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SD3, an Arabidopsis thaliana Homolog of TIM21, Affects Intracellular ATP Levels and Seedling Development

机译:SD3,TIM21的拟南芥同源基因,影响细胞内ATP水平和幼苗发育

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摘要

It is poorly understood how plants control their growth by cell division, elongation, and differentiation. We have characterized a seedling-lethal mutant segregation distortion 3 (sd3) that showed a very dwarf phenotype when grown in the light and, in the dark, had short hypocotyls with reduced ploidy levels. The corresponding gene of SD3 encodes a protein with high similarity to yeast translocase on the inner mitochondrial membrane 21 (TIM21), which is a component of the TIM23 complex. Indeed, SD3 protein fused to GFP localized in the mitochondria. SD3 overexpression increased cotyledon size in the light and hypocotyl thickness in the dark. The expression of genes for several subunits of the respiratory-chain complexes III and IV was up-regulated in SD3-overexpressing plants. Furthermore, these plants showed high levels of ATP whereas those of sd3 were low. These results suggested that SD3 induced an increase in cell size by raising the expression of the respiratory-chain subunit genes and hence increased the intracellular ATP levels. We propose that intracellular ATP levels regulated by mitochondria control plant organ size.
机译:人们对植物如何通过细胞分裂,伸长和分化控制生长的了解很少。我们已经表征了幼苗致死突变体分离畸变3(sd3),当在光下生长时表现出非常矮的表型,在黑暗中具有短的胚轴,倍性水平降低。 SD3的相应基因编码的蛋白与线粒体内膜21(TIM21)上的酵母转位酶具有高度相似性,后者是TIM23复合体的组成部分。实际上,与GFP融合的SD3蛋白位于线粒体中。 SD3过表达增加了子叶大小,在黑暗中增加了子叶大小,在黑暗中增加了下胚轴的厚度。在过表达SD3的植物中,呼吸链复合物III和IV的几个亚基的基因表达被上调。此外,这些植物显示出高水平的ATP,而sd3则低。这些结果表明,SD3通过增加呼吸链亚基基因的表达诱导细胞大小的增加,从而增加了细胞内ATP的水平。我们建议线粒体调节细胞内ATP水平控制植物器官的大小。

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  • 来源
    《Molecular Plant》 |2012年第2期|p.461-471|共11页
  • 作者

    Minami Matsui;

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    To whom correspondence should be addressed. E-mail;

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