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Nonlinear frequency-dependent selection promotes long-term coexistence between bacteria species

机译:非线性频率依赖性选择促进细菌种类之间的长期共存

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摘要

Negative frequency-dependent selection (NFDS) is an important mechanism for species coexistence and for the maintenance of genetic polymorphism. Long-term coexistence nevertheless requires NFDS interactions to be resilient to further evolution of the interacting species or genotypes. For closely related genotypes, NFDS interactions have been shown to be preserved through successive rounds of evolution in coexisting lineages. On the contrary, the evolution of NFDS interactions between distantly related species has received less attention. Here, we tracked the co-evolution of Escherichia coli and Citrobacter freundii that initially differ in their ecological characteristics. We showed that these two bacterial species engaged in an NFDS interaction particularly resilient to further evolution: despite a very strong asymmetric rate of adaptation, their coexistence was maintained owing to an NFDS pattern where fitness increases steeply as the frequency decreases towards zero. Using a model, we showed how and why such NFDS pattern can emerge. These findings provide a robust explanation for the long-term maintenance of species at very low frequencies.
机译:负频依赖性选择(NFDS)是物种共存和维持遗传多态性的重要机制。然而,长期共存需要NFDS相互作用,以适应相互作用物种或基因型的进一步演变。对于密切相关的基因型,已经显示NFDS相互作用通过共存谱系的连续轮流来保存。相反,NFDS在远处相关物种之间的相互作用的演变得到了不太关注。在这里,我们履行了大肠杆菌和柑橘菌的共同演变,其最初在其生态特征中不同。我们表明,这两种细菌物种从事NFDS相互作用特别适合进一步的进化:尽管存在非常强的适应率,但由于NFDS图案,它们的共存保持在频率朝向零时的适应性急剧增加。使用模型,我们展示了如何以及为何可以出现这种NFDS模式。这些发现提供了一种稳健的解释,用于在非常低的频率下进行物种的长期维护。

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