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The evolution of siderophore production as a competitive trait

机译:西参产量的演变为竞争特征

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Microbes have the potential to be highly cooperative organisms. The archetype of microbial cooperation is often considered to be the secretion of siderophores, molecules scavenging iron, where cooperation is threatened by “cheater” genotypes that use siderophores without making them. Here, we show that this view neglects a key piece of biology: siderophores are imported by specific receptors that constrain their use by competing strains. We study the effect of this specificity in an ecoevolutionary model, in which we vary siderophore sharing among strains, and compare fully shared siderophores with private siderophores.We show that privatizing siderophores fundamentally alters their evolution. Rather than a canonical cooperative good, siderophores become a competitive trait used to pillage iron from other strains. We also study the physiological regulation of siderophores using in silico long-term evolution. Although shared siderophores evolve to be downregulated in the presence of a competitor, as expected for a cooperative trait, privatized siderophores evolve to be upregulated. We evaluate these predictions using published experimental work, which suggests that some siderophores are upregulated in response to competition akin to competitive traits like antibiotics. Although siderophores can act as a cooperative good for single genotypes, we argue that their role in competition is fundamental to understanding their biology.
机译:微生物有可能成为高度合作的生物。微生物合作的原型通常被认为是Sigherophores的分泌物,分子清除铁,其中合作受到施工电池的“骗子”基因型威胁的威胁。在这里,我们表明,这种观点忽略了一个钥匙生物学:施工会通过竞争菌株来限制其使用的特异性受体。我们研究了这种特殊性在生态发展模型中的效果,我们在菌株之间改变了司法尔分享,并与私人施工区比较了完全共用的施工小丘。我们展示了私有化的铁道,从根本上改变了他们的进化。 Siderophores而不是规范合作良好,而且是竞争性的特质,用于掠夺来自其他菌株的掠夺。我们还研究了在Silico长期演进中使用SiersoChores的生理调节。虽然共享的Siderophores在竞争对手的情况下发展到竞争对手的情况下,但是对于合作特质的预期,私有化的铁童发展成为上调。我们使用已发表的实验工作评估这些预测,这表明一些散发体是响应类似于抗生素等竞争性状的竞争性竞争而上调。虽然Siderophores可以作为单一基因型的合作效果,但我们认为他们在竞争中的作用是理解他们的生物学的基础。

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