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Genetic analysis of rice mutants responsible for narrow leaf phenotype and reduced vein number

机译:水稻窄叶表型和脉数减少的突变体的遗传分析

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Leaves are a major site for photosynthesis and a key determinant of plant architecture. Rice produces thin and slender leaves, which consist of the leaf blade and leaf sheath separated by the lamina joint. Two types of vasculature, the large and small vascular bundles, run in parallel, together with a strong structure, the midrib. In this paper, we examined the function of four genes that regulate the width of the leaf blade and the vein number NARROW LEAF1 (NAL1), NAL2, NAL3 and NAL7. We backcrossed original mutants of these genes with the standard wild-type rice, Taichung 65. We then compared the effect of each mutation on similar genetic backgrounds and examined genetic interactions of these genes. The nal1 single mutation and the nal2 nal3 double mutation showed a severe effect on leaf width, resulting in very narrow leaves. Although vein number was also reduced in the nal1 and nal2 nal3 mutants, the small vein number was more strongly reduced than the large vein number. In contrast, the nal7 mutation showed a milder effect on leaf width and vein number, and both the large and small veins were similarly affected. Thus, the genes responsible for narrow leaf phenotype seem to play distinct roles. The nal7 mutation showed additive effects on both leaf width and vein number, when combined with the nal1 single or the nal2 nal3 double mutation. In addition, observations of inner tissues revealed that cell differentiation was partially compromised in the nal2 nal3 nal7 mutant, consistent with the severe reduction in leaf width in this triple mutant.
机译:叶子是光合作用的主要场所,也是决定植物结构的关键因素。水稻产生的叶片细长而细长,由叶片和叶鞘组成,叶片和叶片的鞘层被关节隔开。两种类型的脉管系统(大血管束和小血管束)并行运行,并具有牢固的结构即中脉。在本文中,我们检查了调节叶片宽度和静脉数NARROW LEAF1(NAL1),NAL2,NAL3和NAL7的四个基因的功能。我们将这些基因的原始突变体与标准野生型水稻台中65回交了杂交。然后,我们比较了每个突变体对相似遗传背景的影响,并研究了这些基因的遗传相互作用。 nal1单突变和nal2 nal3双突变显示出对叶宽的严重影响,导致叶片非常狭窄。尽管在nal1和nal2 nal3突变体中静脉数目也减少了,但小静脉数目比大静脉数目减少得更多。相反,nal7突变显示出对叶宽和叶脉数的影响较小,并且大叶脉和小叶脉都受到类似的影响。因此,负责窄叶表型的基因似乎起着不同的作用。当与nal1单突变或nal2 nal3双突变结合时,nal7突变对叶宽和叶脉数均显示累加效应。此外,对内部组织的观察表明,nal2 nal3 nal7突变体的细胞分化受到部分损害,这与该三重突变体的叶宽严重减少相一致。

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