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Metabolic rate context‐dependent selection and the competition‐colonization trade‐off

机译:代谢率依赖的选择选择和竞争 - 殖民化权衡

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摘要

Metabolism is linked with the pace‐of‐life, co‐varying with survival, growth, and reproduction. Metabolic rates should therefore be under strong selection and, if heritable, become less variable over time. Yet intraspecific variation in metabolic rates is ubiquitous, even after accounting for body mass and temperature. Theory predicts variable selection maintains trait variation, but field estimates of how selection on metabolism varies are rare. We use a model marine invertebrate to estimate selection on metabolic rates in the wild under different competitive environments. Fitness landscapes varied among environments separated by a few centimeters: interspecific competition selected for higher metabolism, and a faster pace‐of‐life, relative to competition‐free environments. Populations experience a mosaic of competitive regimes; we find metabolism mediates a competition‐colonization trade‐off across these regimes. Although high metabolic phenotypes possess greater competitive ability, in the absence of competitors, low metabolic phenotypes are better colonizers. Spatial heterogeneity and the variable selection on metabolic rates that it generates is likely to maintain variation in metabolic rate, despite strong selection in any single environment.
机译:新陈代谢与生活的步伐相关联,共同不同,生存,生长和繁殖。因此,代谢率应在强烈的选择下,如果遗传,随着时间的推移变得较小。然而,即使在体重和温度算法后,代谢速率的内含性变化也是普遍无处不在的。理论预测可变选择保持特质变异,但是估计代谢的选择如何变化是罕见的。我们使用模型海洋无脊椎动物来估算不同竞争环境下野生代谢率的选择。健身景观在几厘米间隔内的环境中变化:选择更高的新陈代谢的间隙竞争,以及相对于无竞争环境的速度更快。人口体验了竞争制度的马赛克;我们发现新陈代谢在这些政权中调解了竞争殖民化权衡。虽然在没有竞争对手的情况下,高代谢表型具有更高的竞争能力,但低代谢表型是更好的结肠剂。尽管在任何单一环境中选择强烈选择,但它可能会使其产生的代谢速率的空间异质性和变量选择可能会使代谢率的变化保持在代谢率。

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