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首页> 外文期刊>Journal of Experimental Botany >The RICE MINUTE-LIKE1 (RML1) gene, encoding a ribosomal large subunit protein L3B, regulates leaf morphology and plant architecture in rice
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The RICE MINUTE-LIKE1 (RML1) gene, encoding a ribosomal large subunit protein L3B, regulates leaf morphology and plant architecture in rice

机译:RICE MINUTE-LIKE1(RML1)基因编码核糖体大亚基蛋白L3B,可调节水稻的叶片形态和植物结构

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A rice ribosome large subunit protein 3B gene is identified, mutation of which causes abnormal plant architecture. This is the first characterization of a ribosomal protein involved in monocot plant development.Mutations of ribosomal proteins (RPs) are known to cause developmental abnormalities in yeast, mammals, and dicotyledonous plants; however, their effects have not been studied in rice. Here, we identifiy a ribosomal biogenesis mutant, rice minute-like1 (rml1) that displays a minute phenotype as evidenced by retarded growth and defects in the vascular system. We determine that RML1 encodes a ribosome large subunit protein 3B (RPL3B) in rice by means of map-based cloning and genetic complementation. RPL3B is abundantly expressed in all the tissues, whereas RPL3A, another RPL3 gene family member, is expressed at low levels. Notably, the expression level of RPL3A in the rml1 mutant is similar to that in the wild-type, suggesting that RPL3A provides no functional compensation for RPL3B in rml1 plants. Ribosomal profiles show that mutation of RPL3B leads to a significant reduction in free 60S ribosomal subunits and polysomes, indicating a ribosomal insufficiency in the rml1 mutant. Our results demonstrate that the ribosomal protein gene RPL3B is required for maintaining normal leaf morphology and plant architecture in rice through its regulation of ribosome biogenesis.
机译:鉴定出水稻核糖体大亚基蛋白3B基因,其突变导致植物结构异常。这是参与单子叶植物发育的核糖体蛋白的第一个特征。已知核糖体蛋白(RPs)的突变会导致酵母,哺乳动物和双子叶植物的发育异常。但是,尚未在水稻中研究其作用。在这里,我们确定了一个核糖体生物发生突变体,水稻分钟样1(rml1),表现出分钟表型,这由生长迟缓和血管系统缺陷所证明。我们确定RML1通过基于图的克隆和遗传互补在水稻中编码核糖体大亚基蛋白3B(RPL3B)。 RPL3B在所有组织中都大量表达,而另一个RPL3基因家族成员RPL3A则低水平表达。值得注意的是,rml1突变体中RPL3A的表达水平与野生型中的相似,这表明RPL3A在rml1植物中没有为RPL3B提供功能补偿。核糖体谱显示,RPL3B突变导致游离60S核糖体亚基和多核糖体的显着减少,表明rml1突变体中存在核糖体功能不全。我们的研究结果表明,核糖体蛋白基因RPL3B是通过调节核糖体生物发生来维持水稻正常叶片形态和植物结构所必需的。

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