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拟南芥中 OsWNK9 的表达赋予其对盐和干旱胁迫的耐受性。

Expression of OsWNK9 in Arabidopsis conferred tolerance to salt and drought stress.

机构信息

Department of Biological Sciences, Birla Institute of Technology & Science Pilani, K. K. Birla Goa Campus, Goa, 403726, India.

Department of Biological Sciences, Birla Institute of Technology & Science Pilani, K. K. Birla Goa Campus, Goa, 403726, India.

出版信息

Plant Sci. 2018 May;270:58-71. doi: 10.1016/j.plantsci.2018.02.008. Epub 2018 Feb 12.

Abstract

With No Lysine (WNK) kinase belongs to ser/thr protein kinase group in which conserved catalytic lysine (K) residue of subdomain II is shifted to subdomain I. In this study, we cloned full-length coding region of WNK9 from Oryza sativa (OsWNK9) and performed in silico studies to confirm the presence of all kinase signature regulatory elements. The transcript analysis revealed that OsWNK9 was strongly down regulated under salinity, drought and ABA stress in shoots. Constitutive expression of OsWNK9 in Arabidopsis thaliana imparted increased tolerance to salt, drought, and ABA stress. Transgenic lines showed healthy phenotypes such as green leaves, achieved higher fresh weight and longer roots under salt, drought and ABA stress as compared to wild-type (WT). Transgenic plants showed better seed germination, higher chlorophyll retention and less water loss under salt and drought stress compared to WT. Promoter/gene expression studies revealed that OsWNK9 were expressed throughout plant tissues with higher expression in roots. Subcellular localization studies of OsWNK9 showed their presence in the nucleus. The transcript analysis of abiotic stress marker genes and ABA dependent genes showed they were highly expressed in transgenic lines compared to WT in response to salt and drought stress. The endogenous ABA level under salt and drought stress in transgenic lines was higher than WT. The results indicated that OsWNK9 may regulate salt and drought response in ABA dependent manner.

摘要

无赖氨酸(WNK)激酶属于丝氨酸/苏氨酸蛋白激酶组,其中亚结构域 II 中保守的催化赖氨酸(K)残基移位到亚结构域 I。在这项研究中,我们从水稻(Oryza sativa)中克隆了 WNK9 的全长编码区(OsWNK9),并进行了计算机研究以确认所有激酶特征调节元件的存在。转录分析表明,OsWNK9 在盐度、干旱和 ABA 胁迫下在芽中强烈下调。在拟南芥中组成型表达 OsWNK9 赋予了对盐、干旱和 ABA 胁迫的更高耐受性。与野生型(WT)相比,转基因系在盐、干旱和 ABA 胁迫下表现出健康的表型,如绿叶、实现了更高的鲜重和更长的根。与 WT 相比,转基因植物在盐和干旱胁迫下表现出更好的种子萌发、更高的叶绿素保留和更少的水分损失。启动子/基因表达研究表明,OsWNK9 在整个植物组织中表达,在根中表达更高。OsWNK9 的亚细胞定位研究表明它们存在于细胞核中。非生物胁迫标记基因和 ABA 依赖基因的转录分析表明,与 WT 相比,它们在响应盐和干旱胁迫时在转基因系中高度表达。在盐度和干旱胁迫下,转基因系中的内源 ABA 水平高于 WT。结果表明,OsWNK9 可能以 ABA 依赖的方式调节盐和干旱反应。

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