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Siderophore cheating and cheating resistance shape competition for iron in soil and freshwater Pseudomonas communities

机译:土壤和淡水假单胞菌群落中铁的铁螯合物和抗螯合剂形状竞争

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摘要

All social organisms experience dilemmas between cooperators performing group-beneficial actions and cheats selfishly exploiting these actions. Although bacteria have become model organisms to study social dilemmas in laboratory systems, we know little about their relevance in natural communities. Here, we show that social interactions mediated by a single shareable compound necessary for growth (the iron-scavenging pyoverdine) have important consequences for competitive dynamics in soil and pond communities of Pseudomonas bacteria. We find that pyoverdine non- and low-producers co-occur in many natural communities. While non-producers have genes coding for multiple pyoverdine receptors and are able to exploit compatible heterologous pyoverdines from other community members, producers differ in the pyoverdine types they secrete, offering protection against exploitation from non-producers with incompatible receptors. Our findings indicate that there is both selection for cheating and cheating resistance, which could drive antagonistic co-evolution and diversification in natural bacterial communities.
机译:所有的社会有机体都在合作者之间进行两难的困境,他们进行团体有益的行动,并自欺欺人地利用这些行动。尽管细菌已成为研究实验室系统中社会困境的典型生物,但我们对其在自然社区中的相关性知之甚少。在这里,我们表明,由增长所必需的单个可共享化合物(清除铁的泛碱)介导的社会互动对于假单胞菌细菌和土壤和池塘群落的竞争动态具有重要影响。我们发现,在许多自然社区中,非生产性和非生产性化脓素共同存在。尽管非生产者的基因编码多个吡啶酮受体,并且能够利用其他社区成员兼容的异源吡啶酮,但生产者在分泌的吡啶酮类型上有所不同,从而保护了免受具有不相容受体的非生产者的利用。我们的发现表明,既有针对作弊的选择,也有针对作弊的抗性选择,这可能会导致天然细菌群落的对抗性共同进化和多样化。

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