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Symbiont-mediated competition: Xenorhabdus bovienii confer an advantage to their nematode host Steinernema affine by killing competitor Steinernema feltiae

机译:Symbiont介导的比赛:Xenorhabdus Bovienii通过杀死竞争对手Steinernema Feltiae赋予他们的线虫宿主Steinernema仿射优势

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摘要

Bacterial symbionts can affect several biotic interactions of their hosts, including their competition with other species. Nematodes in the genus Steinernema utilize Xenorhabdus bacterial symbionts for insect host killing and nutritional bioconversion. Here, we establish that the Xenorhabdus bovienii bacterial symbiont (Xb-Sa-78) of Steinernema affine nematodes can impact competition between S. affine and S. feltiae by a novel mechanism, directly attacking its nematode competitor. Through co-injection and natural infection assays we demonstrate the causal role of Xb-Sa-78 in the superiority of S. affine over S. feltiae nematodes during competition. Survival assays revealed that Xb-Sa-78 bacteria kill reproductive life stages of S. feltiae. Microscopy and timed infection assays indicate that Xb-Sa-78 bacteria colonize S. feltiae nematode intestines, which alters morphology of the intestine. These data suggest that Xb-Sa-78 may be an intestinal pathogen of the non-native S. feltiae nematode, although it is a nonharmful colonizer of the native nematode host, S. affine. Screening additional X. bovienii isolates revealed that intestinal infection and killing of S. feltiae is conserved among isolates from nematodes closely related to S. affine, although the underlying killing mechanisms may vary. Together, these data demonstrate that bacterial symbionts can modulate competition between their hosts, and reinforce specificity in mutualistic interactions.
机译:细菌共生可能会影响其宿主的几个生物互动,包括他们与其他物种的竞争。斯坦尼亚群岛属的线虫利用Xenorhabdus细菌共生进行昆虫宿主杀伤和营养生物转化。在这里,我们建立了斯坦尼德酰胺线虫的Xenorhabdus Bovienii细菌Symbiont(Xb-SA-78)可以通过一种新的机制影响S.仿射和S. Feltiae之间的竞争,直接攻击其线虫竞争者。通过共注射和自然感染测定,我们在竞争期间证明了XB-SA-78在S. Feltiae线虫的优越性中的因果作用。存活测定揭示了XB-SA-78细菌杀死了S. Feltiae的生殖生活阶段。显微镜和定时感染测定表明XB-SA-78细菌菌塞S. Feltiae Nematode肠道,其改变了肠道的形态。这些数据表明XB-SA-78可以是非天然S. FeltiaeNematode的肠道病原体,尽管它是天然线虫宿主的非加工宿主。筛选另外的X. Bovienii分离物揭示了肠道感染和对S. Feltiae的杀戮在与S.染色体密切相关的Nematodes的分离物中被保守,尽管潜在的杀伤机制可能有所不同。这些数据在一起表明细菌共生可以调节其宿主之间的竞争,并加强互动互动中的特异性。

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