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Mitochondrial Dynamics in Plant Male Gametophyte Visualized by Fluorescent Live Imaging

机译:荧光实时成像可视化植物雄配子体中的线粒体动力学

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Visualization of organelles in living cells is a powerful method for studying their dynamic behavior. Here we attempted to visualize mitochondria in angiosperm male gametophyte (pollen grain from Arabidopsis thaliana) that are composed of one vegetative cell (VC) and two sperm cells (SCs). Combination of mitochondria-targeted fluorescent proteins with VC- or SC-specific expression allowed us to observe the precise number and dynamic behavior of mitochondria in the respective cell types. Furthermore, live imaging of SC mitochondria during double fertilization confirmed previous observations, demonstrated by electron microscopy in other species, that sperm mitochondria enter into the egg and central cells. We also attempted to visualize mutant mitochondria that were elongated due to a defect in mitochondrial division. This mutant phenotype was indeed detectable in VC mitochondria of a heterozygous F1 plant, suggesting active mitochondrial division in male gametophyte. Finally, we performed mutant screening and isolated a putative mitochondrial protein transport mutant whose phenotype was detectable only in haploid cells. The transgenic materials presented in this work are useful not only for live imaging but also for studying mitochondrial functions by mutant analysis.
机译:活细胞中细胞器的可视化是研究其动态行为的有力方法。在这里,我们试图可视化被子植物雄配子体(来自拟南芥的花粉粒)中的线粒体,后者由一个营养细胞(VC)和两个精子细胞(SC)组成。线粒体靶向荧光蛋白与VC或SC特异性表达的结合,使我们能够观察到相应细胞类型中线粒体的精确数量和动态行为。此外,双受精过程中SC线粒体的实时成像证实了先前的观察结果,其他种类的电子显微镜也证实了这一点,即精子线粒体进入了卵和中央细胞。我们还试图可视化由于线粒体分裂缺陷而拉长的突变型线粒体。在杂合子F 1 植物的VC线粒体中确实可以检测到这种突变表型,表明雄配子体中线粒体的活跃分裂。最后,我们进行了突变体筛选,并分离出仅在单倍体细胞中可检测到表型的假定的线粒体蛋白转运突变体。这项工作中介绍的转基因材料不仅可用于实时成像,还可用于通过突变分析研究线粒体功能。

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  • 来源
    《Plant and Cell Physiology》 |2008年第7期|p.1074-1083|共10页
  • 作者单位

    1 Research Institute for Bioresources, Okayama University, Kurashiki, Okayama, 710-0046 Japan 2 Department of Biological Sciences, Graduate School of Science, University of Tokyo, Hongo, Tokyo, 113-0033 Japan 3 Division of Biological Science, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8602 Japan 4 Laboratory of Plant Molecular Genetics, Graduate School of Agricultural and Life Sciences, University of Tokyo, Bunkyo-ku, Tokyo, 113-8657 Japan 5 College of Life Sciences, Peking University, Beijing 100871, PR China;

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