Department of Life Sciences, Liaocheng University, Liaocheng 252059, Shandong, China.
Curr Genet. 2010 Apr;56(2):101-7. doi: 10.1007/s00294-010-0291-5. Epub 2010 Feb 24.
In animal mitochondrial DNA inheritance, it remains largely unclear where the mitochondrial genetic bottleneck localizes and how it works in rewinding Müller's ratchet. In a variety of different animals germ plasm mRNAs typically aggregate along with numerous mitochondria to form the mitochondrial cloud (MC) during oogenesis. The MC has been found to serve as messenger transport organizer for germ plasm mRNAs. Germ plasm RNAs in MC will specifically distribute to the primordial germ cells of the future embryo. It has been proposed that the MC might be the site where selected mitochondria accumulate for specific transmission to grandchildren but this idea received relatively little attention and the criterion by which mitochondria are selected remains unknown. Our recent results in zebrafish provided further evidence for selective mitochondria accumulation in the MC by showing that mitochondria with high-inner membrane potential tend to be recruited preferentially into the MC, and these mitochondria are transported along with germ plasm to the cortex of the vegetal pole. By analyzing the composition, behavior and functions of the MC, and in reviewing related literature, we found strong support for the proposition that the MC corresponds to the position and function of the mitochondrial genetic bottleneck.
在动物线粒体 DNA 遗传中,线粒体遗传瓶颈的定位及其在 Muller 棘轮倒转中的作用仍在很大程度上不清楚。在各种不同的动物中,生殖质 mRNA 通常与大量线粒体一起聚集,在卵子发生过程中形成线粒体云(MC)。已经发现 MC 充当生殖质 mRNA 的信使运输组织者。MC 中的生殖质 RNA 将特异性分配到未来胚胎的原始生殖细胞中。有人提出,MC 可能是选择线粒体积累的部位,以便向孙辈进行特定传递,但这个想法并没有得到太多关注,选择线粒体的标准仍然未知。我们最近在斑马鱼中的研究结果进一步提供了证据,表明 MC 中存在选择性的线粒体积累,因为具有高内膜电位的线粒体更容易被优先招募到 MC 中,这些线粒体与生殖质一起被运输到植物极皮层。通过分析 MC 的组成、行为和功能,并回顾相关文献,我们发现有强有力的证据支持 MC 对应于线粒体遗传瓶颈的位置和功能的观点。