Evolution and co-evolution of the suck behaviour, a postcopulatory female resistance trait that manipulates received ejaculate.

IF 4.5 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2025-03-26 DOI:10.1186/s12915-025-02171-5
Pragya Singh, Jeremias N Brand, Lukas Schärer
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Abstract

Background: Sexual conflicts over the post-mating fate of received ejaculate can favour traits in one sex that are costly to the other. Reciprocally mating hermaphrodites face unique challenges as they mate simultaneously in both the male and female role, potentially leading to receipt of unwanted ejaculate. Reciprocal mating can then give rise to postcopulatory female resistance traits that allow manipulation of received ejaculate. A putative example is the suck behaviour, observed in the flatworm genus Macrostomum. It involves the sperm recipient placing its pharynx over its own female genital opening and appearing to suck, likely removing received ejaculate after mating. The genus also contains hypodermically inseminating species that presumably exhibit unilateral mating and have not been observed to suck.

Results: Here, we examine the evolution of the suck behaviour in the Macrostomum genus, aiming to document the mating behaviour in 64 species. First, we provide videographic evidence that ejaculate is indeed removed during the suck behaviour in a reciprocally mating species, Macrostomum hamatum. Next, we show positive evolutionary correlations between the presence, duration and frequency of reciprocal mating behaviour and the suck behaviour, providing clear evidence that the suck behaviour co-evolves with reciprocal mating behaviour. Finally, we show an association between reproductive behaviour and reproductive morphology, suggesting that the reproductive morphology can be used to infer a species' mating behaviour.

Conclusions: Together, our study demonstrates sexually antagonistic coevolution leading to the evolution of a postcopulatory behavioural trait that functions as a female counter-adaptation allowing individuals to gain control over received ejaculate in a hermaphroditic sexual system.

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吮吸行为的进化和共同进化,这是一种交配后雌性抵抗特征,可以操纵接收到的射精。
背景:在交配后收到的射精的命运上的性冲突可能有利于一方的特征,而对另一方来说代价高昂。双向交配的雌雄同体面临着独特的挑战,因为它们同时以男性和女性的身份交配,可能会导致收到不想要的射精。互惠交配可以引起交配后雌性的抵抗特征,允许操纵接收到的射精。一个假定的例子是在大口扁虫属中观察到的吸吮行为。它包括精子接受者将其咽放在自己的女性生殖器开口上,并表现出吮吸的样子,很可能在交配后将收到的射精取出来。该属还包括皮下授精的物种,可能表现为单侧交配,没有观察到吮吸。结果:本文研究了大气孔属植物吸乳行为的进化过程,记录了64种大气孔属植物的交配行为。首先,我们提供录像证据,射精确实是在吸吮行为中去除在一个互惠交配的物种,巨口鳄。接下来,我们展示了互惠交配行为的存在、持续时间和频率与吮吸行为之间的正进化相关性,为吮吸行为与互惠交配行为共同进化提供了明确的证据。最后,我们展示了生殖行为和生殖形态之间的联系,表明生殖形态可以用来推断一个物种的交配行为。结论:总之,我们的研究表明,性拮抗性共同进化导致了交配后行为特征的进化,这种行为特征作为一种雌性反适应的功能,允许个体在雌雄同体的性系统中获得对接收射精的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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