Sexual dimorphic effects of a keystone predator on prey communities

生物 捕食 性二态性 绿背蜱 生态学 两栖动物 尾状 Triturus公司 捕食者 蝾螈科 性别选择 变形 动物 梯形物种 栖息地 幼虫 再生(生物学) 细胞生物学
作者
Jon M. Davenport,Alan M. Babineau,Reese K. Sloan,Autumn Groesbeck,Ali J. Montazeri,Matthew Ramey
出处
期刊:Ecology [Wiley]
卷期号:106 (1): e4530-e4530 被引量:3
标识
DOI:10.1002/ecy.4530
摘要

The importance of trait variation has long been recognized in ecological and evolutionary research. The divergence of sexually dimorphic traits (e.g., body size, morphology, behavior, etc.) is primarily attributed to sexual selection, and sexual dimorphism can have consequences for diets and habitat use. Recent evidence for one aquatic predator species (adult newts; Notophthalmus viridescens) suggests that trait differences and habitat partitioning between the sexes may be important in structuring zooplankton communities. However, newts are known to increase amphibian diversity within pond communities via keystone predation. Yet, no data are available on differentiating potentially sexually dimorphic effects of newts on larval amphibian communities. Thus, we conducted a series of mesocosm experiments to determine the effects of sexual dimorphism of adult newts on larval amphibian communities. Based on previous work with newts and zooplankton, we hypothesized that male and female newts would have differing effects on prey communities. We found that female newts consumed one prey species more than male newts did and no newt treatments. There were no differences between the sexes in prey consumption of another prey species. Size at metamorphosis was greater in the presence of newts (either male or female) for wood frogs and in the presence of female newts for spotted salamanders in comparison with no newt treatments. Our findings indicate that sexual dimorphism within a known keystone predator can have differential effects on prey. Indeed, our results indicate that while the effects of predators on one response (survival) can differ between sexes, the impacts on another response (prey fitness; measured as size at metamorphosis) were similar. Our research to understand the effects of sexual dimorphism is timely as sex ratios of predators may become skewed in nature due to anthropogenic change. If intraspecific differences exist via top-down effects, then downstream impacts on prey communities may go unnoticed.
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