Gene - Detail

Detail of Gene

Basic Information
CGSNL Gene Symbol GF14A
Gene Symbol Synonym GF14a, OsGF14a, WIN2, OsWIN2, 14-3-3a
CGSNL Gene Name G-BOX FACTOR 14-3-3A PROTEIN
Gene Name Synonym G-box factor 14-3-3a protein, wound-inducible WIN2
Protein Name G-BOX FACTOR 14-3-3A PROTEIN
Allele Osgf14a, Osgf14a-1, Osgf14a-2
Chromosome No. 8
Explanation Q84J55. AAO72553. AY224524. TO:0020102: phosphate content. GO:2000280: regulation of root development. GO:0072732: cellular response to calcium ion starvation.
Trait Class Vegetative organ - Root
Reproductive organ - Heading date
Tolerance and resistance - Stress tolerance
Expression
Sequence/Locus
cDNA Accession No. AK101599
MSU ID LOC_Os08g37490.1
RAP ID Os08g0480800
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)
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Map
Locate(cM)
Link map Classical linkage map
References
Kuang H., Yan M., Chen S., Deng T., Chen W., Xie M., Wang Z., Zhu Y., Lin H., Yang J.
Rice (N Y) 2025  18(1)  84
Genetic Dissection of Rice Plant-Specific Non-ε Group 14-3-3 Proteins in Response to Phosphate Starvation.
Fukayama H., Miyagawa F., Shibatani N., Koudou A., Sasayama D., Hatanaka T., Azuma T., Yamauchi Y., Matsuoka D., Morita R.
Plant Cell Environ. 2021  44(8)  2480-2493
CO2 -responsive CCT protein interacts with 14-3-3 proteins and controls the expression of starch synthesis-related genes.
Cerise M., Giaume F., Galli M., Khahani B., Lucas J., Podico F., Tavakol E., Parcy F., Gallavotti A., Brambilla V., Fornara F.
New Phytol. 2021  229(1)  429-443
OsFD4 promotes the rice floral transition via florigen activation complex formation in the shoot apical meristem.
Fang M., Zhou Z., Zhou X., Yang H., Li M., Li H.
PeerJ 2019  7  e6422
Overexpression of <i>OsFTL10</i> induces early flowering and improves drought tolerance in <i>Oryza sativa</i> L.
Yashvardhini N., Bhattacharya S., Chaudhuri S., Sengupta D.N.
Planta 2018  247(1)  229-253
Molecular characterization of the 14-3-3 gene family in rice and its expression studies under abiotic stress.
Taoka K., Ohki I., Tsuji H., Furuita K., Hayashi K., Yanase T., Yamaguchi M., Nakashima C., Purwestri Y.A., Tamaki S., Ogaki Y., Shimada C., Nakagawa A., Kojima C., Shimamoto K.
Nature 2011  476(7360)  332-5
14-3-3 proteins act as intracellular receptors for rice Hd3a florigen.
Purwestri YA,Ogaki Y,Tamaki S,Tsuji H,Shimamoto K
Plant Cell Physiol. 2009  50  429-38
The 14-3-3 protein GF14c acts as a negative regulator of flowering in rice by interacting with the florigen Hd3a.
Yao Y,Du Y,Jiang L,Liu JY
J. Biochem. Mol. Biol. 2007  40  349-57
Molecular analysis and expression patterns of the 14-3-3 gene family from Oryza sativa.
Chen F,Li Q,Sun L,He Z
DNA Res. 2006  13  53-63
The rice 14-3-3 gene family and its involvement in responses to biotic and abiotic stress.
Cooper,B., Hutchison,D., Park,S., Guimil,S., Luginbuhl,P., Ellero,C., Goff,S.A. and Glazebrook,J.
Plant Mol. Biol. 2003  53(3)  273-279
Identification of rice (Oryza sativa) proteins linked to the cyclin-mediated regulation of the cell cycle.
DB Reference
Gramene ID -
Ontologies
Gene Ontology cellular response to potassium ion starvation( GO:0051365 )
cellular response to nitrogen starvation( GO:0006995 )
root development( GO:0048364 )
phosphate ion homeostasis( GO:0055062 )
response to starvation( GO:0042594 )
cellular response to phosphate starvation( GO:0016036 )
brassinosteroid mediated signaling( GO:0009742 )
chloroplast( GO:0009507 )
response to cadmium ion( GO:0046686 )
defense response to bacterium( GO:0042742 )
plant-type cell wall( GO:0009505 )
plasma membrane( GO:0005886 )
cytosol( GO:0005829 )
nucleus( GO:0005634 )
Trait Ontology root development trait( TO:0000656 )
nitrogen sensitivity( TO:0000011 )
phosphorus sensitivity( TO:0000102 )
potassium sensitivity( TO:0000008 )
calcium sensitivity( TO:0000006 )
plant height( TO:0000207 )
relative plant height( TO:0001034 )
relative root length( TO:0000516 )
Plant Ontology spikelet( PO:0009051 )
Related Strains
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Phenotype images
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Last updated
Dec 10, 2025


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