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首页> 外文期刊>Journal of plant interactions >OsPM1 is a positive regulator of rice tolerance to drought stress but a negative regulator of rice tolerance to salt stress
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OsPM1 is a positive regulator of rice tolerance to drought stress but a negative regulator of rice tolerance to salt stress

机译:OSPM1是对干旱胁迫的稻米耐药性的正稳压因子,但盐胁迫的稻米耐药性的负调节剂

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摘要

To understand stress response mechanisms, a multiple stress-responsive gene OsPM1 with a disordered region containing about 30 amino acid residues was screened by microarray. Promoter region analysis using PlantCARE showed this gene contains multiple cis-regulatory elements responding to abiotic stresses. Quantitative real-time PCR and promoter-GUS transgenic plant analysis verified that OsPM1 was induced by multiple abiotic stresses. OsPM1-GFP fusion protein expression showed that OsPM1 was localized at the cell membrane. The rice plants overexpressing OsPM1 exhibited hypersensitivity to salt stress but enhanced drought tolerance compared to the wild-type plants; the rice plants expressing antisense of OsPM1 were hyposensitive to salt stress but with weak drought tolerance compared to the wild-type plants. These results showed OsPM1 is a positive regulator of rice tolerance to drought, but it’s also a negative regulator of rice tolerance to salt.
机译:为了了解应激响应机制,通过微阵列筛选具有约30个氨基酸残基的含有约30个氨基酸残基的无序区域的多重应激响应性基因OSPM1。 使用PlantCare的启动子区分析显示该基因含有多种CIS-COMMICATION元素,反应非生物应激。 定量实时PCR和启动子 - GUS转基因植物分析证实OSPM1被多重非生物应激诱导。 OSPM1-GFP融合蛋白表达显示OWPM1在细胞膜处定位。 过表达OSPM1的水稻植物表现出与盐胁迫的过敏率,但与野生型植物相比增强了干旱耐受性; 表达OSPM1反义的水稻植物对盐胁迫进行过敏,但与野生型植物相比,干旱耐受性弱。 这些结果表明OSPM1是对干旱的水稻耐受性的正调节因子,但它也是盐分差分的负调节因子。

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