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杆状菌的多向性:沿定向多糖纤维的运动。

Polymertropism of rod-shaped bacteria: movement along aligned polysaccharide fibers.

机构信息

Department of Biology, Syracuse University, Syracuse, NY, 13244, United States.

Department of Physics, Syracuse University, Syracuse, NY, 13244, United States.

出版信息

Sci Rep. 2017 Aug 11;7(1):7643. doi: 10.1038/s41598-017-07486-0.

Abstract

In nature, bacteria often live in surface-associated communities known as biofilms. Biofilm-forming bacteria typically deposit a layer of polysaccharide on the surfaces they inhabit; hence, polysaccharide is their immediate environment on many surfaces. In this study, we examined how the physical characteristics of polysaccharide substrates influence the behavior of the biofilm-forming bacterium Myxococcus xanthus. M. xanthus responds to the compression-induced deformation of polysaccharide substrates by preferentially spreading across the surface perpendicular to the axis of compression. Our results suggest that M. xanthus is not responding to the water that accumulates on the surface of the polysaccharide substrate after compression or to compression-induced changes in surface topography such as the formation of troughs. These directed surface movements do, however, consistently match the orientation of the long axes of aligned and tightly packed polysaccharide fibers in compressed substrates, as indicated by behavioral, birefringence and small angle X-ray scattering analyses. Therefore, we suggest that the directed movements are a response to the physical arrangement of the polymers in the substrate and refer to the directed movements as polymertropism. This behavior might be a common property of bacteria, as many biofilm-forming bacteria that are rod-shaped and motile on soft surfaces exhibit polymertropism.

摘要

在自然界中,细菌通常生活在被称为生物膜的表面相关群落中。形成生物膜的细菌通常在它们栖息的表面沉积一层多糖;因此,多糖是它们在许多表面上的直接环境。在这项研究中,我们研究了多糖基质的物理特性如何影响生物膜形成菌粘球菌的行为。粘球菌对多糖基质压缩诱导变形的反应是优先沿与压缩轴垂直的表面扩散。我们的结果表明,粘球菌不是对多糖基质表面压缩后积聚的水,或是对表面形貌的压缩诱导变化(如形成槽)做出反应。然而,这些定向表面运动与压缩基质中排列整齐且紧密堆积的多糖纤维的长轴方向一致,这可以通过行为、双折射和小角 X 射线散射分析来证实。因此,我们认为定向运动是对基质中聚合物的物理排列的一种反应,并将定向运动称为聚合物向性。这种行为可能是细菌的一种共同特性,因为许多在柔软表面上呈杆状且运动的生物膜形成细菌都表现出聚合物向性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8937/5554183/82ee8d8c8835/41598_2017_7486_Fig1_HTML.jpg

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