首页> 外文期刊>Plant physiology >Analysis of the rice mutant dwarf and gladius leaf 1. Aberrant katanin-mediated microtubule organization causes up-regulation of gibberellin biosynthetic genes independently of gibberellin signaling
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Analysis of the rice mutant dwarf and gladius leaf 1. Aberrant katanin-mediated microtubule organization causes up-regulation of gibberellin biosynthetic genes independently of gibberellin signaling

机译:水稻突变体矮化和叶片叶片的分析1.异常的katanin介导的微管组织导致赤霉素生物合成基因的上调独立于赤霉素信号传导

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Molecular genetic studies of plant dwarf mutants have indicated that gibberellin (GA) and brassinosteroid ( BR) are two major factors that determine plant height; dwarf mutants that are caused by other defects are relatively rare, especially in monocot species. Here, we report a rice ( Oryza sativa) dwarf mutant, dwarf and gladius leaf 1 (dgl1), which exhibits only minimal response to GA and BR. In addition to the dwarf phenotype, dgl1 produces leaves with abnormally rounded tip regions. Positional cloning of DGL1 revealed that it encodes a 60-kD microtubule-severing katanin-like protein. The protein was found to be important in cell elongation and division, based on the observed cell phenotypes. GA biosynthetic genes are up-regulated in dgl1, but the expression of BR biosynthetic genes is not enhanced. The enhanced expression of GA biosynthetic genes in dgl1 is not caused by inappropriate GA signaling because the expression of these genes was repressed by GA 3 treatment, and degradation of the rice DELLA protein SLR1 was triggered by GA 3 in this mutant. Instead, aberrant microtubule organization caused by the loss of the microtubule-severing function of DGL1 may result in enhanced expression of GA biosynthetic genes in that enhanced expression was also observed in a BR-deficient mutant with aberrant microtubule organization. These results suggest that the function of DGL1 is important for cell and organ elongation in rice, and aberrant DGL1-mediated microtubule organization causes up-regulation of gibberellin biosynthetic genes independently of gibberellin signaling.
机译:植物矮化突变体的分子遗传学研究表明,赤霉素(GA)和油菜素甾体(BR)是决定植物高度的两个主要因素。由其他缺陷引起的矮化突变体相对较少,尤其是在单子叶植物中。在这里,我们报道了一个水稻(Oryza sativa)矮化突变体,矮化和剑兰叶片1(dgl1),它对GA和BR的响应很小。除矮表型外,dgl1产生的叶尖区域异常圆滑。 DGL1的位置克隆表明,它编码一个60 kD的切断微管的单宁样蛋白。根据观察到的细胞表型,发现该蛋白在细胞延长和分裂中很重要。 GA生物合成基因在dgl1中上调,但BR生物合成基因的表达未增强。 dgl1中GA生物合成基因表达的增强不是由不适当的GA信号引起的,因为这些基因的表达受到GA 3处理的抑制,并且水稻DELLA蛋白SLR1的降解由该突变体中的GA 3触发。相反,由DGL1的微管切断功能丧失引起的异常微管组织可能会导致GA生物合成基因的表达增强,因为在具有异常微管组织的BR缺陷型突变体中也观察到了增强的表达。这些结果表明,DGL1的功能对于水稻的细胞和器官伸长很重要,而异常的DGL1介导的微管组织会引起赤霉素生物合成基因的上调,而与赤霉素的信号传导无关。

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