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一个模型适应性辐射中多样化的生态限制

Ecological constraints on diversification in a model adaptive radiation.

作者信息

Kassen Rees, Llewellyn Martin, Rainey Paul B

机构信息

Department of Plant Sciences, University of Oxford, South Parks Road, Oxford OX1 3RB, UK.

出版信息

Nature. 2004 Oct 21;431(7011):984-8. doi: 10.1038/nature02923.

Abstract

Taxonomic diversification commonly occurs through adaptive radiation, the rapid evolution of a single lineage into a range of genotypes or species each adapted to a different ecological niche. Radiation size (measured as the number of new types) varies widely between phylogenetically distinct taxa and between replicate radiations within a single taxon where the ecological opportunities available seem to be identical. Here we show how variation in energy input (productivity) and environmental disturbance combine to determine the extent of diversification in a single radiating lineage of Pseudomonas fluorescens adapting to laboratory conditions. Diversity peaked at intermediate rates of both productivity and disturbance and declined towards the extremes in a manner reminiscent of well-known ecological patterns. The mechanism responsible for the decrease in diversity arises from pleiotropic fitness costs associated with niche specialization, the effects of which are modulated by gradients of productivity and disturbance. Our results indicate that ecological gradients may constrain the size of adaptive radiations, even in the presence of the strong diversifying selection associated with ecological opportunity, by decoupling evolutionary diversification from ecological coexistence.

摘要

分类学上的多样化通常通过适应性辐射发生,即单一谱系迅速进化为一系列适应不同生态位的基因型或物种。辐射规模(以新类型的数量衡量)在系统发育上不同的分类群之间以及在单一分类群内的重复辐射之间差异很大,而这些重复辐射所处的生态机会似乎是相同的。在这里,我们展示了能量输入(生产力)的变化和环境干扰如何共同作用,以确定适应实验室条件的荧光假单胞菌单一辐射谱系中的多样化程度。多样性在生产力和干扰的中间速率时达到峰值,并在向极端情况发展时下降,这种方式让人联想到著名的生态模式。多样性减少的机制源于与生态位特化相关的多效性适应度代价,其影响受生产力和干扰梯度的调节。我们的结果表明,生态梯度可能会限制适应性辐射的规模,即使存在与生态机会相关的强烈多样化选择,因为它会使进化多样化与生态共存脱钩。

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