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Natural product diversity associated with the nematode symbionts Photorhabdus and Xenorhabdus

机译:与Nematode Symbionts Photorhabdus和Xenorhabdus相关的自然产品多样性

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摘要

Xenorhabdus and Photorhabdus species dedicate a large amount of resources to the production of specialized metabolites derived from non-ribosomal peptide synthetase (NRPS) or polyketide synthase (PKS). Both bacteria undergo symbiosis with nematodes, which is followed by an insect pathogenic phase. So far, the molecular basis of this tripartite relationship and the exact roles that individual metabolites and metabolic pathways play have not been well understood. To close this gap, we have significantly expanded the database for comparative genomics studies in these bacteria. Clustering the genes encoded in the individual genomes into hierarchical orthologous groups reveals a high-resolution picture of functional evolution in this clade. It identifiesgroups of genes—many of which are involved in secondary metabolite production—that may account for the niche specificity of these bacteria. Photorhabdus and Xenorhabdus appear very similar at the DNA sequence level, which indicates their close evolutionary relationship. Yet, high-resolution mass spectrometry analyses reveal a huge chemical diversity in the two taxa. Molecular network reconstruction identified a large number of previously unidentified metabolite classes, including the xefoampeptides and tilivalline. Here, we apply genomic and metabolomic methods in a complementary manner to identify and elucidate additional classes of natural products. We also highlight the ability to rapidly and simultaneously identify potentially interesting bioactive products from NRPSs and PKSs, thereby augmenting the contribution of molecular biology techniques to the acceleration of natural product discovery.
机译:Xenorhabdus和Photorhabdus物种将大量资源推出到衍生自非核糖体肽合成酶(NRPS)或聚酮合酶(PKS)的专用代谢物的生产。两种细菌与线虫进行共生,然后是昆虫致病期。到目前为止,这种三方关系的分子基础以及单个代谢物和代谢途径的确切作用并未得到很好地理解。为了缩短这种差距,我们已经大大扩展了这些细菌中的比较基因组学研究的数据库。将在各个基因组中编码成分层正交组的基因揭示了该疏水物中的功能演进的高分辨率图像。它标识到基因组 - 其中许多参与次生代谢产物生产 - 这可能考虑这些细菌的核心特异性。 Photorhabdus和Xenorhabdus在DNA序列水平上显得非常相似,这表明了它们近的进化关系。然而,高分辨率质谱分析揭示了两个分类群中的巨大化学多样性。分子网络重建鉴定了大量先前未识别的代谢物类别,包括XefoAmp肽和椴树脂。在这里,我们以互补的方式应用基因组和代谢物方法以识别和阐明额外的天然产物类别。我们还突出了快速,同时识别来自NRPS和PKS的潜在有趣的生物活性产物的能力,从而增强分子生物学技术对自然产品发现加速的贡献。

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  • 来源
    《Nature Microbiology》 |2017年第12期|共10页
  • 作者单位

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Department of Applied Bioinformatics Institute for Cell Biology and Neuroscience Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    Fachbereich Biowissenschaften Merck Stiftungsprofessur für Molekulare Biotechnologie Goethe-Universitat Frankfurt Frankfurt am Main 60438 Germany;

    USDA-ARS SEA SE Fruit and Tree Nut Research Unit 21 Dunbar Road Byron GA 31008 USA;

    Department of Microbiology and Immunology University of Melbourne at the Doherty Institute for Infection and Immunity Parkville Victoria 3010 Australia;

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  • 正文语种 eng
  • 中图分类 微生物学;
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