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Enhanced bacterial mutualism through an evolved biofilm phenotype

机译:通过进化的生物膜表型增强细菌的共生关系

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摘要

Microbial communities primarily consist of multiple species that affect one another’s fitness both directly and indirectly. This study showed that the cocultivation of Paenibacillus amylolyticus and Xanthomonas retroflexus exhibited facultative mutualistic interactions in a static environment, during the course of which a new adapted phenotypic variant of X. retroflexus appeared. Although the emergence of this variant was not directly linked to the presence of P. amylolyticus, its establishment in the coculture enhanced the productivity of both species due to mutations that stimulated biofilm formation. The mutations were detected in genes encoding a diguanylate cyclase predicted to synthesise cyclic-di-GMP. Examinations of the biofilm formed in cocultures of P. amylolyticus and the new variant of X. retroflexus revealed a distinct spatial organisation: P. amylolyticus only resided in biofilms in association with X. retroflexus and occupied the outer layers. The X. retroflexus variant therefore facilitated increased P. amylolyticus growth as it produced more biofilm biomass. The increase in X. retroflexus biomass was thus not at the expense of P. amylolyticus, demonstrating that interspecies interactions can shape diversification in a mutualistic coculture and reinforce these interactions, ultimately resulting in enhanced communal performance.
机译:微生物群落主要由直接或间接影响彼此健康的多种物种组成。这项研究表明,解淀粉假单胞菌和逆生黄单胞菌的共培养在静态环境中表现出兼性的互作用,在此过程中出现了一种新的适应性逆生X.表型变体。尽管此变体的出现与解淀粉假单胞菌的存在并不直接相关,但由于刺激生物膜形成的突变,其在共培养物中的建立提高了两个物种的生产力。在编码预测合成环二GMP的双鸟苷酸环化酶的基因中检测到突变。对解淀粉假单胞菌和反挠X.的新变种共培养物中形成的生物膜的检查揭示了一个独特的空间组织:解淀粉假单胞菌仅与反挠X.一起存在于生物膜中并占据了外层。因此,由于其产生更多的生物膜生物量,逆反射X.变种促进解淀粉假单胞菌的生长增加。因此,逆反射假单胞菌生物量的增加并不以解淀粉假单胞菌为代价,表明种间的相互作用可以塑造相互共生中的多样化并增强这些相互作用,最终导致增强的公共性能。

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