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Intraspecific genotypic richness and relatedness predict the invasibility of microbial communities

机译:种内基因型丰富性和相关性预测微生物群落的入侵性

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摘要

Biological invasions can lead to extinction events in resident communities and compromise ecosystem functioning. We tested the effect of two widespread biodiversity measurements, genotypic richness and genotypic dissimilarity on community invasibility. We manipulated the genetic structure of bacterial communities (Pseudomonas fluorescens) and submitted them to invasion by Serratia liquefaciens. We show that the two diversity measures impact on invasibility via distinct and additive mechanisms. Genotypic dissimilarity of the resident communities linearly increased productivity and in parallel decreased invasion success, indicating that high dissimilarity prevents invasion through niche pre-emption. By contrast, genotypic richness exerted a hump-shaped effect on invasion and was linked to the production of toxins antagonistic to the invader. This effect peaked at intermediate richness, suggesting that high richness levels may increase invasibility. Invasibility could be well predicted by the combination of these two mechanisms, documenting that both genotypic richness and dissimilarity need to be considered, if we are to understand the biotic properties determining the susceptibility of ecosystems to biological invasions.
机译:生物入侵会导致居民社区的灭绝事件并损害生态系统的功能。我们测试了两种广泛的生物多样性测量方法,即基因型丰富度和基因型差异性对社区入侵的影响。我们操纵了细菌群落(荧光假单胞菌)的遗传结构,并将其提交给液化沙雷氏菌入侵。我们表明,这两种多样性措施通过独特的和累加的机制对入侵性产生影响。居民社区的基因型异质性线性地提高了生产率,同时降低了入侵的成功率,这表明高度异质性阻止了通过生态位先占的入侵。相比之下,基因型丰富性对入侵产生了驼峰状的影响,并与产生对抗入侵者的毒素有关。此效应在中等浓郁度时达到顶峰,表明高浓郁度水平可能会增加入侵性。通过这两种机制的结合可以很好地预测入侵性,证明如果我们要了解决定生态系统对生物入侵的敏感性的生物特性,则既要考虑基因型丰富性又要考虑不相似性。

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