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Relation of Capsular Polysaccharide Production and Colonial Cell Organization to Colony Morphology in Vibrio parahaemolyticus

机译:副溶血性弧菌荚膜多糖产生和结肠细胞组织与菌落形态的关系

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摘要

Vibrio parahaemolyticus is a ubiquitous, gram-negative marine bacterium that undergoes phase variation between opaque and translucent colony morphologies. The purpose of this study was to determine the factor(s) responsible for the opaque and translucent phenotypes and to examine cell organization within both colony types. Examination of thin sections of ruthenium red-stained bacterial cells by electron microscopy revealed a thick, electron-dense layer surrounding the opaque cells that was absent in preparations from translucent strains. Extracellular polysaccharide (EPS) material was extracted from both opaque and translucent strains, and the opaque strain was shown to produce abundant levels of polysaccharide, in contrast to the translucent strain. Compositional analysis of the EPS identified four major sugars: glucose, galactose, fucose, and N-acetylglucosamine. Confocal scanning laser microscopy was used to investigate cell organization within opaque and translucent colonies. Cells within both types of colonies exhibited striking organization; rod-shaped cells were aligned parallel to one another and perpendicular to the agar surface throughout the depth of the colony. Cells within translucent colonies appeared more tightly packed than cells in opaque colonies. In addition, a dramatic difference in the structural integrity of these two colony types was observed. When colonies were perturbed, the cell organization of the translucent colonies was completely disrupted while the organization of the opaque colonies was maintained. To our knowledge, this study represents the first description of how cells are organized in the interior of a viable bacterial colony. We propose that the copious amount of EPS produced by the opaque strain fills the intercellular space within the colony, resulting in increased structural integrity and the opaque phenotype.
机译:副溶血性弧菌是一种普遍存在的革兰氏阴性海洋细菌,在不透明和半透明菌落形态之间发生相变。这项研究的目的是确定造成不透明和半透明表型的因素,并检查两种菌落类型内的细胞组织。通过电子显微镜检查钌红色染色细菌细胞的薄片,发现围绕不透明细胞的厚电子致密层在半透明菌株的制剂中不存在。从不透明和半透明菌株中提取细胞外多糖(EPS)材料,与半透明菌株相比,不透明菌株显示出产生丰富水平的多糖。 EPS的成分分析确定了四种主要的糖:葡萄糖,半乳糖,岩藻糖和N-乙酰氨基葡萄糖。共聚焦扫描激光显微镜用于研究不透明和半透明菌落内的细胞组织。两种类型的菌落中的细胞均表现出惊人的组织。在整个菌落的整个深度上,杆状细胞彼此平行排列并垂直于琼脂表面排列。半透明菌落中的细胞比不透明菌落中的细胞更紧密地堆积。另外,观察到这两种菌落类型在结构完整性上的显着差异。当菌落被扰动时,半透明菌落的细胞组织被完全破坏,而不透明菌落的组织得以维持。据我们所知,这项研究代表了如何在一个可行的细菌菌落内部组织细胞的首次描述。我们建议不透明菌株产生的大量EPS填充菌落内的细胞间空间,导致结构完整性和不透明表型增加。

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