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水稻ClpD1蛋白的组成型过表达增强了转基因拟南芥植株对盐胁迫和干旱胁迫的耐受性。

Constitutive over-expression of rice ClpD1 protein enhances tolerance to salt and desiccation stresses in transgenic Arabidopsis plants.

作者信息

Mishra Ratnesh Chandra, Grover Anil

机构信息

Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi 110021, India.

Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi 110021, India.

出版信息

Plant Sci. 2016 Sep;250:69-78. doi: 10.1016/j.plantsci.2016.06.004. Epub 2016 Jun 3.

DOI:10.1016/j.plantsci.2016.06.004
PMID:27457985
Abstract

Caseinolytic proteases (Clps) perform the important role of removing protein aggregates from cells, which can otherwise prove to be highly toxic. ClpD system is a two-component protease complex composed of a regulatory ATPase module ClpD and a proteolytic component ClpP. Under desiccation stress condition, rice ClpD1 (OsClpD1) gene encoding for the regulatory subunit, was represented by four variant transcripts differing mainly in the expanse of their N-terminal amino acids. These transcripts were expressed in a differential manner in response to salt, mannitol and polyethylene glycol stresses in rice. Purified OsClpD1.3 protein exhibited intrinsic chaperone activity, shown using citrate synthase as substrate. Arabidopsis (Col-0) plants over-expressing OsClpD1.3 open reading frame downstream to CaMV35S promoter (ClpD1.3 plants) showed higher tolerance to salt and desiccation stresses as compared to wild type plants. ClpD1.3 seedlings also showed enhanced growth during the early stages of seed germination under unstressed, control conditions. The free proline levels and starch breakdown activities were higher in the ClpD1.3 seedlings as compared to the wild type Arabidopsis seedlings. It thus emerges that increasing the potential of ClpD1 chaperoning activity may be of advantage in protection against abiotic stresses.

摘要

酪蛋白水解蛋白酶(Clps)在清除细胞内蛋白质聚集体方面发挥着重要作用,否则这些聚集体可能具有高毒性。ClpD系统是一种由调节性ATP酶模块ClpD和蛋白水解成分ClpP组成的双组分蛋白酶复合体。在干旱胁迫条件下,编码调节亚基的水稻ClpD1(OsClpD1)基因由四种变体转录本代表,它们主要在N端氨基酸的长度上有所不同。这些转录本在水稻中对盐、甘露醇和聚乙二醇胁迫的响应中以不同方式表达。以柠檬酸合酶为底物,纯化的OsClpD1.3蛋白表现出内在的伴侣活性。与野生型植物相比,在CaMV35S启动子下游过表达OsClpD1.3开放阅读框的拟南芥(Col-0)植株(ClpD1.3植株)对盐和干旱胁迫表现出更高的耐受性。在无胁迫的对照条件下,ClpD1.3幼苗在种子萌发早期也表现出增强的生长。与野生型拟南芥幼苗相比,ClpD1.3幼苗中的游离脯氨酸水平和淀粉分解活性更高。因此可以看出,提高ClpD1伴侣活性的潜力可能有利于抵御非生物胁迫。

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