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首页> 外文期刊>Behavioral Ecology and Sociobiology >The web architecture ofLatrodectus hesperusblack widow spiders (Araneae: Theridiidae) shows genetic variation and sexual dimorphism, but no plasticity according to the experience of the site of prey capture
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The web architecture ofLatrodectus hesperusblack widow spiders (Araneae: Theridiidae) shows genetic variation and sexual dimorphism, but no plasticity according to the experience of the site of prey capture

机译:Web建筑oflatrodectus hesperusblack widow spiders(Araneae:theridiidae)显示遗传变异和性二晶,但没有根据猎物捕获部位的经验的可塑性

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Animals create extended phenotypes to adaptively modify and interact with their environment. Animals also respond to changes in the environment by adaptively modifying their behavior or body in a process called phenotypic plasticity. Extended phenotypes might be especially prone to plasticity as they are often the products of behavior. We tested for plasticity in black widow web architecture in response to long-term variation in prey capture location. We also estimated genetic variation, genetic variation in plasticity, and sexual dimorphism in web architecture. We found no overall plasticity in response to variation in prey capture location. However, web architecture differed between spider families, and spider families differed in their plastic response. Web architecture also differed between male and female spiders, and male and female spiders differed in their plastic response. We conclude that black widows do not adjust web architecture in response to long-term inputs from the external environment and that internal inputs are responsible for more of the variation in web architecture than external inputs. We suggest that in order to fully understand variation in extended phenotypes, it is important to investigate potential environmental and physiological or genetic sources of variation, and to examine these potential sources at different time scales. Significance statement Animals can alter their extended phenotypes in response to short- or long-term variation in the external environment, or to internal sources of variation, such as genetic variation or sexual dimorphism. Studies asking how extended phenotypes vary at more than one time scale and that simultaneously test for variation due to different sources of variation are rare. Here, we ask how an extended phenotype varies in response to environmental variation at short and long time scales, whether the extended phenotype has a genetic component of variation, and whether the extended phenotype is sexually dimorphic. We found that the extended phenotype did not respond to long-term environmental variation but did differ in response to all tested internal inputs. These results suggest that variation in extended phenotypes should be considered at multiple time scales and across external and internal sources of variation.
机译:动物产生扩展的表型,以便自适应地修改和互动。动物还通过在称为表型可塑性的过程中自适应修改其行为或身体来响应环境的变化。扩展表型可能特别容易呈现可塑性,因为它们通常是行为的产物。我们针对猎物捕获位置的长期变化来测试黑色寡妇网络架构的可塑性。我们还估计了遗传变异,可塑性的遗传变异,以及网络架构中的性二态性。我们发现没有整体可塑性响应猎物捕获位置的变化。然而,蜘蛛家庭之间的网络架构不同,蜘蛛家庭在其塑料反应中不同。网络架构也有所不同,男女蜘蛛之间也有所不同,而男性和女性蜘蛛在塑料反应中不同。我们得出结论,黑寡妇不响应外部环境的长期输入而调整Web架构,内部输入负责Web架构的更多变化而不是外部输入。我们建议为了完全理解扩展表型的变化,重要的是调查潜在的环境和生理或遗传源的变异,并在不同的时间尺度检查这些潜在来源。重要性陈述动物可以响应外部环境的短期或长期变化,或内部变异源,例如遗传变异或性二晶来改变其扩展表型。研究询问扩展表型如何在多次规模上变化,并且由于不同的变化来源同时测试变化是罕见的。在这里,我们询问扩展表型如何响应于短期和长时间尺度的环境变化而变化,延伸表型是否具有变异的遗传组分,以及延伸表型是否是性二态的。我们发现扩展表型没有响应长期的环境变化,但对所有测试的内部投入有所不同。这些结果表明,扩展表型的变化应在多个时间尺度和外部和内部变化源中考虑。

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