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The role of an alternative sigma factor in motility and pilus formation in the cyanobacterium Synechocystis sp. strain PCC6803

机译:替代的sigma因子在蓝藻Synechocystis sp。的运动性和菌毛形成中的作用。菌株PCC6803

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摘要

Disruption of a gene for an alternative sigma factor, designated sigF, in the freshwater, unicellular cyanobacterium Synechocystis sp. strain PCC6803 resulted in a pleiotropic phenotype. Most notably, this mutant lost phototactic movement with a concomitant loss of pili, which are abundant on the surface of wild-type cells. The sigF mutant also secreted both high levels of yellow–brown and UV-absorbing pigments and a polypeptide that is similar to a large family of extracellular proteins that includes the hemolysins. Furthermore, the sigF mutant had a dramatically reduced level of the transcript from two tandemly arranged pilA genes (sll1694 and sll1695), which encode major structural components of type IV pili. Inactivation of these pilA genes eliminated phototactic movement, though some pili were still present in this strain. Together, these results demonstrate that SigF plays a critical role in motility via the control of pili formation and is also likely to regulate other features of the cell surface. Furthermore, the data provide evidence that type IV pili are required for phototactic movement in certain cyanobacteria and suggest that different populations of pili present on the Synechocystis cell surface may perform different functions.
机译:淡水单细胞蓝藻Synechocystis sp。中另一个sigma因子sigF的基因被破坏。菌株PCC6803导致多效性表型。最显着的是,该突变体失去了光致战术运动,并伴随着菌毛的丧失,菌毛的丰富存在于野生型细胞的表面。 sigF突变体还分泌了高水平的黄棕色和可吸收紫外线的色素,以及一种类似于包括溶血素的细胞外蛋白质大家族的多肽。此外,sigF突变体的两个串联排列的pilA基因(sll1694和sll1695)的转录水平显着降低,它们编码IV型菌毛的主要结构成分。这些pilA基因的失活消除了趋光运动,尽管该菌中仍然存在一些菌毛。总之,这些结果表明,SigF通过控制菌毛的形成在运动中起着至关重要的作用,并且还可能调节细胞表面的其他特征。此外,这些数据提供了证据,表明在某些蓝细菌中进行光战术运动需要IV型菌毛,并表明存在于集胞藻细胞表面的菌毛不同种群可能发挥不同的功能。

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