Gene - Detail

Detail of Gene

Basic Information
CGSNL Gene Symbol ALDH18B2
Gene Symbol Synonym P5CS2, OsP5CS2, OsALDH18B2
CGSNL Gene Name ALDEHYDE DEHYDROGENASE 18B2
Gene Name Synonym pyrroline-5-carboxylate synthetase 2, proline carboxylate synthase 2, Aldehyde dehydrogenase 18B2
Protein Name ALDEHYDE DEHYDROGENASE 18B2
Allele
Chromosome No. 1
Explanation OsP5CS1 in Zhu et al. 2015. OsP5CS in Chen et al. 2017.
Trait Class Biochemical character
Seed - Physiological traits - Taste
Tolerance and resistance - Stress tolerance
Expression
Sequence/Locus
cDNA Accession No. AK069425
MSU ID LOC_Os01g62900.1
RAP ID Os01g0848200
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
Akbarzadeh Lelekami M., Pahlevani M.H., Zaynali Nezhad K., Mahdavi Mashaki K.
Sci Rep 2025  15(1)  2404
Gene metabolite relationships revealed metabolic adaptations of rice salt tolerance.
Yan J., Ninkuu V., Fu Z., Yang T., Ren J., Li G., Yang X., Zeng H.
Front Plant Sci 2023  14  1163939
OsOLP1 contributes to drought tolerance in rice by regulating ABA biosynthesis and lignin accumulation.
Liu Z., Bi S., Meng J., Liu T., Li P., Yu C., Peng X.
Front Plant Sci 2022  13  962460
Arbuscular mycorrhizal fungi enhanced rice proline metabolism under low temperature with nitric oxide involvement.
Prodhan Z.H., Islam S.A., Alam M.S., Li S., Jiang M., Tan Y., Shu Q.
Plants (Basel) 2022  11(21) 
Impact of <i>OsBadh2</i> Mutations on Salt Stress Response in Rice.
Nguyen H.T.T., Das Bhowmik S., Long H., Cheng Y., Mundree S., Hoang L.T.M.
Plants (Basel) 2021  10(10) 
Rapid Accumulation of Proline Enhances Salinity Tolerance in Australian Wild Rice <i>Oryza australiensis</i> Domin.
Arabia S., Shah M.N.A., Sami A.A., Ghosh A., Islam T.
Physiol Mol Biol Plants 2021  27(7)  1469-1485
Identification and expression profiling of proline metabolizing genes in <i>Arabidopsis thaliana</i> and <i>Oryza sativa</i> to reveal their stress-specific transcript alteration.
Cao X., Wu L., Wu M., Zhu C., Jin Q., Zhang J.
BMC Plant Biol. 2020  20(1)  198
Abscisic acid mediated proline biosynthesis and antioxidant ability in roots of two different rice genotypes under hypoxic stress.
Huang S., Xin S., Xie G., Han J., Liu Z., Wang B., Zhang S., Wu Q., Cheng X.
The Crop Journal 2020  8(3)  465-479
Mutagenesis reveals that the rice OsMPT3 gene is an important osmotic regulatory factor
Zarattini M., Forlani G.
Front Plant Sci 2017  8  927
Toward Unveiling the Mechanisms for Transcriptional Regulation of Proline Biosynthesis in the Plant Cell Response to Biotic and Abiotic Stress Conditions.
Chen Y., Zhou X., Chang S., Chu Z., Wang H., Han S., Wang Y.
Biochem. Biophys. Res. Commun. 2017  493(4)  1450-1456
Calcium-dependent protein kinase 21 phosphorylates 14-3-3 proteins in response to ABA signaling and salt stress in rice.
Zhu N., Cheng S., Liu X., Du H., Dai M., Zhou D.X., Yang W., Zhao Y.
Plant Sci. 2015  236  146-56
The R2R3-type MYB gene OsMYB91 has a function in coordinating plant growth and salt stress tolerance in rice.
Zhang X.a, Tang W.a, Liu J.b, Liu Y.a b
Chinese Journal of Applied and Environmental Biology 2014  20  717-722
Co-expression of rice OsP5CS1 and OsP5CS2 genes in transgenic tobacco resulted in elevated proline biosynthesis and enhanced abiotic stress tolerance
Xiong H., Li J., Liu P., Duan J., Zhao Y., Guo X., Li Y., Zhang H., Ali J., Li Z.
PLoS ONE 2014  9(3)  e92913
Overexpression of OsMYB48-1, a Novel MYB-Related Transcription Factor, Enhances Drought and Salinity Tolerance in Rice.
Lv B.S.a b, Li X.W.a c, Ma H.Y.c, Sun Y.d, Wei L.X.c, Jiang C.J.e, Liang Z.W.c
Agron J 2013  105  1119-1128
Differences in growth and physiology of rice in response to different saline-alkaline stress factors
Simeon O Kotchoni, Jose C Jimenez-Lopez, Gao D., Edwards V., Emma W Gachomo, Venu M Margam, Manfredo J Seufferheld
PLoS ONE 2010  5(7)  e11516
Modeling-dependent protein characterization of the rice aldehyde dehydrogenase (ALDH) superfamily reveals distinct functional and structural features.
DB Reference
Gramene ID -
Ontologies
Gene Ontology response to heat( GO:0009408 )
response to water deprivation( GO:0009414 )
response to symbiotic fungus( GO:0009610 )
response to cold( GO:0009409 )
glutamate 5-kinase activity( GO:0004349 )
glutamate-5-semialdehyde dehydrogenase activity( GO:0004350 )
proline biosynthetic process( GO:0006561 )
response to oxidative stress( GO:0006979 )
response to desiccation( GO:0009269 )
response to abscisic acid stimulus( GO:0009737 )
embryonic development ending in seed dormancy( GO:0009793 )
membrane( GO:0016020 )
hyperosmotic salinity response( GO:0042538 )
root development( GO:0048364 )
response to osmotic stress( GO:0006970 )
response to salt stress( GO:0009651 )
chloroplast( GO:0009507 )
Trait Ontology drought tolerance( TO:0000276 )
salt tolerance( TO:0006001 )
osmotic response sensitivity( TO:0000095 )
cold tolerance( TO:0000303 )
aroma( TO:0000087 )
osmotic adjustment capacity( TO:0000507 )
oxidative stress( TO:0002657 )
heat tolerance( TO:0000259 )
proline content( TO:0006002 )
Plant Ontology pollen( PO:0025281 )
Related Strains
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Phenotype images
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Last updated
Jun 12, 2025


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