首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Characterization of myxobacterial A-motility: Insights from microcinematographic observations
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Characterization of myxobacterial A-motility: Insights from microcinematographic observations

机译:粘菌A动力的表征:从微电影摄影观察中获得的见解

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摘要

Myxococcus xanthus, a predatory soil bacterium, has long been used as a model organism to study bacterial gliding motility. Research has revealed that two fundamentally distinct motor systems power gliding in this bacterium: repeated extensions and retractions of pili mediate social or (S-) motility, whereas the motor powering adventurous or (A-) motility has not yet been identified with certainty. Several different hypotheses to explain A-motility have been suggested and differ with respect to the involved motor structures as well as the mechanics of motility. As some of the more recent models invoke helically arranged structures and processes that require rotations of the cell, we decided to re-examine myxobacterial motility using microcinematographic techniques. This re-examination was also prompted by the lack of direct experimental data on the rotation of M. xanthus during gliding. Microcinematographic observations of deformed cells and cells containing large stationary intracellular structures reveal clearly that M. xanthus gliding does not require cell rotation.
机译:黄腐粘球菌(Myxococcus xanthus)是一种掠食性土壤细菌,长期以来一直用作研究细菌滑行运动的模型生物。研究表明,这种细菌有两种根本不同的动力系统:菌毛的反复伸展和缩回介导了社交或(S-)动力,而不确定冒险的马达或(A-)动力。提出了几种不同的假设来解释A动力,并且在涉及的运动结构和动力机制方面也不同。随着一些较新的模型调用需要细胞旋转的螺旋排列的结构和过程,我们决定使用微电影照相技术重新检查粘细菌的运动性。滑行过程中缺乏关于黄连木旋转的直接实验数据也提示了这种重新检查。用微电影显微镜观察变形的细胞和含有大的固定细胞内结构的细胞,可以清楚地看出黄腐滑质不需要细胞旋转。

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