首页> 外文期刊>Plant and cell physiology >Two WUSCHEL-related homeobox genes, narrow leaf2 and narrow leaf3, control leaf width in rice.
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Two WUSCHEL-related homeobox genes, narrow leaf2 and narrow leaf3, control leaf width in rice.

机译:两个与WUSCHEL相关的同源异型框基因,即窄叶2和窄叶3,可控制水稻的叶宽。

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Leaf shape is one of the key determinants of plant architecture. Leaf shape also affects the amount of sunlight captured and influences photosynthetic efficiency; thus, it is an important agronomic trait in crop plants. Understanding the molecular mechanisms governing leaf shape is a central issue of plant developmental biology and agrobiotechnology. Here, we characterized the narrow-leaf phenotype of FL90, a linkage tester line of rice (Oryza sativa). Light and scanning electron microscopic analyses of FL90 leaves revealed defects in the development of marginal regions and a reduction in the number of longitudinal veins. The narrow-leaf phenotype of FL90 shows a two-factor recessive inheritance and is caused by the loss of function of two WUSCHEL-related homeobox genes, NAL2 and NAL3 (NAL2/3), which are duplicate genes orthologous to maize NS1 and NS2 and to Arabidopsis PRS. The overexpression of NAL2/3 in transgenic rice plants results in wider leaves containing increased numbers of veins, suggesting that NAL2/3 expression regulates leaf width. Thus, NAL2/3 can be used to modulate leaf shape and improve agronomic yield in crop plants.Digital Object Identifier http://dx.doi.org/10.1093/pcp/pct032
机译:叶的形状是决定植物结构的关键因素之一。叶的形状还影响捕获的阳光量并影响光合作用效率。因此,它是农作物的重要农艺性状。了解控制叶片形状的分子机制是植物发育生物学和农业生物技术的核心问题。在这里,我们表征了水稻(Oryza sativa)的连锁试验系FL90的窄叶表型。 FL90叶片的光镜和扫描电镜分析显示边缘区域发育缺陷和纵向脉管数量减少。 FL90的窄叶表型表现出两因子隐性遗传,是由两个WUSCHEL相关同源框基因NAL2和NAL3(NAL2 / 3)的功能丧失引起的,这两个基因与玉米NS1和NS2和拟南芥PRS。转基因水稻植株中NAL2 / 3的过表达导致叶片变宽,叶片中的叶脉数量增加,这表明NAL2 / 3的表达调节了叶的宽度。因此,NAL2 / 3可用于调节作物植物的叶片形状并提高农艺产量。数字对象标识符http://dx.doi.org/10.1093/pcp/pct032

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