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ABA-Hypersensitive germination3 encodes a protein phosphatase 2C (AtPP2CA) that strongly regulates abscisic acid signaling during germination among Arabidopsis protein phosphatase 2Cs

机译:ABA超敏性萌发3编码一种蛋白磷酸酶2C(AtPP2CA),该蛋白在拟南芥蛋白磷酸酶2Cs萌发期间强烈调节脱落酸信号传导。

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The phytohormone abscisic acid (ABA) regulates physiologically important developmental processes and stress responses. Previously, we reported on Arabidopsis (Arabidopsis thaliana) L. Heynh. ahg mutants, which are hypersensitive to ABA during germination and early growth. Among them, ABA-hypersensitive germination3 (ahg3) showed the strongest ABA hypersensitivity. In this study, we found that the AHG3 gene is identical to AtPP2CA, which encodes a protein phosphatase 2C (PP2C). Although AtPP2CA has been reported to be involved in the ABA response on the basis of results obtained by reverse-genetics approaches, its physiological relevance in the ABA response has not been clarified yet. We demonstrate in vitro and in vivo that the ahg3-1 missense mutation causes the loss of PP2C activity, providing concrete confirmation that this PP2C functions as a negative regulator in ABA signaling. Furthermore, we compared the effects of disruption mutations of eight structurally related PP2C genes of Arabidopsis, including ABI1, ABI2, HAB1, and HAB2, and found that the disruptant mutant of AHG3/AtPP2CA had the strongest ABA hypersensitivity during germination, but it did not display any significant phenotypes in adult plants. Northern-blot analysis clearly showed that AHG3/AtPP2CA is the most active among those PP2C genes in seeds. These results suggest that AHG3/AtPP2CA plays a major role among PP2Cs in the ABA response in seeds and that the functions of those PP2Cs overlap, but their unique tissue- or development-specific expression confers distinct and indispensable physiological functions in the ABA response.
机译:植物激素脱落酸(ABA)调节重要的生理发育过程和应激反应。以前,我们报道过拟南芥(Arabidopsis thaliana)L. Heynh。 ahg突变体,在发芽和早期生长过程中对ABA高度敏感。其中,ABA超敏发芽3(ahg3)显示出最强的ABA超敏性。在这项研究中,我们发现AHG3基因与AtPP2CA相同,后者编码蛋白质磷酸酶2C(PP2C)。尽管据报道通过逆向遗传学方法获得的结果表明AtPP2CA参与了ABA应答,但尚未弄清其在ABA应答中的生理相关性。我们在体内和体外证明了ahg3-1错义突变会导致PP2C活性的丧失,从而提供了具体的证实,该PP2C在ABA信号传导中起负调控作用。此外,我们比较了八个结构相关的拟南芥PP2C基因(包括ABI1,ABI2,HAB1和HAB2)的破坏突变的影响,发现AHG3 / AtPP2CA的破坏突变体在萌发过程中具有最强的ABA超敏性,但没有在成年植物中显示任何显着的表型。 Northern印迹分析清楚地表明,在种子中的那些PP2C基因中,AHG3 / AtPP2CA是最活跃的。这些结果表明,AHG3 / AtPP2CA在种子的ABA应答中在PP2C中起主要作用,并且这些PP2C的功能重叠,但是它们独特的组织或发育特异性表达赋予ABA应答独特且必不可少的生理功能。

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