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首页> 外文期刊>BMC Genomics >The insect pathogenic bacterium Xenorhabdus innexi has attenuated virulence in multiple insect model hosts yet encodes a potent mosquitocidal toxin
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The insect pathogenic bacterium Xenorhabdus innexi has attenuated virulence in multiple insect model hosts yet encodes a potent mosquitocidal toxin

机译:昆虫病原细菌Xenorhabdus innexi在多种昆虫模型宿主中的毒性已减弱,但仍编码有效的灭蚊毒素

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Xenorhabdus innexi is a bacterial symbiont of Steinernema scapterisci nematodes, which is a cricket-specialist parasite and together the nematode and bacteria infect and kill crickets. Curiously, X. innexi expresses a potent extracellular mosquitocidal toxin activity in culture supernatants. We sequenced a draft genome of X. innexi and compared it to the genomes of related pathogens to elucidate the nature of specialization. Using green fluorescent protein-expressing X. innexi we confirm previous reports using culture-dependent techniques that X. innexi colonizes its nematode host at low levels (~3–8 cells per nematode), relative to other Xenorhabdus-Steinernema associations. We found that compared to the well-characterized entomopathogenic nematode symbiont X. nematophila, X. innexi fails to suppress the insect phenoloxidase immune pathway and is attenuated for virulence and reproduction in the Lepidoptera Galleria mellonella and Manduca sexta, as well as the dipteran Drosophila melanogaster. To assess if, compared to other Xenorhabdus spp., X. innexi has a reduced capacity to synthesize virulence determinants, we obtained and analyzed a draft genome sequence. We found no evidence for several hallmarks of Xenorhabdus spp. toxicity, including Tc and Mcf toxins. Similar to other Xenorhabdus genomes, we found numerous loci predicted to encode non-ribosomal peptide/polyketide synthetases. Anti-SMASH predictions of these loci revealed one, related to the fcl locus that encodes fabclavines and zmn locus that encodes zeamines, as a likely candidate to encode the X. innexi mosquitocidal toxin biosynthetic machinery, which we designated Xlt. In support of this hypothesis, two mutants each with an insertion in an Xlt biosynthesis gene cluster lacked the mosquitocidal compound based on HPLC/MS analysis and neither produced toxin to the levels of the wild type parent. The X. innexi genome will be a valuable resource in identifying loci encoding new metabolites of interest, but also in future comparative studies of nematode-bacterial symbiosis and niche partitioning among bacterial pathogens.
机译:Xenorhabdus innexi是Steinernema scapterisci线虫的一种细菌共生体,它是一种-专家寄生虫,线虫和细菌共同感染并杀死。奇怪的是,Innexi假单胞菌在培养上清液中表达强效的细胞外灭蚊毒素活性。我们对X. innexi的基因组草图进行了测序,并将其与相关病原体的基因组进行了比较,以阐明专业化的性质。我们使用表达绿色荧光蛋白的X. innexi证实了以前的报道,其使用的是依赖于培养物的技术,即X. innexi相对于其他Xenorhabdus-Steinernema协会,其线虫宿主定植的水平较低(每个线虫约3-8个细胞)。我们发现,与特征充分的昆虫致病线虫共生线虫X. nematophila相比,X。innexi无法抑制昆虫的酚氧化酶免疫途径,并减弱了鳞翅目Galleria mellonella和Manduca sexta的毒力和繁殖力,以及二倍体果蝇黑腹果蝇。 。为了评估与其他Xenorhabdus spp。相比,Innexi合成毒力决定簇的能力是否降低,我们获得并分析了基因组序列草案。我们没有发现Xenorhabdus spp几个标志的证据。毒性,包括Tc和Mcf毒素。与其他Xenorhabdus基因组相似,我们发现了许多编码非核糖体肽/聚酮化合物合成酶的基因座。这些基因座的反SMASH预测揭示了一个与编码fabclavines的fcl基因座和编码zeamines的zmn基因座有关的基因,它们可能是编码X.innexi灭蚊毒素生物合成机制的一种候选基因,我们将其命名为Xlt。为了支持这一假设,基于HPLC / MS分析,两个突变体均在Xlt生物合成基因簇中都有插入,但没有灭蚊化合物,并且均未产生与野生型亲本水平相同的毒素。 Innexi X.基因组将是鉴定编码感兴趣的新代谢物的基因座的宝贵资源,而且在今后线虫-细菌共生和细菌病原体之间的生态位分配的比较研究中也将是宝贵的资源。

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