Can females differentially allocate resources to offspring sired by different males?

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Samantha T Levell, Samuel A Bedgood, Joseph Travis, David N Reznick
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Abstract

The viviparity-driven conflict hypothesis postulates that the evolution of matrotrophy (postfertilization maternal provisioning) will result in a shift from a pre- to postcopulatory mate choice and thus accelerate the evolution of postcopulatory reproductive isolation. Here, we perform artificial insemination experiments on Heterandria formosa, a matrotrophic poeciliid fish, to probe for evidence of postcopulatory female choice. We established laboratory populations from Wacissa River (WR) and Lake Jackson (LJ). The WR females normally produce larger offspring than the LJ females. We artificially inseminated females with sperm from each population or from both populations simultaneously. When LJ females were inseminated with sperm from WR and LJ males, they allocated fewer resources to WR-sired offspring than when they were inseminated with WR sperm alone. The LJ females carrying developing offspring sired by males from different populations were thus able to discriminate against non-resident males when allocating resources to developing young. The WR females, which normally produce larger offspring than LJ females, did not discriminate among males from different localities. These findings provide insights into the ability of females from one population to exercise a form of postcopulatory mate selection.
雌性能否为不同雄性所生的后代分配不同的资源?
胎生冲突假说(viviparity-driven conflict hypothesis)假定,母性营养(受精后的母性供给)的进化将导致交配前配偶选择向交配后配偶选择的转变,从而加速交配后生殖隔离的进化。在此,我们对一种母性营养不良的栉水母进行了人工授精实验,以探寻繁殖后雌性选择的证据。我们在瓦奇萨河(Wacissa River,WR)和杰克逊湖(Lake Jackson,LJ)建立了实验室种群。WR雌鱼通常比LJ雌鱼产下更大的后代。我们用来自两个种群或同时来自两个种群的精子对雌性进行人工授精。当 LJ 雌性用来自 WR 和 LJ 雄性的精子进行人工授精时,与只用 WR 精子进行人工授精相比,它们分配给 WR 生育的后代的资源更少。因此,怀有不同种群雄性所生发育中后代的 LJ 雌性在向发育中的幼体分配资源时,能够对非本地雄性进行区分。WR雌性通常比LJ雌性能产生更大的后代,但WR雌性对来自不同地方的雄性却没有区别对待。这些发现让我们了解到,来自一个种群的雌性有能力进行一种繁殖后的配偶选择。
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
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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