首页> 外文期刊>Journal of Plant Biology >Overexpressing a novel RING-H2 finger protein gene, OsRHP1, enhances drought and salt tolerance in rice (Oryza sativa L.)
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Overexpressing a novel RING-H2 finger protein gene, OsRHP1, enhances drought and salt tolerance in rice (Oryza sativa L.)

机译:过表达新的RING-H2手指蛋白基因OsRHP1可增强水稻(Oryza sativa L.)的干旱和耐盐性

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RING (really interesting new gene) zinc-finger proteins have important regulatory roles in the development of a variety of organisms. In the present report, a full length cDNA encoding a novel RING-H2 finger protein from rice, designated as OsRHP1, was isolated and characterized. OsRHP1 encodes a small protein (167 amino acids) with two N-terminal trans-membrane domains and a canonical RING-H2 zinc-finger motif located at the C-terminus. Ten putative homologs of OsRHP1 harboring one canonical RING-H2 finger domain exhibit in other plant species. In our work, OsRHP1 was expressed ubiquitously in various tissues, but its transcript is accumulated more in mature leaf. Compared with wild-type (WT) rice plants, transgenic plants overexpressing OsRHP1 exhibited more tolerance to drought and salt stress. Meanwhile, the transgenic T2 lines showed a significant increase of endogenous ABA content in normal condition. When subjected to drought and salt stress, much stronger accumulation of ABA was detected compared with WT. Furthermore, a significant increase of transcriptional expression, of five ABA biosynthesis or ABA-mediated response genes, OsNCED, OsZEP, OsAAO, OsABI5, OsABF2, OsLEA3-1 were observed in the transgenic plants under drought and salt stress condition. These results demonstrate that overexpression of OsRHP1 substantially enhances drought and salt tolerance through increased ABA level and enhanced ABA-mediated stress response.
机译:RING(非常有趣的新基因)锌指蛋白在多种生物的发育中具有重要的调节作用。在本报告中,分离并鉴定了编码来自水稻的新型RING-H2指状蛋白的全长cDNA,命名为OsRHP1。 OsRHP1编码具有两个N端跨膜结构域和位于C端的典型RING-H2锌指基序的小蛋白(167个氨基酸)。十个推定的带有一个典型的RING-H2指状结构域的OsRHP1同源物出现在其他植物物种中。在我们的工作中,OsRHP1在各种组织中普遍表达,但其转录物在成熟叶片中积累更多。与野生型(WT)水稻植物相比,过表达OsRHP1的转基因植物对干旱和盐胁迫表现出更大的耐受性。同时,转基因T2品系在正常条件下显示出内源ABA含量的显着增加。与干旱相比,在干旱和盐胁迫下,ABA的积累更强。此外,在干旱和盐胁迫条件下,在转基因植物中观察到五个ABA生物合成或ABA介导的响应基因OsNCED,OsZEP,OsAAO,OsABI5,OsABF2,OsLEA3-1的转录表达显着增加。这些结果表明,OsRHP1的过表达通过增加ABA水平和增强ABA介导的应激反应而实质上增强了干旱和盐耐受性。

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