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过量表达水稻 RING 结构域 E3 泛素连接酶 OsRDCP1 提高了水稻对干旱胁迫的耐受性。

Overexpression of OsRDCP1, a rice RING domain-containing E3 ubiquitin ligase, increased tolerance to drought stress in rice (Oryza sativa L.).

机构信息

Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Republic of Korea.

出版信息

Plant Sci. 2011 Jun;180(6):775-82. doi: 10.1016/j.plantsci.2011.02.008. Epub 2011 Mar 4.

Abstract

CaRma1H1 was previously identified as a hot pepper drought-induced RING E3 Ub ligase. We have identified five putative proteins that display a significant sequence identity with CaRma1H1 in the rice genome database (http://signal.salk.edu/cgi-bin/RiceGE). These five rice paralogs possess a single RING motif in their N-terminal regions, consistent with the notion that RING proteins are encoded by a multi-gene family. Therefore, these proteins were named OsRDCPs (Oryza sativa RING domain-containing proteins). Among these paralogs, OsRDCP1 was induced by drought stress, whereas the other OsRDCP members were constitutively expressed, with OsRDCP4 transcripts expressed at the highest level in rice seedlings. osrdcp1 loss-of-function knockout mutant and OsRDCP1-overexpressing transgenic rice plants were developed. Phenotypic analysis showed that wild-type plants and the homozygous osrdcp1 G2 mutant line displayed similar phenotypes under normal growth conditions and in response to drought stress. This may be due to complementation by other OsRDCP paralogs. In contrast, 35S:OsRDCP1 T2 transgenic rice plants exhibited improved tolerance to severe water deficits. Although the physiological function of OsRDCP1 remains unclear, there are several possible mechanisms for its involvement in a subset of physiological responses to counteract dehydration stress in rice plants.

摘要

CaRma1H1 先前被鉴定为一种辣椒干旱诱导的 RING E3 Ub 连接酶。我们在水稻基因组数据库(http://signal.salk.edu/cgi-bin/RiceGE)中鉴定了五个与 CaRma1H1 具有显著序列同一性的假定蛋白。这五个水稻同源物在其 N 端区域都具有单个 RING 基序,这与 RING 蛋白由多基因家族编码的观点一致。因此,这些蛋白被命名为 OsRDCPs(水稻 RING 结构域蛋白)。在这些同源物中,OsRDCP1 受到干旱胁迫诱导,而其他 OsRDCP 成员则组成型表达,OsRDCP4 转录本在水稻幼苗中的表达水平最高。开发了 OsRDCP1 功能丧失敲除突变体和 OsRDCP1 过表达转基因水稻植株。表型分析表明,在正常生长条件下和干旱胁迫下,野生型植株和 OsRDCP1 G2 纯合突变体系表现出相似的表型。这可能是由于其他 OsRDCP 同源物的互补作用。相比之下,35S:OsRDCP1 T2 转基因水稻植株表现出对严重水分亏缺的耐受性提高。尽管 OsRDCP1 的生理功能尚不清楚,但它可能参与了水稻植物对脱水胁迫的一部分生理反应,有几种可能的机制。

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