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首页> 外文期刊>Biochemical and Biophysical Research Communications >The glutamate receptors AtGLR1.2 and AtGLR1.3 increase cold tolerance by regulating jasmonate signaling in Arabidopsis thaliana
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The glutamate receptors AtGLR1.2 and AtGLR1.3 increase cold tolerance by regulating jasmonate signaling in Arabidopsis thaliana

机译:谷氨酸受体Atgrr1.2和AtgLr1.3通过调节拟南芥中的茉莉酸甲酸信号传导来增加耐寒性

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Plant glutamate-like receptors (GLRs), which are homologs of mammalian ionotropic glutamate receptors (iGluRs), are thought to be involved in plant growth, development, and environmental stress responses. In this study, we demonstrated that two members of Arabidopsis glutamate-like receptors, AtGLR1.2 and AtGLR1.3, play positive roles in the plant response to cold stress. Genetic and biochemical experiments revealed that exogenous jasmonate could attenuate the cold sensitivity of gir1.2 and glr1.3 mutants, and the overexpression of GLR1.2 or GLR1.3 enhanced cold tolerance by increasing endogenous jasmonate levels under cold stress. In addition, the expression of genes in the CBF/DREB1 signaling pathway was decreased in the glr1.2 and glr1.3 mutants, but was promoted in GLR1.2-OE and GLR1.3-OE transgenic plants compared with the wild-type during cold treatment Further investigation revealed that AtGLR1.2 and AtGLR1.3 independently drove similar functions without directly interacting. Together, our findings suggest that AtGLR1.2 and 1.3 positively enhance cold tolerance in Arabidopsis by activating endogenous jasmonate accumulation and subsequently promoting the downstream CBF/DREBI cold response pathway during cold stress. (C) 2018 Elsevier Inc. All rights reserved.
机译:植物谷氨酸类受体(GLR),其是哺乳动物离子型谷氨酸受体(IGLURS)的同源物,被认为参与植物生长,发育和环境应激反应。在这项研究中,我们证明了拟南芥谷氨酸类受体,ATGLR1.2和ATGLR1.3的两个成员在植物反应中起阳性作用对冷应激。遗传和生化实验表明,外源性茉满面液可以衰减GiR1.2和GLR1.3突变体的冷敏感性,并通过增加冷应力下的内源性茉莉酸盐水平来增强耐寒性的耐寒性。此外,在GLR1.2和GLR1.3突变体中降低了CBF / DREB1信号传导途径中基因的表达,但与野生型相比,GLR1.2-OE和GLR1.3-OE转基因植物中促进在冷处理过程中,进一步调查显示,ATGLR1.2和ATGLR1.3独立地推动了类似功能而不直接相互作用。我们的研究结果表明,ATGLR1.2和1.3通过激活内源性茉莉酸盐积累并随后在冷应力期间促进下游CBF / DREBI冷响应途径来积极地增强拟南芥的耐寒性。 (c)2018年Elsevier Inc.保留所有权利。

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