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首页> 外文期刊>FEMS Microbiology Ecology >Exploiting the fungal highway: development of a novel tool for the in situ isolation of bacteria migrating along fungal mycelium
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Exploiting the fungal highway: development of a novel tool for the in situ isolation of bacteria migrating along fungal mycelium

机译:利用真菌高速公路:开发一种新型工具,用于沿真菌菌丝菌迁移的细菌分离

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摘要

Fungi and bacteria form various associations that are central to numerous environmental processes. In the so-called fungal highway, bacteria disperse along fungal mycelium. We developed a novel tool for the in situ isolation of bacteria moving along fungal hyphae as well as for the recovery of fungi potentially involved in dispersal, both of which are attracted towards a target culture medium. We present the validation and the results of the first in situ test. Couples of fungi and bacteria were isolated from soil. Amongst the enriched organisms, we identified several species of fast-growing fungi (Fusarium sp. and Chaetomium sp.), as well as various potentially associated bacterial groups, including Variovorax soli, Olivibacter soli, Acinetobacter calcoaceticus, and several species of the genera Stenotrophomonas, Achromobacter and Ochrobactrum. Migration of bacteria along fungal hyphae across a discontinuous medium was confirmed in most of the cases. Although the majority of the bacteria for which migration was confirmed were also positive for flagellar motility, not all motile bacteria dispersed using their potential fungal partner. In addition, the importance of hydrophobicity of the fungal mycelial surface was confirmed. Future applications of the columns include targeting different types of microorganisms and their interactions, either by enrichment or by state of the art molecular biological methods.
机译:真菌和细菌形成了许多环境过程中的各种关联。在所谓的真菌高速公路中,细菌沿着真菌菌丝体分散。我们开发了一种用于沿着真菌菌丝移动的细菌的原位分离的新型工具,以及潜在涉及分散的真菌的恢复,这两种都被吸引到目标培养基。我们介绍了第一个原位测试的验证和结果。从土壤中分离出真菌和细菌的夫妇。在富集的生物中,我们确定了几种快速生长的真菌(Fusarium sp。和Chaetomium sp。),以及各种潜在的相关细菌组,包括variovorax soli,olivibacter soli,alivibacter soli,alivetacteracht calcoaceticus,以及几种属于史蒂多科霉菌,achromobacter和ochrobactrum。在大多数情况下,确认了在不连续培养基中沿着真菌菌丝的细菌迁移。虽然确认迁移的大部分细菌对鞭毛运动的阳性也是阳性的,但并非所有使用其潜在的真菌伴侣分散的动机细菌。此外,确认了真菌菌丝表面疏水性的重要性。柱的未来应用包括靶向不同类型的微生物及其相互作用,无论是通过富集还是通过最先进的分子生物学方法。

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