首页> 美国卫生研究院文献>Molecules and Cells >CaPUB1 a Hot Pepper U-box E3 Ubiquitin Ligase Confers Enhanced Cold Stress Tolerance and Decreased Drought Stress Tolerance in Transgenic Rice (Oryza sativa L.)
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CaPUB1 a Hot Pepper U-box E3 Ubiquitin Ligase Confers Enhanced Cold Stress Tolerance and Decreased Drought Stress Tolerance in Transgenic Rice (Oryza sativa L.)

机译:CaPUB1是辣椒U-box E3泛素连接酶可增强转基因水稻的耐冷胁迫能力并降低其耐旱性。

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摘要

Abiotic stresses such as drought and low temperature critically restrict plant growth, reproduction, and productivity. Higher plants have developed various defense strategies against these unfavorable conditions. CaPUB1 (Capsicum annuum Putative U-box protein 1) is a hot pepper U-box E3 Ub ligase. Transgenic Arabidopsis plants that constitutively expressed CaPUB1 exhibited drought-sensitive phenotypes, suggesting that it functions as a negative regulator of the drought stress response. In this study, CaPUB1 was over-expressed in rice (Oryza sativa L.), and the phenotypic properties of transgenic rice plants were examined in terms of their drought and cold stress tolerance. Ubi:CaPUB1 T3 transgenic rice plants displayed phenotypes hypersensitive to dehydration, suggesting that its role in the negative regulation of drought stress response is conserved in dicot Arabidopsis and monocot rice plants. In contrast, Ubi:CaPUB1 progeny exhibited phenotypes markedly tolerant to prolonged low temperature (4°C) treatment, compared to those of wild-type plants, as determined by survival rates, electrolyte leakage, and total chlorophyll content. Cold stress-induced marker genes, including DREB1A, DREB1B, DREB1C, and Cytochrome P450, were more up-regulated by cold treatment in Ubi:CaPUB1 plants than in wild-type plants. These results suggest that CaPUB1 serves as both a negative regulator of the drought stress response and a positive regulator of the cold stress response in transgenic rice plants. This raises the possibility that CaPUB1 participates in the cross-talk between drought and low-temperature signaling pathways.
机译:干旱和低温等非生物胁迫严重限制了植物的生长,繁殖和生产力。高等植物已经针对这些不利条件制定了各种防御策略。 CaPUB1(辣椒年度推定的U-box蛋白1)是辣椒U-box E3 Ub连接酶。组成型表达CaPUB1的转基因拟南芥植物表现出对干旱敏感的表型,表明它作为干旱胁迫反应的负调节剂。在这项研究中,CaPUB1在水稻(Oryza sativa L.)中过表达,并从转基因水稻的干旱和寒冷胁迫耐受性方面研究了其表型特性。 Ubi:CaPUB1 T3转基因水稻植物表现出对脱水高度敏感的表型,表明在双子叶植物拟南芥和单子叶植物中,其在干旱胁迫响应的负调控中是保守的。相反,与野生型植物相比,Ubi:CaPUB1后代表现出显着耐受延长的低温(4°C)处理的表型,这取决于存活率,电解质泄漏和总叶绿素含量。与野生型植物相比,在Ubi:CaPUB1植物中,冷胁迫诱导的标记基因(包括DREB1A,DREB1B,DREB1C和细胞色素P450)被上调的程度更高。这些结果表明,CaPUB1既是转基因水稻植物中干旱胁迫响应的负调节剂,也是寒冷胁迫响应的正调节剂。这增加了CaPUB1参与干旱和低温信号传导途径之间的串扰的可能性。

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