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Fluorescent sperm offer a method for tracking the real-time success of ejaculates when they compete to fertilise eggs

机译:荧光精子提供一种跟踪射精竞争使卵受精的实时成功率的方法

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摘要

Despite intensive research effort, many uncertainties remain in the field of gamete-level sexual selection, particularly in understanding how sperm from different males interact when competing for fertilisations. Here, we demonstrate the utility of broadcast spawning marine invertebrates for unravelling these mysteries, highlighting their mode of reproduction and, in some species, unusual patterns of mitochondrial inheritance. We present a method utilising both properties in the blue mussel, Mytilus galloprovincialis. In mytilids and many other bivalves, both sperm and egg mitochondria are inherited. We exploit this, using the vital mitochondrial dye MitoTracker, to track the success of sperm from individual males when they compete with those from rivals to fertilise eggs. We confirm that dying mitochondria has no adverse effects on in vitro measures of sperm motility (reflecting mitochondrial energetics) or sperm competitive fertilisation success. Therefore, we propose the technique as a powerful and logistically tractable tool for sperm competition studies. Importantly, our method allows the competitive fertilisation success of sperm from any male to be measured directly and disentangled from confounding effects of post-fertilisation embryo survival. Moreover, the mitochondrial dye has broader applications in taxa without paternal mitochondrial inheritance, for example by tracking the dynamics of competing ejaculates prior to fertilisation.
机译:尽管进行了深入的研究,但在配子水平的性选择领域仍存在许多不确定性,尤其是在了解不同男性的精子在竞争受精时如何相互作用方面。在这里,我们展示了广播产卵的无脊椎动物在揭示这些奥秘中的作用,突出了它们的繁殖方式,以及在某些物种中线粒体遗传的异常模式。我们提出了一种利用蓝贻贝Mytilus galloprovincialis中的两种特性的方法。在Mytilids和许多其他双壳类动物中,精子和卵线粒体都是遗传的。我们利用重要的线粒体染料MitoTracker来利用这一点,以追踪雄性个体与竞争对手竞争的精子成功受精的卵子。我们确认,垂死的线粒体对精子活力的体外测量(反映线粒体能量)或精子竞争性受精没有不利影响。因此,我们提出了该技术作为精子竞争研究的有力且逻辑上易处理的工具。重要的是,我们的方法可以直接测量来自任何雄性的精子的竞争性受精成功,并且不受受精后胚胎存活的混杂影响的影响。此外,线粒体染料在没有父系线粒体遗传的类群中具有更广泛的应用,例如通过跟踪受精前竞争性射精的动力学。

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