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Mutation of the Rice Narrow leaf1 Gene Which Encodes a Novel Protein Affects Vein Patterning and Polar Auxin Transport

机译:水稻窄leaf1基因的突变该基因编码一种新蛋白影响静脉模式和极性生长素运输。

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摘要

The size and shape of the plant leaf is an important agronomic trait. To understand the molecular mechanism governing plant leaf shape, we characterized a classic rice (Oryza sativa) dwarf mutant named narrow leaf1 (nal1), which exhibits a characteristic phenotype of narrow leaves. In accordance with reduced leaf blade width, leaves of nal1 contain a decreased number of longitudinal veins. Anatomical investigations revealed that the culms of nal1 also show a defective vascular system, in which the number and distribution pattern of vascular bundles are altered. Map-based cloning and genetic complementation analyses demonstrated that Nal1 encodes a plant-specific protein with unknown biochemical function. We provide evidence showing that Nal1 is richly expressed in vascular tissues and that mutation of this gene leads to significantly reduced polar auxin transport capacity. These results indicate that Nal1 affects polar auxin transport as well as the vascular patterns of rice plants and plays an important role in the control of lateral leaf growth.
机译:植物叶片的大小和形状是重要的农艺性状。为了了解控制植物叶片形状的分子机制,我们鉴定了一个经典水稻(Oryza sativa)矮化突变体,命名为窄叶1(nal1),表现出窄叶的特征表型。根据减小的叶片宽度,nal1的叶子包含减少的纵向静脉。解剖学调查显示,nal1的茎秆还显示出血管系统有缺陷,其中血管束的数量和分布模式发生了变化。基于图的克隆和遗传互补分析表明,Nal1编码具有未知生化功能的植物特异性蛋白质。我们提供的证据表明Nal1在血管组织中大量表达,并且该基因的突变导致极性植物生长素的运输能力大大降低。这些结果表明,Nal1影响极性植物生长素的运输以及水稻的血管模式,并在控制侧叶生长中起重要作用。

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