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首页> 外文期刊>Plant physiology >Loose Plant Architecture1, an INDETERMINATE DOMAIN protein involved in SHOOT GRAVITROPISM, regulates plant architecture in rice
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Loose Plant Architecture1, an INDETERMINATE DOMAIN protein involved in SHOOT GRAVITROPISM, regulates plant architecture in rice

机译:松散的植物构架1,一种与SHOT GRAVITROPISM有关的不确定域蛋白,调节水稻的植物构架

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Tiller angle and leaf angle are two important components of rice (Oryza sativa) plant architecture that play a crucial role in determining grain yield. Here, we report the cloning and characterization of the Loose Plant Architecture1 (LPA1) gene in rice, the functional ortholog of the AtIDD15/SHOOT GRAVITROPISM5 (SGR5) gene in Arabidopsis (Arabidopsis thaliana). LPA1 regulates tiller angle and leaf angle by controlling the adaxial growth of tiller node and lamina joint. LPA1 was also found to affect shoot gravitropism. Expression pattern analysis suggested that LPA1 influences plant architecture by affecting the gravitropism of leaf sheath pulvinus and lamina joint. However, LPA1 only influences gravity perception or signal transduction in coleoptile gravitropism by regulating the sedimentation rate of amyloplasts, distinct from the actions of LAZY1. LPA1 encodes a plant-specific INDETERMINATE DOMAIN protein and defines a novel subfamily of 28 INDETERMINATE DOMAIN proteins with several unique conserved features. LPA1 is localized in the nucleus and functions as an active transcriptional repressor, an activity mainly conferred by a conserved ethylene response factor-associated amphiphilic repression-like motif. Further analysis suggests that LPA1 participates in a complicated transcriptional and protein interaction network and has evolved novel functions distinct from SGR5. This study not only facilitates the understanding of gravitropism mechanisms but also generates a useful genetic material for rice breeding.
机译:分iller角和叶角是水稻(Oryza sativa)植物结构的两个重要组成部分,它们在决定谷物产量中起着至关重要的作用。在这里,我们报道了水稻中的宽松植物Architecture1(LPA1)基因的克隆和特征,拟南芥(Arabidopsis thaliana)中AtIDD15 / SHOOT GRAVITROPISM5(SGR5)基因的功能直系同源基因。 LPA1通过控制分er节和叶片关节的近侧生长来调节分er角和叶角。 LPA1还被发现会影响芽的向心性。表达模式分析表明,LPA1通过影响叶片鞘层和叶片关节的重力作用影响植物结构。但是,LPA1仅通过调节淀粉状体的沉降速率来影响胚芽鞘引力作用中的重力感知或信号转导,这与LAZY1的作用不同。 LPA1编码一种植物特异的INDETERMINATE DOMAIN蛋白,并定义了28个INDETERMINATE DOMAIN蛋白的新亚家族,具有几个独特的保守特征。 LPA1位于细胞核中,并起活性转录阻遏物的作用,该活性主要由保守的乙烯反应因子相关的两亲阻遏样基序赋予。进一步的分析表明,LPA1参与了复杂的转录和蛋白质相互作用网络,并发展出不同于SGR5的新功能。这项研究不仅有助于人们了解引力机制,而且为水稻育种提供了有用的遗传材料。

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