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Surface-motility induction attraction and hitchhiking between bacterial species promote dispersal on solid surfaces

机译:细菌之间的表面运动诱导吸引和搭便车促进了固体表面上的分散

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摘要

The ability to move on solid surfaces provides ecological advantages for bacteria, yet many bacterial species lack this trait. We found that Xanthomonas spp. overcome this limitation by making use of proficient motile bacteria in their vicinity. Using X. perforans and Paenibacillus vortex as models, we show that X. perforans induces surface motility, attracts proficient motile bacteria and ‘rides' them for dispersal. In addition, X. perforans was able to restore surface motility of strains that lost this mode of motility under multiple growth cycles in the lab. The described interaction occurred both on agar plates and tomato leaves and was observed between several xanthomonads and motile bacterial species. Thus, suggesting that this motility induction and hitchhiking strategy might be widespread and ecologically important. This study provides an example as to how bacteria can rely on the abilities of their neighboring species for their own benefit, signifying the importance of a communal organization for fitness.
机译:在固体表面移动的能力为细菌提供了生态优势,但许多细菌却缺乏这种特性。我们发现黄单胞菌属。通过在其附近使用高效的运动细菌来克服这一限制。使用穿孔杆菌(X. perforans)和潘氏芽孢杆菌(Paenibacillus vortex)作为模型,我们显示穿孔杆菌(X. perforans)诱导表面运动,吸引熟练的运动细菌,并“乘以”它们进行分散。此外,穿孔杆菌能够在实验室的多个生长周期下恢复丧失这种运动模式的菌株的表面运动。所描述的相互作用既发生在琼脂平板上,又发生在番茄叶片上,并且在几种黄单胞菌和能动细菌之间观察到。因此,表明这种动力诱导和搭便车的策略可能是广泛的,并且在生态上很重要。这项研究提供了一个示例,说明细菌如何才能依靠自身邻近物种的能力来获得自身的利益,这表明了一个公共组织适应健康的重要性。

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