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首页> 外文期刊>Plant physiology >Analysis of leaf development in fugu mutants of Arabidopsis reveals three compensation modes that modulate cell expansion in determinate organs
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Analysis of leaf development in fugu mutants of Arabidopsis reveals three compensation modes that modulate cell expansion in determinate organs

机译:分析拟南芥中fugu突变体的叶片发育揭示了三种补偿模式,可调节决定器官中的细胞扩增

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In multicellular organisms, the coordination of cell proliferation and expansion is fundamental for proper organogenesis, yet the molecular mechanisms involved in this coordination are largely unexplored. In plant leaves, the existence of this coordination is suggested by compensation, in which a decrease in cell number triggers an increase in mature cell size. To elucidate the mechanisms of compensation, we isolated five new Arabidopsis (Arabidopsis thaliana) mutants (fugu1 -fugu5) that exhibit compensation. These mutants were characterized together with angustifolia3 (an3), erecta (er), and a KIP-RELATED PROTEIN2 (KRP2) overexpressor, which were previously reported to exhibit compensation. Time-course analyses of leaf development revealed that enhanced cell expansion in fugu2-1, fugu5-1, an3-4, and er-102 mutants is induced postmitotically, indicating that cell enlargement is not caused by the uncoupling of cell division from cell growth. In each of the mutants, either the rate or duration of cell expansion was selectively enhanced. In contrast, we found that enhanced cell expansion in KRP2 overexpressor occurs during cell proliferation. We further demonstrated that enhanced cell expansion occurs in cotyledons with dynamics similar to that in leaves. In contrast, cell expansion was not enhanced in roots even though they exhibit decreased cell numbers. Thus, compensation was confirmed to occur preferentially in determinate organs. Flow cytometric analyses revealed that increases in ploidy level are not always required to trigger compensation, suggesting that compensation is only partially mediated by ploidy-dependent processes. Our results suggest that compensation reflects an organ-wide coordination of cell proliferation and expansion in determinate organs, and involves at least three different expansion pathways.
机译:在多细胞生物中,细胞增殖和扩增的协调对于适当的器官发生是至关重要的,但是参与这种协调的分子机制在很大程度上尚待探索。在植物叶片中,这种协调作用通过补偿来暗示,其中细胞数量的减少会触发成熟细胞大小的增加。为了阐明补偿机制,我们分离了五个显示补偿的拟南芥(Arabidopsis thaliana)突变体(fugu1-fugu5)。这些突变体与angustifolia3(an3),erecta(er)和KIP相关蛋白2(KRP2)过表达子一起进行了表征,以前报道它们表现出补偿作用。叶片发育的时程分析表明,有丝分裂后诱导了fugu2-1,fugu5-1,an3-4和er-102突变体中增强的细胞扩增,这表明细胞扩增不是由细胞分裂与细胞生长的解偶联引起的。在每个突变体中,细胞扩增的速率或持续时间被选择性地提高。相反,我们发现在KRP2过表达子中细胞增殖增强。我们进一步证明,子叶中的细胞扩增增强,其动力学类似于叶中的动力学。相反,即使根部细胞数减少,其根部细胞的扩增也没有增强。因此,证实了补偿在确定的器官中优先发生。流式细胞仪分析表明,并非总是需要增加倍性水平来触发补偿,这表明补偿仅部分地由倍性依赖性过程介导。我们的结果表明,补偿反应反映了整个器官在确定器官中细胞增殖和扩增的协调性,并且涉及至少三种不同的扩增途径。

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