Yamaoka Shohei, Leaver Christopher J
Department of Plant Sciences, University of Oxford, Oxford OX1 3RB, United Kingdom.
Plant Cell. 2008 Mar;20(3):589-601. doi: 10.1105/tpc.107.055756. Epub 2008 Mar 14.
The regulation of mitochondrial biogenesis, subcellular distribution, morphology, and metabolism are essential for all aspects of plant growth and development. However, the molecular mechanisms involved are still unclear. Here, we describe an analysis of the three Arabidopsis thaliana orthologs of the evolutionarily conserved Miro GTPases. Two of the genes, MIRO1 and MIRO2, are transcribed ubiquitously throughout the plant tissues, and their gene products localize to mitochondria via their C-terminal transmembrane domains. While insertional mutations in the MIRO2 gene do not have any visible impact on plant development, an insertional mutation in the MIRO1 gene is lethal during embryogenesis at the zygote to four-terminal-cell embryo stage. It also substantially impairs pollen germination and tube growth. Laser confocal and transmission electron microscopy revealed that the miro1 mutant pollen exhibits abnormally enlarged or tube-like mitochondrial morphology, leading to the disruption of continuous streaming of mitochondria in the growing pollen tube. Our findings suggest that mitochondrial morphology is influenced by MIRO1 and plays a vital role during embryogenesis and pollen tube growth.
线粒体生物发生、亚细胞分布、形态和代谢的调控对于植物生长发育的各个方面都至关重要。然而,其中涉及的分子机制仍不清楚。在这里,我们描述了对进化上保守的米罗(Miro)GTP酶的三个拟南芥直系同源物的分析。其中两个基因,即MIRO1和MIRO2,在整个植物组织中普遍转录,并且它们的基因产物通过其C端跨膜结构域定位于线粒体。虽然MIRO2基因中的插入突变对植物发育没有任何明显影响,但MIRO1基因中的插入突变在胚胎发育的合子到四细胞胚阶段是致死的。它还严重损害花粉萌发和花粉管生长。激光共聚焦显微镜和透射电子显微镜显示,miro1突变体花粉表现出线粒体形态异常增大或呈管状,导致生长中的花粉管中线粒体的连续流动中断。我们的研究结果表明,线粒体形态受MIRO1影响,并且在胚胎发生和花粉管生长过程中起着至关重要的作用。