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A G-Protein β Subunit AGB1 Negatively Regulates the ABA Response and Drought Tolerance by Down-Regulating AtMPK6-Related Pathway in Arabidopsis

机译:G蛋白β亚基AGB1通过下调拟南芥中AtMPK6相关途径负调控ABA反应和耐旱性。

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摘要

Heterotrimeric G-proteins are versatile regulators involved in diverse cellular processes in eukaryotes. In plants, the function of G-proteins is primarily associated with ABA signaling. However, the downstream effectors and the molecular mechanisms in the ABA pathway remain largely unknown. In this study, an AGB1 mutant (agb1-2) was found to show enhanced drought tolerance, indicating that AGB1 might negatively regulate drought tolerance in Arabidopsis. Data showed that AGB1 interacted with protein kinase AtMPK6 that was previously shown to phosphorylate AtVIP1, a transcription factor responding to ABA signaling. Our study found that transcript levels of three ABA responsive genes, AtMPK6, AtVIP1 and AtMYB44 (downstream gene of AtVIP1), were significantly up-regulated in agb1-2 lines after ABA or drought treatments. Other ABA-responsive and drought-inducible genes, such as RD29A (downstream gene of AtMYB44), were also up-regulated in agb1-2 lines. Furthermore, overexpression of AtVIP1 resulted in hypersensitivity to ABA at seed germination and seedling stages, and significantly enhanced drought tolerance in transgenic plants. These results suggest that AGB1 was involved in the ABA signaling pathway and drought tolerance in Arabidopsis through down-regulating the AtMPK6, AtVIP1 and AtMYB44 cascade.
机译:异三聚体G蛋白是参与真核生物各种细胞过程的多功能调节剂。在植物中,G蛋白的功能主要与ABA信号传导有关。然而,下游效应子和ABA途径中的分子机制仍然很大程度上未知。在这项研究中,发现AGB1突变体(agb1-2)显示出增强的耐旱性,表明AGB1可能对拟南芥的干旱耐受性产生负调控。数据显示,AGB1与蛋白激酶AtMPK6相互作用,该蛋白激酶以前被证明可以磷酸化AtVIP1(一种响应ABA信号的转录因子)。我们的研究发现,在ABA或干旱处理后,agb1-2系中三个ABA响应基因AtMPK6,AtVIP1和AtMYB44(AtVIP1的下游基因)的转录水平显着上调。其他ABA响应和干旱诱导基因,例如RD29A(AtMYB44的下游基因),也在agb1-2系中上调。此外,AtVIP1的过表达导致种子发芽和幼苗期对ABA过敏,并显着增强了转基因植物的耐旱性。这些结果表明,AGB1通过下调 AtMPK6 AtVIP1 AtMYB44 级联反应参与拟南芥的ABA信号通路和干旱耐受性。

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