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关键资源竞争能力的演变。

The evolution of competitive ability for essential resources.

机构信息

Aquatic Ecology Department, Eawag, Überlandstrasse 133, CH-8600 Dübendorf, Switzerland.

School of Biological and Chemical Sciences, Queen Mary University of London, Mile End Road, London E1 4NS, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2020 May 11;375(1798):20190247. doi: 10.1098/rstb.2019.0247. Epub 2020 Mar 23.

Abstract

Competition for limiting resources is among the most fundamental ecological interactions and has long been considered a key driver of species coexistence and biodiversity. Species' minimum resource requirements, their *s, are key traits that link individual physiological demands to the outcome of competition. However, a major question remains unanswered-to what extent are species' competitive traits able to evolve in response to resource limitation? To address this knowledge gap, we performed an evolution experiment in which we exposed for approximately 285 generations to seven environments in chemostats that differed in resource supply ratios (including nitrogen, phosphorus and light limitation) and salt stress. We then grew the ancestors and descendants in a common garden and quantified their competitive abilities for essential resources. We investigated constraints on trait evolution by testing whether changes in resource requirements for different resources were correlated. Competitive abilities for phosphorus improved in all populations, while competitive abilities for nitrogen and light increased in some populations and decreased in others. In contrast to the common assumption that there are trade-offs between competitive abilities for different resources, we found that improvements in competitive ability for a resource came at no detectable cost. Instead, improvements in competitive ability for multiple resources were either positively correlated or not significantly correlated. Using resource competition theory, we then demonstrated that rapid adaptation in competitive traits altered the predicted outcomes of competition. These results highlight the need to incorporate contemporary evolutionary change into predictions of competitive community dynamics over environmental gradients. This article is part of the theme issue 'Conceptual challenges in microbial community ecology'.

摘要

竞争是最基本的生态相互作用之一,长期以来一直被认为是物种共存和生物多样性的关键驱动因素。物种的最小资源需求,即它们的限制因素,是将个体生理需求与竞争结果联系起来的关键特征。然而,一个主要问题仍然没有得到解答——物种的竞争特征在多大程度上能够适应资源限制而进化?为了解决这一知识空白,我们进行了一项进化实验,在 285 代左右的时间里,我们将 暴露于化学恒化器中的七种环境中,这些环境在资源供应比例(包括氮、磷和光限制)和盐胁迫方面存在差异。然后,我们在一个共同的花园中种植祖先和后代,并量化它们对必需资源的竞争能力。我们通过测试不同资源的需求变化是否相关来研究性状进化的限制。所有种群的磷竞争能力都有所提高,而氮和光的竞争能力在一些种群中增加,在另一些种群中减少。与不同资源的竞争能力之间存在权衡的普遍假设相反,我们发现,对一种资源的竞争能力的提高并没有带来可检测到的成本。相反,对多种资源的竞争能力的提高要么是正相关的,要么没有显著相关。然后,我们利用资源竞争理论证明了竞争特征的快速适应改变了竞争的预测结果。这些结果强调了需要将当代进化变化纳入环境梯度上竞争群落动态的预测中。本文是“微生物群落生态学中的概念挑战”主题问题的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75b1/7133530/0a61636f5f8f/rstb20190247-g1.jpg

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