首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Shared ancestry influences community stability by altering competitive interactions: evidence from a laboratory microcosm experiment using freshwater green algae
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Shared ancestry influences community stability by altering competitive interactions: evidence from a laboratory microcosm experiment using freshwater green algae

机译:共同的祖先通过改变竞争相互作用来影响社区的稳定性:使用淡水绿藻进行的实验室缩影实验的证据

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摘要

The impact of biodiversity on the stability of ecological communities has been debated among biologists for more than a century. Recently summarized empirical evidence suggests that biodiversity tends to enhance the temporal stability of community-level properties such as biomass; however, the underlying mechanisms driving this relationship remain poorly understood. Here, we report the results of a microcosm study in which we used simplified systems of freshwater microalgae to explore how the phylogenetic relatedness of species influences the temporal stability of community biomass by altering the nature of their competitive interactions. We show that combinations of two species that are more evolutionarily divergent tend to have lower temporal stability of biomass. In part, this is due to negative ‘selection effects’ in which bicultures composed of distantly related species are more likely to contain strong competitors that achieve low biomass. In addition, bicultures of distantly related species had on average weaker competitive interactions, which reduced compensatory dynamics and decreased the stability of community biomass. Our results demonstrate that evolutionary history plays a key role in controlling the mechanisms, which give rise to diversity–stability relationships. As such, patterns of shared ancestry may help us predict the ecosystem-level consequences of biodiversity loss.
机译:生物学家对生物多样性对生态社区稳定性的影响已经争论了一个多世纪。最近总结的经验证据表明,生物多样性往往会增强诸如生物量之类的社区级财产的时间稳定性。但是,驱动这种关系的基本机制仍然知之甚少。在这里,我们报告了微观研究的结果,其中我们使用了淡水微藻类的简化系统来探索物种的系统发育相关性如何通过改变其竞争性相互作用的性质来影响群落生物量的时间稳定性。我们表明,进化上更趋同的两个物种的组合往往具有较低的生物量的时间稳定性。在某种程度上,这是由于负面的“选择效应”所致,在这种效应中,由远缘物种组成的双培养物更可能包含实现低生物量的强大竞争者。此外,远缘物种的双培养平均竞争性较弱,从而降低了补偿动态并降低了群落生物量的稳定性。我们的结果表明,进化史在控制机制中起着关键作用,这导致了多样性与稳定性之间的关系。因此,共同谱系的模式可以帮助我们预测生物多样性丧失对生态系统造成的后果。

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