Host and nonhost bacteria support bacteriophage dissemination along mycelia and abiotic dispersal networks.

microLife Pub Date : 2024-02-20 eCollection Date: 2024-01-01 DOI:10.1093/femsml/uqae004
Claire Périat, Thierry Kuhn, Matteo Buffi, Andrea Corona-Ramirez, Mathilda Fatton, Guillaume Cailleau, Patrick S Chain, Claire E Stanley, Lukas Y Wick, Saskia Bindschedler, Diego Gonzalez, Xiang-Yi Li Richter, Pilar Junier
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Abstract

Bacteriophages play a crucial role in shaping bacterial communities, yet the mechanisms by which nonmotile bacteriophages interact with their hosts remain poorly understood. This knowledge gap is especially pronounced in structured environments like soil, where spatial constraints and air-filled zones hinder aqueous diffusion. In soil, hyphae of filamentous microorganisms form a network of 'fungal highways' (FHs) that facilitate the dispersal of other microorganisms. We propose that FHs also promote bacteriophage dissemination. Viral particles can diffuse in liquid films surrounding hyphae or be transported by infectable (host) or uninfectable (nonhost) bacterial carriers coexisting on FH networks. To test this, two bacteriophages that infect Pseudomonas putida DSM291 (host) but not KT2440 (nonhost) were used. In the absence of carriers, bacteriophages showed limited diffusion on 3D-printed abiotic networks, but diffusion was significantly improved in Pythium ultimum-formed FHs when the number of connecting hyphae exceeded 20. Transport by both host and nonhost carriers enhanced bacteriophage dissemination. Host carriers were five times more effective in transporting bacteriophages, particularly in FHs with over 30 connecting hyphae. This study enhances our understanding of bacteriophage dissemination in nonsaturated environments like soils, highlighting the importance of biotic networks and bacterial hosts in facilitating this process.

宿主细菌和非宿主细菌支持噬菌体沿着菌丝体和非生物传播网络进行传播。
噬菌体在塑造细菌群落方面发挥着至关重要的作用,但人们对非运动性噬菌体与其宿主相互作用的机制仍然知之甚少。这一知识空白在土壤等结构化环境中尤为明显,因为在这些环境中,空间限制和充满空气的区域阻碍了水的扩散。在土壤中,丝状微生物的菌丝形成了 "真菌高速公路"(FHs)网络,促进了其他微生物的扩散。我们建议,FHs 也能促进噬菌体的传播。病毒颗粒可以在菌丝周围的液膜中扩散,也可以通过共存于 FH 网络上的可感染(宿主)或不可感染(非宿主)细菌载体传播。为了验证这一点,我们使用了两种能感染假单胞菌 DSM291(宿主)而不能感染 KT2440(非宿主)的噬菌体。在没有载体的情况下,噬菌体在三维打印的非生物网络上的扩散很有限,但当连接菌丝的数量超过 20 个时,噬菌体在赤霉病菌形成的 FH 中的扩散明显改善。宿主载体和非宿主载体的传播都增强了噬菌体的传播。宿主载体运输噬菌体的效率是非宿主载体的五倍,尤其是在连接菌丝超过 30 根的 FH 中。这项研究加深了我们对噬菌体在土壤等非饱和环境中传播的理解,强调了生物网络和细菌宿主在促进这一过程中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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