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首页> 外文期刊>Plant and cell physiology >Loss-of-Function Mutations in the Arabidopsis Heterotrimeric G-protein l Subunit Enhance the Developmental Defects of Brassinosteroid Signaling and Biosynthesis Mutants.
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Loss-of-Function Mutations in the Arabidopsis Heterotrimeric G-protein l Subunit Enhance the Developmental Defects of Brassinosteroid Signaling and Biosynthesis Mutants.

机译:拟南芥异三聚体G蛋白l亚基的功能丧失突变增强了油菜素类固醇信号传导和生物合成突变体的发育缺陷。

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摘要

Loss-of-function alleles of the sole heterotrimeric G-protein l subunit in Arabidopsis, GPA1, display defects in cell proliferation throughout plant development. Previous studies indicated that GPA1 is involved in brassinosteroid (BR) response. Here we provide genetic evidence that loss-of-function mutations in GPA1, gpa1-2 and gpa1-4, enhance the developmental defects of bri1-5, a weak allele of a BR receptor mutant, and det2-1, a BR-deficient mutant in Arabidopsis. gpa1-2 bri1-5 and gpa1-4 det2-1 double mutants had shorter hypocotyls, shorter roots and fewer lateral roots, and displayed more severe dwarfism than bri1-5 and det2-1 single mutants, respectively. By using the Arabidopsis hypocotyl as a model system where the parameters of cell division and cell elongation can be simultaneously measured, we found that gpa1 can specifically enhance the cell division defects of bri1-5 and det2-1 mutants. Similarly, gpa1 specifically enhances cell division defects in the primary roots of bri1-5 and det2-1 mutants. Furthermore, an additive effect on cell division between gpa1 and bri1-5 or det2-1 mutations was observed in the hypocotyls, whereas a synergistic effect was observed in the roots. Taken together, these results provided the first genetic evidence that G-protein- and BR-mediated pathways may be converged to modulate cell proliferation in a cell/tissue-specific manner.
机译:拟南芥中唯一的异源三聚体G蛋白l亚基的功能丧失等位基因在整个植物发育过程中均表现出细胞增殖缺陷。先前的研究表明GPA1参与油菜素类固醇(BR)反应。在这里,我们提供了遗传证据,表明GPA1,gpa1-2和gpa1-4中的功能丧失突变增强了BR受体突变体的弱等位基因bri1-5和BR缺陷的det2-1的发育缺陷。拟南芥中的突变体。 gpa1-2 bri1-5和gpa1-4 det2-1双重突变体分别具有较短的下胚轴,较短的根和较少的侧根,并且显示出比bri1-5和det2-1单一突变体更严重的侏儒症。通过使用拟南芥下胚轴作为可同时测量细胞分裂和细胞伸长参数的模型系统,我们发现gpa1可以特异性增强bri1-5和det2-1突变体的细胞分裂缺陷。同样,gpa1特异性增强bri1-5和det2-1突变体的初生根中的细胞分裂缺陷。此外,在下胚轴中观察到了对gpa1和bri1-5或det2-1突变之间的细胞分裂的累加效应,而在根中观察到了协同效应。综上所述,这些结果提供了第一个遗传学证据,即G蛋白和BR介导的途径可能会以细胞/组织特异性方式聚合来调节细胞增殖。

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