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Rethinking competence in marine life cycles: ontogenetic changes in the settlement response of sand dollar larvae exposed to turbulence

机译:重新思考海洋生命周期中的能力:遭受湍流的沙钱幼虫沉降响应的个体发育变化

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Complex life cycles have evolved independently numerous times in marine animals as well as in disparate algae. Such life histories typically involve a dispersive immature stage followed by settlement and metamorphosis to an adult stage on the sea floor. One commonality among animals exhibiting transitions of this type is that their larvae pass through a ‘precompetent’ period in which they do not respond to localized settlement cues, before entering a ‘competent’ period, during which cues can induce settlement. Despite the widespread existence of these two phases, relatively little is known about how larvae transition between them. Moreover, recent studies have blurred the distinction between the phases by demonstrating that fluid turbulence can spark precocious activation of competence. Here, we further investigate this phenomenon by exploring how larval interactions with turbulence change across ontogeny, focusing on offspring of the sand dollar Dendraster excentricus (Eschscholtz). Our data indicate that larvae exhibit increased responsiveness to turbulence as they get older. We also demonstrate a likely cost to precocious competence: the resulting juveniles are smaller. Based upon these findings, we outline a new, testable conception of competence that has the potential to reshape our understanding of larval dispersal and connectivity among marine populations.
机译:在海洋动物以及不同的藻类中,复杂的生命周期已经独立演化了无数次。这样的生活史通常涉及分散的未成熟阶段,随后是沉降和变态,直到海床成年阶段。在表现出这种转变的动物中,一个共同点是,幼虫在进入“有能力”时期之前会经历一个“有能力的”时期,在此之前,它们对局部的定居线索没有反应,在此之前,这些线索会诱发定居。尽管这两个阶段广泛存在,但关于它们之间的幼虫如何过渡的了解相对较少。此外,最近的研究表明流体湍流会激发能力的过早激活,从而模糊了阶段之间的区别。在这里,我们通过研究幼虫与湍流的相互作用如何在整个个体发育过程中发生变化来进行研究,重点是沙钱树Dendraster excentricus(Eschscholtz)的后代。我们的数据表明,随着年龄的增长,幼虫对湍流的反应性增强。我们还证明了早熟能力的可能代价:幼鱼较小。基于这些发现,我们概述了一种新的,可检验的能力概念,该概念可能会重塑我们对海洋种群之间幼体扩散和连通性的理解。

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