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Overexpression of OsIAAGLU reveals a role for IAA-glucose conjugation in modulating rice plant architecture

机译:Osiaaglu的过度表达揭示了IAA-葡萄糖缀合在调节水稻植物建筑中的作用

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Key messageOsIAAGLU could catalyze the reaction of IAA with glucose to generate IAA-glucose. Overexpression of OsIAAGLU in rice resulted in altered rice shoot architecture and root gravitropism.AbstractThe distribution and levels of indole-3-acetic acid (IAA) within plant tissues are well known to play vital roles in plant growth and development. An important mechanism of regulating free IAA levels in monocots is formation of IAA ester conjugates. In this study, a cytosol-localized protein encoded by the rice gene of indole-3-acetic acid glucosyltransferase (OsIAAGLU) was found to catalyze the reaction of free IAA with glucose to generate IAA-glucose. Expression of OsIAAGLU could be induced by IAA and NAA. The number of tillers and leaf angle was significantly increased with a concomitant decrease in plant height and panicle length in the transgenic rice lines overexpressing OsIAAGLU compared to the wild-type (WT) plants. Phenotypes of iaaglu mutants constructed using the CRISPR/Cas9 system had no obvious differences with WT plants. Furthermore, overexpression of OsIAAGLU resulted in reduced sensitivity to IAA/NAA and altered gravitropic response of the roots in the transgenic plants. Free IAA contents in the leaves, root tips, and lamina joint of OsIAAGLU-overexpressing transgenic lines were lower than those of WT plants. These results support that OsIAAGLU could play a regulatory role in IAA homeostasis and rice architecture.
机译:关键的MessageSiaAGLU可以催化IAA与葡萄糖的反应产生IAA-葡萄糖。水稻中Osiaaglu的过度表达导致了稻米射击建筑和根船舶造成的改变。众所周知,植物组织内吲哚-3-乙酸(IAA)的分布和水平在植物生长和发育中起重要作用。调节单焦炭IAA水平的重要机制是IAA酯缀合物的形成。在该研究中,发现由吲哚-3-乙酸葡糖基转移酶(OsiaAGLU)的水稻基因编码的细胞溶剂局部化蛋白质催化自由IAA与葡萄糖产生IAA-葡萄糖的反应。 OSIAAGLU的表达可以由IAA和NAA诱导。与野生型(WT)植物相比,在转基因水稻管中的植物高度和穗长度伴随的植物高度和穗长度伴随地减少了分蘖和叶角的数量。使用CRISPR / CAS9系统构建的IAAGLU突变体的表型与WT植物没有明显的差异。此外,OSIAAGLU的过表达导致对IAA / NAA的敏感性降低,并改变了转基因植物中根的重力响应。叶片,根尖和osiaaaglu过表达转基因系的叶子,根尖和薄膜接头的免费IAA内容物低于WT植物的叶片。这些结果支持,奥斯卡卢可以在IAA稳态和稻米建筑中发挥监管作用。

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