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Chirality in microbial biofilms is mediated by close interactions between the cell surface and the substratum

机译:微生物生物膜中的手性由细胞表面和基质之间的紧密相互作用介导

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摘要

From microbial biofilms to human migrations, spatial competition is central to the evolutionary history of many species. The boundary between expanding populations is the focal point of competition for space and resources and is of particular interest in ecology. For all Escherichia coli strains studied here, these boundaries move in a counterclockwise direction even when the competing strains have the same fitness. We find that chiral growth of bacterial colonies is strongly suppressed by the expression of extracellular features such as adhesive structures and pili. Experiments with other microbial species show that chiral growth is found in other bacteria and exclude cell wall biosynthesis and anisotropic shape as the primary causes of chirality. Instead, intimate contact with the substratum is necessary for chirality. Our results demonstrate that through a handful of surface molecules cells can fundamentally reorganize their migration patterns, which might affect intra- and interspecific competitions through colony morphology or other mechanisms.
机译:从微生物生物膜到人类迁徙,空间竞争对许多物种的进化历史至关重要。不断扩大的人口之间的界限是争夺空间和资源的焦点,并且在生态学方面尤其令人关注。对于此处研究的所有大肠杆菌菌株,即使竞争菌株具有相同的适应性,这些边界也会沿逆时针方向移动。我们发现细菌菌落的手性生长受到细胞外特征如粘附结构和菌毛的表达的强烈抑制。对其他微生物物种的实验表明,在其他细菌中发现了手性生长,并且排除了细胞壁的生物合成和各向异性形状,这是手性的主要原因。相反,手性必须与基质紧密接触。我们的结果表明,通过少数表面分子,细胞可以从根本上重组其迁移模式,这可能会通过菌落形态或其他机制影响种内和种间竞争。

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