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Coexistence of Microbial Species in Structured Communities by Forming a Hawk-Dove Game Like Interactive Relationship

机译:通过形成类似互动关系的鹰鸽博弈,结构化社区中微生物物种的共存

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Microorganisms evolve kinds of elaborate interaction models that can form relatively stable communities in a wide range of ecosystems. It is recognized that the spatial genetic structure of microbes in surface-attached environments lays a good foundation for the persistence of polymicrobial communities in adverse conditions. However, the interacting dynamics of microbes in facilitating the formation and stabilization of community structure still remains elusive. In this study, we identify a hawk-dove game like interspecific relationship between the two Gram-negative opportunistic pathogens Pseudomonas aeruginosa and Klebsiella pneumoniae , which naturally coexist in insect gut and can cocolonize human tissues. Specifically, although P. aeruginosa had significant competitive advantage over cocultured K. pneumoniae on solid medium with rich nutrient factors, K. pneumoniae could resist the suppression of P. aeruginosa by enhancing the expression of membrane transporters induced by the extracellular metabolites of P. aeruginosa . By contrast, under the condition that K. pneumoniae had a growth advantage but P. aeruginosa met a metabolic burden in producing quorum-sensing-controlled extracellular products, the frequency of K. pneumoniae would be slightly higher than P. aeruginosa during the coexistence because K. pneumoniae was also capable of exploiting the extracellular metabolite from P. aeruginosa . In addition, P. aeruginosa quorum-sensing variant could reap benefits from K. pneumoniae in turn and reach a relatively stable two species equilibrium. These findings provide an explanation for the formation and maintenance of polymicrobial communities in different spatially structured environments, and thus may contribute to understanding the complex interspecific interactions of microbes in local communities and shed new light on the development of social microbiology.
机译:微生物会进化出各种复杂的相互作用模型,这些模型可以在广泛的生态系统中形成相对稳定的群落。人们认识到,表面附着环境中微生物的空间遗传结构为在不利条件下持久存在微生物群落奠定了良好的基础。然而,微生物在促进群落结构形成和稳定中的相互作用动力学仍然难以捉摸。在这项研究中,我们确定了一种鹰-鸽子博弈,如两种革兰氏阴性机会性病原体铜绿假单胞菌和肺炎克雷伯菌之间的种间关系,它们自然共存于昆虫肠道中并可以使人类组织结肠化。具体而言,尽管铜绿假单胞菌在具有丰富营养因子的固体培养基上比共培养肺炎克雷伯菌具有明显的竞争优势,但肺炎克雷伯菌可以通过增强由铜绿假单胞菌胞外代谢产物诱导的膜转运蛋白的表达来抵抗铜绿假单胞菌的抑制。 。相比之下,在肺炎克雷伯菌具有生长优势但铜绿假单胞菌在产生群体感应控制的细胞外产物方面遇到代谢负担的情况下,在共存期间,肺炎克雷伯菌的频率将略高于铜绿假单胞菌,因为肺炎克雷伯菌也能够利用铜绿假单胞菌的细胞外代谢物。此外,铜绿假单胞菌群体感应变体可以反过来从肺炎克雷伯菌中获得好处,并达到相对稳定的两个物种的平衡。这些发现为不同空间结构环境中微生物群落的形成和维持提供了解释,因此可能有助于理解当地社区中微生物之间复杂的种间相互作用,并为社会微生物学的发展提供了新的思路。

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