Gene - Detail

Detail of Gene

Basic Information
CGSNL Gene Symbol BIP4
Gene Symbol Synonym OsBiP4, BiP4, OsMed37_5, Med37_5, BiP2, Hsp70-19, OsHsp70-19
CGSNL Gene Name BINDING PROTEIN 4
Gene Name Synonym ER chaperone BiP4, Binding protein 4, Mediator 37_5, Heat shock protein 70-19
Protein Name BINDING PROTEIN 4
Allele
Chromosome No. 5
Explanation BiP2 in Zhang et al. 2016. GO:1990170: stress response to cadmium ion.
Trait Class Biochemical character
Tolerance and resistance - Stress tolerance
Expression
Sequence/Locus
cDNA Accession No. AK106696
MSU ID LOC_Os05g35400.1
RAP ID Os05g0428600
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
Zhou Y., Lv W., Zhu M., Wang C., Yu L., Bao Y., Tang C., Zhang M., Huang Q., Ye D., Lin Y., Shi Y.
BMC Plant Biol. 2025  26(1)  303
Genome-wide analysis of the Hsp70 gene family in rice reveals that OsHsp70-9 plays a significant role in heat stress response.
Lee H.Y., Back K.
Int J Mol Sci 2024  25(11) 
Melatonin-Regulated Chaperone Binding Protein Plays a Key Role in Cadmium Stress Tolerance in Rice, Revealed by the Functional Characterization of a Novel Serotonin <i>N</i>-Acetyltransferase 3 (<i>SNAT3</i>) in Rice.
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.
Malik N., Dwivedi N., Singh A.K., Parida S.K., Agarwal P., Thakur J.K., Tyagi A.K.
Sci Rep 2016  6  23253
An Integrated Genomic Strategy Delineates Candidate Mediator Genes Regulating grain size and Weight in Rice.
Zhang X., Zheng X., Ke S., Zhu H., Liu F., Zhang Z., Peng X., Guo L., Zeng R., Hou P., Liu Z., Wu S., Song M., Yang J., Zhang G.
Plant Mol. Biol. 2016  92(6)  701-715
ER-localized adenine nucleotide transporter ER-ANT1: an integrator of energy and stress signaling in rice.
Ohta M., Takaiwa F.
J. Exp. Bot. 2015  66(15)  4585-93
OsHrd3 is necessary for maintaining the quality of endoplasmic reticulum-derived protein bodies in rice endosperm.
Ohta M., Takaiwa F.
Plant Signal Behav 2014  9(2)  e28194
Emerging features of ER resident J-proteins in plants.
Hayashi S., Takahashi H., Wakasa Y., Kawakatsu T., Takaiwa F.
Plant J. 2013  74(2)  248-57
Identification of a cis-element that mediates multiple pathways of the endoplasmic reticulum stress response in rice.
Kudo K., Ohta M., Yang L., Wakasa Y., Takahashi S., Takaiwa F.
Plant Mol. Biol. 2013  81(4-5)  461-75
ER stress response induced by the production of human IL-7 in rice endosperm cells.
Hayashi S., Wakasa Y., Takahashi H., Kawakatsu T., Takaiwa F.
Plant J. 2012  69  946-956
Signal transduction by IRE1-mediated splicing of bZIP50 and other stress sensors in the endoplasmic reticulum stress response of rice.
Wakasa Y., Hayashi S., Takaiwa F.
Planta 2012  236(5)  1519-27
Expression of OsBiP4 and OsBiP5 is highly correlated with the endoplasmic reticulum stress response in rice.
DB Reference
Gramene ID -
Ontologies
Gene Ontology response to endoplasmic reticulum stress( GO:0034976 )
polar nucleus fusion( GO:0010197 )
chloroplast( GO:0009507 )
ER-associated protein catabolic process( GO:0030433 )
ATP binding( GO:0005524 )
cell wall( GO:0005618 )
vacuole( GO:0005773 )
response to cadmium ion( GO:0046686 )
plasma membrane( GO:0005886 )
response to heat( GO:0009408 )
Trait Ontology -
Plant Ontology -
Related Strains
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Phenotype images
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Last updated
Aug 3, 2026


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