苗木
非生物胁迫
突变体
发芽
拟南芥
生物
非生物成分
细胞生物学
基因
激酶
基因表达
植物
生物化学
古生物学
作者
Hai-Iong Piao,Yuanhu Xuan,Su Hyun Park,Byoung Il Je,Soon Ju Park,Sung Han Park,Chul Min Kim,Jin Huang,Guo Kui Wang,Min Jung Kim,⋅Sang-Mo Kang,In‐Jung Lee,Taek-Ryoun Kwon,Yong Hwan Kim,Un‐Sang Yeo,Gihwan Yi,Daeyoung Son,Chang‐deok Han
出处
期刊:Molecules and Cells
[Korean Society for Molecular and Cellular Biology]
日期:2010-07-01
卷期号:30 (1): 19-28
被引量:84
标识
DOI:10.1007/s10059-010-0084-1
摘要
Calcineurin B-like protein-interacting protein kinases (CIPKs) are a group of typical Ser/Thr protein kinases that mediate calcium signals. Extensive studies using Arabidopsis plants have demonstrated that many calcium signatures that activate CIPKs originate from abiotic stresses. However, there are few reports on the functional demonstration of CIPKs in other plants, especially in grasses. In this study, we used a loss-of-function mutation to characterize the function of the rice CIPK gene OsCIPK31. Exposure to high concentrations of NaCl or mannitol effected a rapid and transient enhancement of OsCIPK31 expression. These findings were observed only in the light. However, longer exposure to most stresses resulted in downregulation of OsCIPK31 expression in both the presence and absence of light. To determine the physiological roles of OsCIPK31 in rice plants, the sensitivity of oscipk31::Ds, which is a transposon Ds insertion mutant, to abiotic stresses was examined during germination and seedling stages. oscipk31::Ds mutants exhibited hypersensitive phenotypes to ABA, salt, mannitol, and glucose. Compared with wild-type rice plants, mutants exhibited retarded germination and slow seedling growth. In addition, oscipk31::Ds seedlings exhibited enhanced expression of several stress-responsive genes after exposure to these abiotic stresses. However, the expression of ABA metabolic genes and the endogenous levels of ABA were not altered significantly in the oscipk31::Ds mutant. This study demonstrated that rice plants use OsCIPK31 to modulate responses to abiotic stresses during the seed germination and seedling stages and to modulate the expression of stress-responsive genes.
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