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首页> 外文期刊>Journal of Experimental Botany >Overexpression of the regulator of G-protein signalling protein enhances ABA-mediated inhibition of root elongation and drought tolerance in Arabidopsis
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Overexpression of the regulator of G-protein signalling protein enhances ABA-mediated inhibition of root elongation and drought tolerance in Arabidopsis

机译:G蛋白信号蛋白调节剂的过表达增强了拟南芥中ABA介导的根伸长抑制和抗旱性

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摘要

Regulator of G-protein signalling (RGS) proteins identified recently in Arabidopsis have been involved in the regulation of several physiological processes, but largely nothing is known about their roles at both the physiological and the molecular level. In the experiments reported here, the overexpression approach was used to present evidence that RGS1 protein plays critical roles in plant development and in modulating abscisic acid (ABA) and drought stress signal transduction. RGS1 affected the shapes of leaves, the development of floral buds, the elongation of stems, siliques, and hypocotyls, and the time of flowering. Post-germination growth was inhibited by 1 μM ABA, and root growth was hypersensitive to ABA for 35S-RGS1 transgenic plants. RGS1 overexpression conferred more drought tolerance to transgenic plants, as compared with the wild type (Columbia). Reverse transcription–PCR (RT–PCR) results indicated that RGS1 overexpresssion significantly stimulated the expression of NCED and ABA2, that encode two key enzymes catalysing ABA biosynthesis. Furthermore, the expression of several stress-regulated genes was either up- or down-regulated in RGS1-overexpressing transgenic plants. Combining the results above with previous results, it is suggested that RGS1 exerted its effects on plant responsiveness to ABA and drought tolerance largely through changing the expression either of genes responsible for ABA biosynthesis, which leads to changes in endogenous ABA levels, or of stress-responsive genes.
机译:拟南芥中最近发现的G蛋白信号(RGS)蛋白的调节剂已经参与了几种生理过程的调节,但在生理和分子水平上它们的作用在很大程度上尚不清楚。在此处报道的实验中,过表达方法用于提供证据,证明RGS1蛋白在植物发育以及调节脱落酸(ABA)和干旱胁迫信号转导中起关键作用。 RGS1影响叶片的形状,花蕾的发育,茎,角果和下胚轴的伸长以及开花时间。对于35S-RGS1转基因植物,发芽后的生长受到1μMABA的抑制,并且根的生长对ABA高度敏感。与野生型(哥伦比亚)相比,RGS1过表达赋予转基因植物更多的耐旱性。逆转录-PCR(RT-PCR)结果表明,RGS1过表达显着刺激了NCED和ABA2的表达,它们编码了催化ABA生物合成的两个关键酶。此外,在过表达RGS1的转基因植物中,几种胁迫调控基因的表达被上调或下调。将以上结果与以前的结果相结合,表明RGS1主要通过改变负责ABA生物合成的基因的表达(其导致内源ABA水平的变化或逆境胁迫)来发挥其对植物对ABA响应和干旱耐受性的作用。反应性基因。

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