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Function of the α Subunit of Rice Heterotrimeric G Protein in Brassinosteroid Signaling

机译:水稻异三聚体G蛋白α亚基在油菜素类固醇信号传导中的功能

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The α subunit of plant heterotrimeric G proteins (Gα) plays pivotal roles in multiple aspects of development and responses to plant hormones. Recently, several lines of evidence have shown that Gα participates in brassinosteroid (BR) responses in Arabidopsis and rice plants. In this study, we conducted a comprehensive analysis of the roles of the rice Gα in the responses to BR using a defective mutant of the Gα gene, T65d1. Decreased sensitivity to 24-epi-brassinolide (24-epiBL) in the T65d1 mutant was observed in many processes examined, e.g. in the inhibition of root growth and the promotion of coleoptile elongation. The T65d1 mutant also showed similar phenotypes to those of BR-deficient mutants, such as the specifically shortened second internode and the constitutive photomorphogenic growth phenotype under dark conditions. However, a negative feedback effect by 24-epiBL on the expression of BR biosynthetic genes was observed in the T65d1 mutant, and the levels of BR intermediates did not fluctuate in this mutant. To determine the epistatic relationship between the T65d1 mutant and d61-7, a weak allele of a rice BR receptor mutant, the two mutants were crossed. The T65d1/d61-7 double mutant showed no epistasis in the elongation inhibition of the internodes, the internode elongation pattern, the leaf angle and the morphological abnormality of leaf, except for the vertical length of seed and the seed weight. Our results suggest that the rice Gα affects the BR signaling cascade but the Gα may not be a signaling molecule in BRI1-meditated perception/transduction.
机译:植物异源三聚体G蛋白(Gα)的α亚基在植物激素的发育和响应的多个方面起着关键作用。最近,一些证据表明,Gα参与拟南芥和水稻植物中的油菜素类固醇(BR)反应。在这项研究中,我们使用有缺陷的Gα基因突变体T65d1对水稻Gα在BR反应中的作用进行了全面分析。 T65d1突变体中对24-表油菜素内酯(24-epiBL)的敏感性下降在许多检查过的过程中都观察到,例如在抑制根的生长和促进胚芽鞘的延长。 T65d1突变体还显示出与BR缺陷型突变体相似的表型,例如在黑暗条件下特异性缩短的第二节间和本构性光形态发生生长表型。但是,在T65d1突变体中观察到24-epiBL对BR生物合成基因表达的负反馈作用,并且BR中间体的水平在该突变体中没有波动。为了确定T65d1突变体和水稻BR受体突变体的弱等位基因d61-7之间的上位关系,将两个突变体杂交。除种子的垂直长度和种子重量外,T65d1 / d61-7双重突变体在节间的伸长抑制,节间的伸长方式,叶片角度和叶片形态异常方面均未表现出上位性。我们的结果表明,水稻Gα影响BR信号级联反应,但Gα可能不是BRI1介导的感知/转导中的信号分子。

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