bacterial blight disease resistance( TO:0000175 )
stem borer resistance( TO:0000454 )
armyworm resistance( TO:0000273 )
jasmonic acid content( TO:0002668 )
brown planthopper resistance( TO:0000424 )
sheath blight disease resistance( TO:0000255 )
submergence tolerance( TO:0000524 )
gravity response trait( TO:0002693 )
light intensity sensitivity( TO:0000460 )
cold tolerance( TO:0000303 )
jasmonic acid sensitivity( TO:0000172 )
abscisic acid sensitivity( TO:0000615 )
gibberellic acid sensitivity( TO:0000166 )
Plant Ontology 0 seed germination stage( PO:0007057 )
coleoptile emergence stage( PO:0007045 )
root( PO:0009005 )
leaf sheath( PO:0020104 )
inflorescence( PO:0009049 )
Related Strains
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Phenotype images
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Last updated
May 29, 2024


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