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Gains of Bacterial Flagellar Motility in a Fungal World

机译:真菌世界中细菌鞭毛运动的获得

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The maintenance of energetically costly flagella by bacteria in non-water-saturated media, such as soil, still presents an evolutionary conundrum. Potential explanations have focused on rare flooding events allowing dispersal. Such scenarios, however, overlook bacterial dispersal along mycelia as a possible transport mechanism in soils. The hypothesis tested in this study is that dispersal along fungal hyphae may lead to an increase in the fitness of flagellated bacteria and thus offer an alternative explanation for the maintenance of flagella even in unsaturated soils. Dispersal along fungal hyphae was shown for a diverse array of motile bacteria. To measure the fitness effect of dispersal, additional experiments were conducted in a model system mimicking limited dispersal, using Pseudomonas putida KT2440 and its nonflagellated (Δ fliM ) isogenic mutant in the absence or presence of Morchella crassipes mycelia. In the absence of the fungus, flagellar motility was beneficial solely under conditions of water saturation allowing dispersal, while under conditions limiting dispersal, the nonflagellated mutant exhibited a higher level of fitness than the wild-type strain. In contrast, in the presence of a mycelial network under conditions limiting dispersal, the flagellated strain was able to disperse using the mycelial network and had a higher level of fitness than the mutant. On the basis of these results, we propose that the benefit of mycelium-associated dispersal helps explain the persistence of flagellar motility in non-water-saturated environments.
机译:在非水饱和的介质(例如土壤)中,细菌维持能量消耗高的鞭毛仍存在进化难题。可能的解释集中在罕见的洪水驱散事件上。然而,这种情况忽视了沿菌丝体的细菌散布,这是土壤中可能的传播机制。在这项研究中测试的假设是,沿真菌菌丝的扩散可能会导致鞭毛细菌的适应性增加,从而为即使在不饱和土壤中维持鞭毛也提供了另一种解释。沿真菌菌丝的分散显示出各种各样的运动细菌。为了测量分散的适应性效果,在不存在或存在羊肚菌菌丝体的情况下,使用恶臭假单胞菌KT2440及其无鞭毛(ΔfliM)等基因突变体,在模拟有限分散的模型系统中进行了其他实验。在没有真菌的情况下,仅在允许扩散的水饱和条件下鞭毛运动是有益的,而在限制分散的条件下,非鞭毛突变体的适应性水平高于野生型菌株。相反,在存在限制散布的条件下存在菌丝网络的情况下,鞭毛状菌株能够利用菌丝网络进行分散,并且具有比突变体更高的适应性水平。根据这些结果,我们建议菌丝体相关分散的好处有助于解释非水饱和环境下鞭毛运动的持续性。

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