Difference between revisions of "Os01g0797600"
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| − | + | The rice '''''Os01g0797600''''' was reported as '''''AP37''''' in 2009 <ref name="ref1" /> by researchers from Korea. | |
==Annotated Information== | ==Annotated Information== | ||
| + | ===Gene Symbol=== | ||
| + | *'''''Os01g0797600''''' '''''<=>''''' '''''AP37, OsAP37, OsERF3, OsERF#075, OsERF075, OsERF75, ERF75, AP2/EREBP#004, AP2/EREBP4, OsBIERF2, BIERF2''''' | ||
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===Function=== | ===Function=== | ||
| − | + | *'''''AP37''''' (Os01g0797600), is AP2 domain-containing protein, it is found to be significantly up-regulated in both genotypes under cold stress.<ref name="ref1" /> | |
| + | *'''''AP37''''' gene has the potential to improve drought tolerance in rice without causing undesirable growth phenotypes. | ||
===Expression=== | ===Expression=== | ||
| − | + | * The overexpression of '''''AP37''''' and '''''AP59''''' in rice under the control of the constitutive promoter OsCc1 increased the tolerance to drought and high salinity at the vegetative stage. | |
| − | + | * Increased tolerance to low temperatures was observed only in OsCc1:AP37 plants. More importantly, the OsCc1:AP37 plants showed significantly enhanced drought tolerance in the field, which increased grain yield by 16% to 57% over controls under severe drought conditions, yet exhibited no significant difference under normal growth conditions. | |
| − | + | * In contrast, grain yield in OsCc1:AP59 plants in the field was reduced by 23% to 43% compared with controls under both normal and drought stress conditions. | |
| − | + | * Microarray experiments identified 10 and 38 genes that are up-regulated by AP37 and AP59, respectively, in addition to 37 genes that are commonly induced by both factors. | |
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==Labs working on this gene== | ==Labs working on this gene== | ||
| − | + | * School of Biotechnology and Environmental Engineering, Myongji University, Yongin 449–728, Korea | |
==References== | ==References== | ||
| − | + | <references> | |
| + | * <ref name="ref1"> | ||
| + | Oh SJ, Kim YS, Kwon CW, Park HK, Jeong JS, Kim JK. Overexpression of the | ||
| + | transcription factor AP37 in rice improves grain yield under drought conditions. | ||
| + | Plant Physiol. 2009 Jul;150(3):1368-79. doi: 10.1104/pp.109.137554. PubMed PMID: | ||
| + | 19429605; PubMed Central PMCID: PMC2705040. | ||
| + | </ref> | ||
| + | </references> | ||
==Structured Information== | ==Structured Information== | ||
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[[Category:Genes]] | [[Category:Genes]] | ||
[[Category:Japonica mRNA]] | [[Category:Japonica mRNA]] | ||
Latest revision as of 09:18, 6 March 2017
The rice Os01g0797600 was reported as AP37 in 2009 [1] by researchers from Korea.
Contents
Annotated Information
Gene Symbol
- Os01g0797600 <=> AP37, OsAP37, OsERF3, OsERF#075, OsERF075, OsERF75, ERF75, AP2/EREBP#004, AP2/EREBP4, OsBIERF2, BIERF2
Function
- AP37 (Os01g0797600), is AP2 domain-containing protein, it is found to be significantly up-regulated in both genotypes under cold stress.[1]
- AP37 gene has the potential to improve drought tolerance in rice without causing undesirable growth phenotypes.
Expression
- The overexpression of AP37 and AP59 in rice under the control of the constitutive promoter OsCc1 increased the tolerance to drought and high salinity at the vegetative stage.
- Increased tolerance to low temperatures was observed only in OsCc1:AP37 plants. More importantly, the OsCc1:AP37 plants showed significantly enhanced drought tolerance in the field, which increased grain yield by 16% to 57% over controls under severe drought conditions, yet exhibited no significant difference under normal growth conditions.
- In contrast, grain yield in OsCc1:AP59 plants in the field was reduced by 23% to 43% compared with controls under both normal and drought stress conditions.
- Microarray experiments identified 10 and 38 genes that are up-regulated by AP37 and AP59, respectively, in addition to 37 genes that are commonly induced by both factors.
Labs working on this gene
- School of Biotechnology and Environmental Engineering, Myongji University, Yongin 449–728, Korea