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Role of Secondary Metabolites in Establishment of the Mutualistic Partnership between Xenorhabdus nematophila and the Entomopathogenic Nematode Steinernema carpocapsae

机译:次生代谢产物在线虫Xenorhabdus nematophila和致病性线虫Steinernema carpocapsae之间建立相互伙伴关系的作用

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摘要

Xenorhabdus nematophila engages in a mutualistic partnership with the nematode Steinernema carpocapsae, which invades insects, migrates through the gut, and penetrates into the hemocoel (body cavity). We showed previously that during invasion of Manduca sexta, the gut microbe Staphylococcus saprophyticus appeared transiently in the hemocoel, while Enterococcus faecalis proliferated as X. nematophila became dominant. X. nematophila produces diverse secondary metabolites, including the major water-soluble antimicrobial xenocoumacin. Here, we study the role of X. nematophila antimicrobials in interspecies competition under biologically relevant conditions using strains lacking either xenocoumacin (ΔxcnKL strain), xenocoumacin and the newly discovered antibiotic F (ΔxcnKL:F strain), or all ngrA-derived secondary metabolites (ngrA strain). Competition experiments were performed in Grace's insect medium, which is based on lepidopteran hemolymph. S. saprophyticus was eliminated when inoculated into growing cultures of either the ΔxcnKL strain or ΔxcnKL:F strain but grew in the presence of the ngrA strain, indicating that ngrA-derived antimicrobials, excluding xenocoumacin or antibiotic F, were required to eliminate the competitor. In contrast, S. saprophyticus was eliminated when coinjected into M. sexta with either the ΔxcnKL or ngrA strain, indicating that ngrA-derived antimicrobials were not required to eliminate the competitor in vivo. E. faecalis growth was facilitated when coinjected with either of the mutant strains. Furthermore, nematode reproduction in M. sexta naturally infected with infective juveniles colonized with the ngrA strain was markedly reduced relative to the level of reproduction when infective juveniles were colonized with the wild-type strain. These findings provide new insights into interspecies competition in a host environment and suggest that ngrA-derived compounds serve as signals for in vivo nematode reproduction.
机译:线虫Xenorhabdus nematophila与线虫Steinernema carpocapsae处于互惠合作关系,该线虫入侵昆虫,通过肠道迁移,并渗透到血co(体腔)中。我们以前曾证明,在入侵曼杜卡氏菌的过程中,肠道微生物腐生的葡萄球菌在血细胞中短暂出现,而粪肠球菌则以线虫X.变为优势菌。线虫杆菌可产生多种次生代谢产物,包括主要的水溶性抗菌素异香豆素。在这里,我们研究了线虫X线虫抗菌素在生物学相关条件下使用缺乏异种香豆素(ΔxcnKL株),异种香豆素和新发现的抗生素F(ΔxcnKL:F株)或所有ngrA衍生的次级代谢产物( ngrA株)。比赛实验是在格雷斯的昆虫媒介中进行的,该媒介基于鳞翅目血淋巴。接种到ΔxcnKL菌株或ΔxcnKL:F菌株的生长培养物中的腐生链球菌被消除,但在ngrA菌株的存在下生长,这表明 ngrA 衍生的抗微生物剂,异种香豆素或抗生素F不包括在内,被要求消灭竞争对手。相反, S。当共生到 M中时,腐生菌被淘汰。带有Δ xcnKL ngrA 菌株的sexta ,表明不需要 ngrA 衍生的抗菌剂即可消除竞争对手体内 E。当与任一突变株共注射时,粪便的生长被促进。此外,线虫在 M中的繁殖。天然感染了 ngrA 菌株的感染性幼虫的性腺相对于野生型菌株感染的繁殖水平显着降低。这些发现为宿主环境中的种间竞争提供了新的见解,并表明源自 ngrA 的化合物可作为体内线虫繁殖的信号。

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