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From the Cover: Predataxis behavior in Myxococcus xanthus

机译:从封面开始:黏液黄球菌中的数据前行为

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摘要

Spatial organization of cells is important for both multicellular development and tactic responses to a changing environment. We find that the social bacterium, Myxococcus xanthus utilizes a chemotaxis (Che)-like pathway to regulate multicellular rippling during predation of other microbial species. Tracking of GFP-labeled cells indicates directed movement of M. xanthus cells during the formation of rippling wave structures. Quantitative analysis of rippling indicates that ripple wavelength is adaptable and dependent on prey cell availability. Methylation of the receptor, FrzCD is required for this adaptation: a frzF methyltransferase mutant is unable to construct ripples, whereas a frzG methylesterase mutant forms numerous, tightly packed ripples. Both the frzF and frzG mutant strains are defective in directing cell movement through prey colonies. These data indicate that the transition to an organized multicellular state during predation in M. xanthus relies on the tactic behavior of individual cells, mediated by a Che-like signal transduction pathway.
机译:细胞的空间组织对于多细胞发育和对不断变化的环境的战术反应都非常重要。我们发现,社会细菌,黄色葡萄球菌利用趋化性(Che)样途径来调节捕食其他微生物物种期间的多细胞波纹。跟踪GFP标记的细胞表明在波纹波结构形成过程中黄腐分支杆菌细胞的定向运动。波纹的定量分析表明,波纹波长是可适应的,并取决于捕食细胞的可用性。这种适应需要受体FrzCD的甲基化:frzF甲基转移酶突变体无法构建波纹,而frzG甲基酯酶突变体会形成许多紧密堆积的波纹。 frzF和frzG突变株在引导细胞通过猎物集落方面均存在缺陷。这些数据表明,在黄褐线虫捕食过程中向有组织的多细胞状态的过渡依赖于由Che-like信号转导途径介导的单个细胞的战术行为。

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