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Predation by Bdellovibrio bacteriovorus HD100 Requires Type IV Pili▿ †

机译:Bdellovibrio bacteriovorus HD100的捕食需要IV型菌毛†

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摘要

Early electron microscopy and more recent studies in our laboratory of Bdellovibrio bacteriovorus cells indicated the presence of narrow fibers at the nonflagellar pole of this unusual predatory bacterium. Analysis of the B. bacteriovorus HD100 genome showed a complete set of genes potentially encoding type IV pili and an incomplete gene set for Flp pili; therefore, the role of type IV pili in the predatory life cycle of B. bacteriovorus HD100 was investigated. Alignment of the predicted PilA protein with known type IV pilins showed the characteristic conserved N terminus common to type IVa pilins. The pilA gene, encoding the type IV pilus fiber protein, was insertionally inactivated in multiple Bdellovibrio replicate cultures, and the effect upon the expression of other pilus genes was monitored by reverse transcriptase PCR. Interruption of pilA in replicate isolates abolished Bdellovibrio predatory capability in liquid prey cultures and on immobilized yellow fluorescent protein-labeled prey, but the mutants could be cultured prey independently. Expression patterns of pil genes involved in the formation of type IV pili were profiled across the predatory life cycle from attack phase predatory Bdellovibrio throughout the intraperiplasmic bdelloplast stages to prey lysis and in prey-independent growth. Taken together, the data show that type IV pili play a critical role in Bdellovibrio predation.
机译:早期的电子显微镜和我们的Bdellovibrio细菌细菌细胞实验室中的最新研究表明,这种不寻常的掠食性细菌的非鞭毛极处存在狭窄的纤维。对细菌噬菌芽孢杆菌HD100基因组的分析显示出可能编码IV型菌毛的完整基因集和对于Flp菌毛的不完整基因集。因此,研究了IV型菌毛在细菌噬菌芽孢杆菌HD100的捕食生命周期中的作用。预测的PilA蛋白与已知IV型菌毛蛋白的比对显示IV型菌毛蛋白共有的特征保守N末端。编码IV型菌毛纤维蛋白的pilA基因在多个Bdellovibrio复制培养物中被插入失活,并通过逆转录酶PCR监测对其他菌毛基因表达的影响。重复分离物中pilA的破坏消除了Bdellovibrio在液体猎物培养物中和固定化黄色荧光蛋白标记的猎物上的捕食能力,但突变体可以独立培养。在掠食性生命周期中,从攻击阶段的掠食性Bdellovibrio贯穿整个周质内胶质体阶段到猎物裂解和不依赖猎物的生长,对参与IV型菌毛形成的pil基因的表达模式进行了分析。两者合计,数据表明IV型菌毛在Bdellovibrio捕食中起关键作用。

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