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The causes of variation in tree seedling traits: The roles of environmental selection versus chance

机译:树苗性状变异的原因:环境选择与机会的作用

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A key aspect of biodiversity is the great quantitative variation in functional traits observed among species. One perspective asserts that trait values should converge on a single optimum value in a particular selective environment, and consequently trait variation would reflect differences in selective environment, and evolutionary outcomes would be predictable. An alternative perspective asserts that there are likely multiple alternative optima within a particular selective environment, and consequently different lineages would evolve toward different optima due to chance. Because there is evidence for both of these perspectives, there is a long-standing controversy over the relative importance of convergence due to environmental selection versus divergence due to chance in shaping trait variation. Here, I use a model of tree seedling growth and survival to distinguish trait variation associated with multiple alternative optima from variation associated with environmental differences. I show that variation in whole plant traits is best explained by environmental differences, whereas in organ level traits variation is more affected by alternative optima. Consequently, I predict that in nature variation in organ level traits is most closely related to phylogeny, whereas variation in whole plant traits is most closely related to ecology.
机译:生物多样性的一个重要方面是物种间观察到的功能性状在数量上的巨大差异。一种观点认为,特质值应在特定的选择性环境中收敛于单个最佳值,因此,性状变异将反映选择性环境中的差异,并且进化结果是可预测的。另一种观点认为,在一个特定的选择性环境中可能存在多个最佳选择,因此由于偶然性,不同的世系将朝着不同的最佳方向发展。因为有这两种观点的证据,关于环境选择导致的趋同与因塑造性状变异而产生的趋异之间的相对重要性存在着长期的争论。在这里,我使用树木幼苗生长和存活的模型来区分与多个替代最优方案相关的性状变异与与环境差异相关的变异。我表明,通过环境差异可以最好地解释整个植物性状的变异,而在器官水平性状中的变异更受替代性最优方式的影响。因此,我预测自然界中器官水平性状的变化与系统发育关系最密切,而整株植物性状的变化与生态关系最密切。

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