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Cooperation and conflict in microbial biofilms

机译:微生物生物膜的合作与冲突

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摘要

Biofilms, in which cells attach to surfaces and secrete slime (polymeric substances), are central to microbial life. Biofilms are often thought to require high levels of cooperation because extracellular polymeric substances are a shared resource produced by one cell that can be used by others. Here we examine this hypothesis by using a detailed individual-based simulation of a biofilm to investigate the outcome of evolutionary competitions between strains that differ in their level of polymer production. Our model includes a biochemical description of the carbon fluxes for growth and polymer production, and it explicitly calculates diffusion-reaction effects and the resulting solute gradients in the biofilm. An emergent property of these simple but realistic mechanistic assumptions is a strong evolutionary advantage to extracellular polymer production. Polymer secretion is altruistic to cells above a focal cell: it pushes later generations in their lineage up and out into better oxygen conditions, but it harms others; polymer production suffocates neighboring nonpolymer producers. This property, analogous to vertical growth in plants, suggests that polymer secretion provides a strong competitive advantage to cell lineages within mixed-genotype biofilms: global cooperation is not required. Our model fundamentally changes how biofilms are expected to respond to changing social conditions; the presence of multiple strains in a biofilm should promote rather than inhibit polymer secretion.
机译:细胞附着于表面并分泌粘液(聚合物质)的生物膜对于微生物生命至关重要。人们通常认为生物膜需要高水平的合作,因为细胞外聚合物是一种细胞产生的共享资源,可以被其他细胞利用。在这里,我们通过使用基于个体的详细生物膜模拟来研究这一假设,以调查在聚合物生产水平不同的菌株之间进化竞争的结果。我们的模型包括对用于生长和聚合物生产的碳通量的生化描述,并明确计算了扩散反应效应以及生物膜中产生的溶质梯度。这些简单但现实的机械假设的新兴属性是细胞外聚合物生产的强大进化优势。聚合物的分泌对局灶细胞上方的细胞无利可图:它将后代的细胞系向上推入并进入更好的氧气条件,但会伤害他人。聚合物的生产使邻近的非聚合物生产商窒息。这种特性类似于植物的垂直生长,表明聚合物的分泌为混合基因型生物膜中的细胞谱系提供了强大的竞争优势:不需要全球合作。我们的模型从根本上改变了生物膜如何应对不断变化的社会条件。生物膜中多种菌株的存在应该促进而不是抑制聚合物的分泌。

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