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Characterization of a Null Allelic Mutant of the Rice NAL1 Gene Reveals Its Role in Regulating Cell Division

机译:水稻NAL1基因的一个零等位基因突变体的表征揭示了其在调节细胞分裂中的作用。

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摘要

Leaf morphology is closely associated with cell division. In rice, mutations in Narrow leaf 1 (NAL1) show narrow leaf phenotypes. Previous studies have shown that NAL1 plays a role in regulating vein patterning and increasing grain yield in indica cultivars, but its role in leaf growth and development remains unknown. In this report, we characterized two allelic mutants of NARROW LEAF1 (NAL1), nal1-2 and nal1-3, both of which showed a 50% reduction in leaf width and length, as well as a dwarf culm. Longitudinal and transverse histological analyses of leaves and internodes revealed that cell division was suppressed in the anticlinal orientation but enhanced in the periclinal orientation in the mutants, while cell size remained unaltered. In addition to defects in cell proliferation, the mutants showed abnormal midrib in leaves. Map-based cloning revealed that nal1-2 is a null allelic mutant of NAL1 since both the whole promoter and a 404-bp fragment in the first exon of NAL1 were deleted, and that a 6-bp fragment was deleted in the mutant nal1-3. We demonstrated that NAL1 functions in the regulation of cell division as early as during leaf primordia initiation. The altered transcript level of G1- and S-phase-specific genes suggested that NAL1 affects cell cycle regulation. Heterogenous expression of NAL1 in fission yeast (Schizosaccharomyces pombe) further supported that NAL1 affects cell division. These results suggest that NAL1 controls leaf width and plant height through its effects on cell division.
机译:叶片形态与细胞分裂密切相关。在水稻中,窄叶1(NAL1)中的突变显示出窄叶表型。先前的研究表明,NAL1在调节vein稻品种的静脉格局和增加谷物产量中发挥作用,但在叶片生长和发育中的作用仍然未知。在此报告中,我们表征了NARROW LEAF1(NAL1)的两个等位基因突变体nal1-2和nal1-3,它们都显示出叶宽和叶长减少了50%,并且茎秆变矮。叶片和节间的纵向和横向组织学分析表明,突变体的细胞分裂在抗倾斜方向上受到抑制,而在周边缘方向上有所增强,而细胞大小保持不变。除细胞增殖缺陷外,突变体在叶片中显示出异常的中脉。基于图谱的克隆显示nal1-2是NAL1的无效等位基因突变体,因为整个启动子和NAL1第一个外显子中的404 bp片段都被删除,而在nal1突变体中删除了6 bp片段。 3。我们证明了NAL1早在叶片原基启动过程中就在细胞分裂的调节中起作用。 G1和S期特异性基因的转录水平改变表明NAL1影响细胞周期调控。裂变酵母(裂殖酵母)中NAL1的异源表达进一步支持了NAL1影响细胞分裂。这些结果表明,NAL1通过影响细胞分裂来控制叶片宽度和植物高度。

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