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首页> 外文期刊>Molecular Microbiology >Bacteria‐induced production of the antibacterial sesquiterpene lagopodin B in Coprinopsis cinerea Coprinopsis cinerea
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Bacteria‐induced production of the antibacterial sesquiterpene lagopodin B in Coprinopsis cinerea Coprinopsis cinerea

机译:细菌诱导的抗菌癫痫术肝癌蛋白酶B型Cinerea Coprinopsis Cinerea

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摘要

Summary Fungi defend their ecological niche against antagonists by producing antibiosis molecules. Some of these molecules are only produced upon confrontation with the antagonist. The basidiomycete Coprinopsis cinerea induces the expression of the sesquiterpene synthase‐encoding gene cop6 and its two neighboring genes coding for cytochrome P450 monooxygenases in response to bacteria. We further investigated this regulation of cop6 and examined if the gene product is involved in the production of antibacterials. Cell‐free supernatants of axenic cultures of the Gram‐positive bacterium Bacillus subtilis were sufficient to induce cop6 transcription assessed using a fluorescent reporter strain. Use of this strain in a microfluidic device revealed that the cop6 gene was induced in all hyphae directly exposed to the supernatant and that induction occurred within less than one hour. Targeted replacement of the cop6 gene demonstrated the requirement of the encoded synthase for the biosynthesis of the sesquiterpene lagopodin B, a previously reported antibacterial compound from related species. Accordingly, lagopodin B from C. cinerea inhibited the growth of several Gram‐positive bacteria including B. subtilis but not Gram‐negative bacteria. Our results demonstrate that the C. cinerea vegetative mycelium responds to soluble compounds of a bacterial culture supernatant by local production of an antibacterial secondary metabolite.
机译:摘要真菌通过生产抗抗体分子来抵抗拮抗剂的生态利基。这些分子中的一些仅在与拮抗剂对抗时产生。碱霉素Coprinopsis inerea诱导酪蛋白酶合酶编码基因COP6的表达及其两种相邻基因,编码细胞色素P450单氧结酶响应于细菌。我们进一步调查了COP6的这种调节,并检查了基因产物是否参与生产抗菌剂。无细胞上清液的胰腺芽孢杆菌枯草芽孢杆菌的轴烯型培养物足以诱导使用荧光报告株评估的COP6转录。在微流体装置中使用这种菌株显示COP6基因在所有菌丝中诱导直接暴露于上清液,并且在不到1小时内发生诱导发生。针对COP6基因的靶向替代证明了倍二萜Lagopopodin B的生物合成的编码合成酶的要求,先前报道了相关物种的抗菌化合物。因此,来自C. cinerea的Lagopopodin B抑制了几种革兰氏阳性细菌的生长,包括B.枯草芽孢杆菌,但不是革兰氏阴性细菌。我们的结果表明,C. cinerea植物菌丝体通过局部产生抗菌次级代谢物对细菌培养上清液的可溶性化合物作出反应。

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  • 来源
    《Molecular Microbiology》 |2019年第2期|共15页
  • 作者单位

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute for Chemical and BioengineeringETH ZurichVladimir‐Prelog‐Weg 1 Zürich CH‐8093 Switzerland;

    Institute for Chemical and BioengineeringETH ZurichVladimir‐Prelog‐Weg 1 Zürich CH‐8093 Switzerland;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

    Institute of Microbiology Department of BiologyETH ZurichVladimir‐Prelog‐Weg 4 Zürich CH‐8093;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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