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Sperm chemotaxis is driven by the slope of the chemoattractant concentration field

机译:精子趋化性由趋化剂浓度场的斜率驱动

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摘要

Spermatozoa of marine invertebrates are attracted to their conspecific female gamete by diffusive molecules, called chemoattractants, released from the egg investments in a process known as chemotaxis. The information from the egg chemoattractant concentration field is decoded into intracellular Ca concentration ([Ca ] ) changes that regulate the internal motors that shape the flagellum as it beats. By studying sea urchin species-specific differences in sperm chemoattractant-receptor characteristics we show that receptor density constrains the steepness of the chemoattractant concentration gradient detectable by spermatozoa. Through analyzing different chemoattractant gradient forms, we demonstrate for the first time that sperm are chemotactic and this response is consistent with frequency entrainment of two coupled physiological oscillators: i) the stimulus function and ii) the [Ca ] changes. We demonstrate that the slope of the chemoattractant gradients provides the coupling force between both oscillators, arising as a fundamental requirement for sperm chemotaxis.
机译:海洋无脊椎动物的精子被称为化学趋向剂的扩散分子(称为趋化性)从卵投资中释放出来,吸引到它们的雌性配子上。来自卵趋化因子浓度场的信息被解码为细胞内Ca浓度([Ca])的变化,这些变化可调节鞭毛形成的内部运动。通过研究海胆物种在精子趋化因子-受体特征上的特异性差异,我们发现受体密度限制了精子可检测到的趋化剂浓度梯度的陡度。通过分析不同的趋化性梯度形式,我们首次证明了精子具有趋化性,并且该反应与两个耦合的生理振荡器的频率夹带一致:i)刺激功能和ii)[Ca]变化。我们证明了趋化性梯度的斜率提供了两个振荡器之间的耦合力,这是精子趋化性的基本要求。

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