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与培菌白蚁相关的放线菌产生的天然产物

Natural Products from Actinobacteria Associated with Fungus-Growing Termites.

作者信息

Benndorf René, Guo Huijuan, Sommerwerk Elisabeth, Weigel Christiane, Garcia-Altares Maria, Martin Karin, Hu Haofu, Küfner Michelle, de Beer Z Wilhelm, Poulsen Michael, Beemelmanns Christine

机构信息

Leibniz Institute for Natural Product Research and Infection Biology-Hans-Knöll-Institute, Beutenbergstraße 11a, 07745 Jena, Germany.

Section for Ecology and Evolution, Department of Biology, University of Copenhagen, 2100 Copenhagen East, Denmark.

出版信息

Antibiotics (Basel). 2018 Sep 13;7(3):83. doi: 10.3390/antibiotics7030083.

Abstract

The chemical analysis of insect-associated Actinobacteria has attracted the interest of natural product chemists in the past years as bacterial-produced metabolites are sought to be crucial for sustaining and protecting the insect host. The objective of our study was to evaluate the phylogeny and bioprospecting of Actinobacteria associated with fungus-growing termites. We characterized 97 Actinobacteria from the gut, exoskeleton, and fungus garden (comb) of the fungus-growing termite and used two different bioassays to assess their general antimicrobial activity. We selected two strains for chemical analysis and investigated the culture broth of the axenic strains and fungus-actinobacterium co-cultures. From these studies, we identified the previously-reported PKS-derived barceloneic acid A and the PKS-derived rubterolones. Analysis of culture broth yielded a new dichlorinated diketopiperazine derivative and two new tetracyclic lanthipeptides, named rubrominins A and B. The discussed natural products highlight that insect-associated Actinobacteria are highly prolific natural product producers yielding important chemical scaffolds urgently needed for future drug development programs.

摘要

在过去几年中,对与昆虫相关的放线菌进行化学分析引起了天然产物化学家的兴趣,因为人们认为细菌产生的代谢产物对于维持和保护昆虫宿主至关重要。我们研究的目的是评估与培菌白蚁相关的放线菌的系统发育和生物勘探。我们对来自培菌白蚁的肠道、外骨骼和菌圃(菌巢)中的97株放线菌进行了表征,并使用两种不同的生物测定方法来评估它们的一般抗菌活性。我们选择了两株菌株进行化学分析,并研究了无菌菌株和真菌 - 放线菌共培养物的培养液。通过这些研究,我们鉴定出了先前报道的聚酮合酶(PKS)衍生的巴塞洛内酯A和PKS衍生的红菌素。对培养液的分析产生了一种新的二氯代二酮哌嗪衍生物和两种新的四环羊毛硫肽,分别命名为红菌素A和B。所讨论的天然产物表明,与昆虫相关的放线菌是高产的天然产物生产者,能产生未来药物开发计划急需的重要化学骨架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88b7/6165096/2565e308b52f/antibiotics-07-00083-g001.jpg

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