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Mitochondria-driven cell elongation mechanism for competing sperms.

机译:用于竞争精子的线粒体驱动的细胞伸长机制。

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摘要

Sexual competition has selected a number of extreme phenotypes like the tail ornament of peacock male. Sperm tail of Drosophilidae elongate up to 6 cm as a result of evolutionary selection for reproductive fitness among competing sperms. Sperm elongation takes place post meiotically and can proceed in the absence of an axoneme. Here, we used primary cultures of elongating spermatids of D. melanogaster to demonstrate that sperm elongation is driven by interdependent extension of giant mitochondria and microtubule array that is formed around the mitochondrial surface. This work established that, in addition to functioning as an energy source, mitochondria can serve as internal skeleton for shaping cell morphology.
机译:性竞争选择了一些极端的表型,例如孔雀雄性的尾巴装饰。果蝇科的精子尾巴可延长至6厘米,这是竞争性精子间进化适应性选择的结果。精子伸长发生在减数分裂后,可以在没有轴突的情况下进行。在这里,我们使用了D. melanogaster精子伸长的原代培养来证明,精子的伸长是由巨大的线粒体和围绕线粒体表面形成的微管阵列相互依存的延伸所驱动的。这项工作证明,除了起能量源的作用外,线粒体还可以充当塑造细胞形态的内部骨架。

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