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生殖器的快速进化和可塑性。

Rapid evolution and plasticity of genitalia.

机构信息

Department of Biology and Graduate Degree Program in Ecology, Colorado State University, Fort Collins, CO, USA.

Department of Biology, St. Ambrose University, Davenport, IA, USA.

出版信息

J Evol Biol. 2020 Oct;33(10):1361-1370. doi: 10.1111/jeb.13700. Epub 2020 Sep 25.

Abstract

Genital morphology exhibits tremendous variation and is intimately linked with fitness. Sexual selection, nonmating natural selection and neutral forces have been explored as potential drivers of genital divergence. Though less explored, genitalia may also be plastic in response to the developmental environment. In poeciliid fishes, the length of the male intromittent organ, the gonopodium, may be driven by sexual selection if longer gonopodia attract females or aid in forced copulation attempts or by nonmating natural selection if shorter gonopodia allow predator evasion. The rearing environment may also affect gonopodium development. Using an experimental introduction of Trinidadian guppies into four replicate streams with reduced predation risk, we tested whether this new environment caused the evolution of genitalia. We measured gonopodium length after rearing the source and introduced populations for two generations in the laboratory to remove maternal and other environmental effects. We split full-sibling brothers into different rearing treatments to additionally test for developmental plasticity of gonopodia in response to predator cues and food levels as well as the evolution of plasticity. The introduced populations had shorter gonopodia after accounting for body size, demonstrating rapid genital evolution in 2-3 years (8-12 generations). Brothers reared on low food levels had longer gonopodia relative to body size than those on high food, reflecting maintenance of gonopodium length despite a reduction in body size. In contrast, gonopodium length was not significantly different in response to the presence or absence of predator cues. Because the plastic response to low food was maintained between the source and introduced populations, there was no evidence that plasticity evolved. This study demonstrates the importance of both evolution and developmental plasticity in explaining genital variation.

摘要

生殖器形态表现出巨大的变异性,与适应度密切相关。性选择、非交配自然选择和中性力量被认为是生殖器分歧的潜在驱动因素。虽然研究较少,但生殖器也可能对发育环境具有可塑性。在胎生鱂科鱼类中,如果较长的交接器吸引雌性或有助于强制交配尝试,那么雄性交接器的长度可能受到性选择的驱动;如果较短的交接器允许逃避捕食者,那么可能受到非交配自然选择的驱动。养殖环境也可能影响交接器的发育。通过将特立尼达孔雀鱼引入四个具有降低捕食风险的重复溪流中进行实验,我们测试了这种新环境是否导致了生殖器的进化。我们在实验室中对来源和引入种群进行了两代的养殖,以消除母体和其他环境影响,然后测量了交接器的长度。我们将全同胞兄弟分为不同的养殖处理,以进一步测试针对捕食者线索和食物水平的交接器发育可塑性以及可塑性的进化。引入种群的交接器长度在考虑到体型后较短,表明在 2-3 年内(8-12 代)快速发生了生殖器进化。与高食物水平相比,低食物水平下饲养的兄弟交接器相对于体型更长,这反映了尽管体型缩小,但仍维持交接器长度。相比之下,交接器长度对捕食者线索的存在与否没有显著差异。由于对低食物的可塑性反应在来源和引入种群之间得以维持,因此没有证据表明可塑性发生了进化。本研究表明,进化和发育可塑性在解释生殖器变异方面都很重要。

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