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Upstream Migration of Xylella fastidiosa via Pilus-Driven Twitching Motility

机译:通过木偶驱动的抽动运动向小木耳上游迁移

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Xylella fastidiosa is a xylem-limited nonflagellated bacterium that causes economically important diseases of plants by developing biofilms that block xylem sap flow. How the bacterium is translocated downward in the host plant's vascular system against the direction of the transpiration stream has long been a puzzling phenomenon. Using microfabricated chambers designed to mimic some of the features of xylem vessels, we discovered that X. fastidiosa migrates via type IV-pilus-mediated twitching motility at speeds up to 5 μm min?1 against a rapidly flowing medium (20,000 μm min?1). Electron microscopy revealed that there are two length classes of pili, long type IV pili (1.0 to 5.8 μm) and short type I pili (0.4 to 1.0 μm). We further demonstrated that two knockout mutants (pilB and pilQ mutants) that are deficient in type IV pili do not twitch and are inhibited from colonizing upstream vascular regions in planta. In addition, mutants with insertions in pilB or pilQ (possessing type I pili only) express enhanced biofilm formation, whereas a mutant with an insertion in fimA (possessing only type IV pili) is biofilm deficient.
机译: xylella fastidiosa 是一种受木质部限制的非鞭毛细菌,其通过形成阻止木质部汁液流动的生物膜而引起具有重要经济意义的植物病害。长期以来,如何将细菌逆着蒸腾流的方向向下转移到宿主植物的血管系统中一直是一个令人费解的现象。使用旨在模拟木质部血管某些特征的微型腔室,我们发现了 X。 fastidiosa 通过IV型菌毛介导的抽动运动以高达5μmmin ?1 的速度向快速流动的介质(20,000μmmin ?1 )迁移。电子显微镜检查显示,菌毛有两种长度类型,长的IV型菌毛(1.0至5.8μm)和短的I型菌毛(0.4至1.0μm)。我们进一步证明了IV型菌毛缺乏的两个基因敲除突变体( pilB pilQ 突变体)不抽搐,并被抑制在植物的上游血管区域定居。此外,在 pilB pilQ 中插入的突变体(仅具有I型菌毛)表达增强的生物膜形成,而在 fimA 中插入的突变体>(仅具有IV型菌毛)生物膜缺乏。

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