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Phenotype-dependent selection underlies patterns of sorting across habitats: the case of stream-fishes

机译:表型依赖的选择是跨境分类模式的下潜模式:溪流的情况

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Spatial and temporal heterogeneity within landscapes influences the distribution and phenotypic diversity of individuals both within and across populations. Phenotype-habitat correlations arise either through phenotypes within an environment altering through the process of natural selection or plasticity, or phenotypes remaining constant but individuals altering their distribution across environments. The mechanisms of non-random movement and phenotype-dependent habitat choice may account for associations within highly heterogeneous systems, such as streams, where local adaptation may be negated, plasticity too costly and movement is particularly important. Despite growing attention, however, few empirical tests have yet to be conducted. Here we provide a test of phenotype-dependent habitat choice and ask: 1) if individuals collected from a single habitat type continue to select original habitat; 2) if decisions are phenotype-dependent and functionally related to habitat requirements; and 3) if phenotypic-sorting continues despite increasing population density. To do so we both conducted experimental trials manipulating the density of four stream-fish species collected from either a single riffle or pool and developed a game-theoretical model exploring the influence of individuals' growth rate, sampling and competitive abilities as well as interference on distribution across two habitats as a function of density. Our experimental trials show individuals selecting original versus alternative habitats differed in their morphologies, that morphologies were functionally related to habitat-type swimming demands, and that phenotypic-sorting remained significant (although decreased) as density increased. According to our model this only occurs when phenotypes have contrasting habitat preferences and only one phenotype disperses (i.e. selects alternatives) in response to density pressures. This supports our explanation that empirical habitat selection was due to a combination of collecting a fraction of mobile individuals with different habitat preferences and the exclusion of individuals via scramble competition at increased densities. Phenotype-dependent habitat choice can thereby account for observed patterns of natural stream-fish distribution.
机译:景观中的空间和时间异质性影响人群内部和跨越人群的分布和表型多样性。表型 - 栖息地相关性通过通过自然选择或可塑性改变的环境中改变的环境中的表型,或剩下的表型,但个人在环境中改变它们的分布。非随机运动和表型依赖性栖息地选择的机制可以解释高度异构的系统中的关联,例如流的流,其中局部适应可能被否定,塑性过于昂贵,运动尤为重要。然而,尽管注意力不断受到关注,但尚未进行少数实证测试。在这里,我们提供了表型依赖栖息地选择并问:1)如果从单一栖息地类型收集的个体继续选择原始栖息地; 2)如果决策是表型依赖性,并且与栖息地要求有关; 3)如果表型分类尽管增加人口密度,则仍在继续。为此,我们都进行了操作试验,操纵从单个Riffle或游泳池收集的四种流鱼类的密度,并开发了一种探索个人增长率,采样和竞争能力的影响的游戏理论模型以及干扰作为密度的函数分布在两个栖息地。我们的实验试验表明,选择原始的栖息地的个人在其形态中不同,这种形态与栖息地游泳需求有关,并且表型排序仍然显着(虽然减少),因为密度增加。根据我们的型号,只有在表型具有对比的栖息地偏好并且只有一种表型分散症(即选择替代品)时,才会发生这种情况。这支持我们的解释,即经验栖息地选择是由于收集了不同栖息地偏好的一部分移动人员,并通过加剧竞争在增加的密度下排除个人。因此,可以考虑到观察到的自然流鱼分布模式。

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