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The Arabidopsis Gene zinc finger protein 3(ZFP3) Is Involved in Salt Stress and Osmotic Stress Response

机译:拟南芥基因锌指蛋白3(ZFP3)参与盐胁迫和渗透胁迫响应。

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摘要

Plants are continuously challenged by various abiotic and biotic stresses. To tide over these adversities, plants evolved intricate regulatory networks to adapt these unfavorable environments. So far, many researchers have clarified the molecular and genetic pathways involved in regulation of stress responses. However, the mechanism through which these regulatory networks operate is largely unknown. In this study, we cloned a C2H2-type zinc finger protein gene ZFP3 from Arabidopsis thaliana and investigated its function in salt and osmotic stress response. Our results showed that the expression level of ZFP3 was highly suppressed by NaCl, mannitol and sucrose. Constitutive expression of ZFP3 enhanced tolerance of plants to salt and osmotic stress while the zfp3 mutant plants displays reduced tolerance in Arabidopsis. Gain- and Loss-of-function studies of ZFP3 showed that ZFP3 significantly changes proline accumulation and chlorophyll content. Furthermore, over-expression of ZFP3 induced the expressions of stress-related gene KIN1, RD22, RD29B and AtP5CS1. These results suggest that ZFP3 is involved in salt and osmotic stress response.
机译:植物不断受到各种非生物和生物胁迫的挑战。为了应对这些逆境,工厂发展了复杂的监管网络来适应这些不利的环境。到目前为止,许多研究人员已经阐明了调节应激反应的分子和遗传途径。但是,这些监管网络运作的机制在很大程度上尚不清楚。在这项研究中,我们从拟南芥中克隆了一个C2H2型锌指蛋白基因ZFP3,并研究了其在盐和渗透胁迫响应中的功能。我们的结果表明,NaCl,甘露醇和蔗糖可高度抑制ZFP3的表达水平。 ZFP3的组成型表达增强了植物对盐和渗透胁迫的耐受性,而zfp3突变体植物在拟南芥中显示出较低的耐受性。 ZFP3的功能获得和丧失研究表明ZFP3显着改变了脯氨酸的积累和叶绿素含量。此外,ZFP3的过表达诱导了应激相关基因KIN1,RD22,RD29B和AtP5CS1的表达。这些结果表明ZFP3参与盐和渗透胁迫反应。

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