Department of Biotechnology and Biomedicine, Technical University of Denmark, Lyngby, Denmark.
NPJ Biofilms Microbiomes. 2023 Mar 23;9(1):12. doi: 10.1038/s41522-023-00379-3.
Microbial secondary metabolites play important roles in biotic interactions in microbial communities and yet, we do not understand how these compounds impact the assembly and development of microbial communities. To address the implications of microbial secondary metabolite production on biotic interactions in the assembly of natural seawater microbiomes, we constructed a model system where the assembly of a natural seawater biofilm community was influenced by the addition of the marine biofilm forming Phaeobacter inhibens that can produce the antibiotic secondary metabolite tropodithietic acid (TDA), or a mutant incapable of TDA production. Because of the broad antibiotic activity of TDA, we hypothesized that the potential of P. inhibens to produce TDA would strongly affect both biofilm and planktonic community assembly patterns. We show that 1.9 % of the microbial composition variance across both environments could be attributed to the presence of WT P. inhibens, and especially genera of the Bacteriodetes were increased by the presence of the TDA producer. Moreover, network analysis with inferred putative microbial interactions revealed that P. inhibens mainly displayed strong positive associations with genera of the Flavobacteriaceae and Alteromonadaceae, and that P. inhibens acts as a keystone OTU in the biofilm exclusively due to its potential to produce TDA. Our results demonstrate the potential impact of microbial secondary metabolites on microbial interactions and assembly dynamics of complex microbial communities.
微生物次生代谢产物在微生物群落的生物相互作用中发挥着重要作用,但我们并不清楚这些化合物如何影响微生物群落的组装和发展。为了研究微生物次生代谢产物的产生对自然海水微生物组组装过程中生物相互作用的影响,我们构建了一个模型系统,在该系统中,自然海水生物膜群落的组装受到海洋生物膜形成菌 Phaeobacter inhibens 的添加影响,该菌可以产生抗生素次生代谢产物 tropodithietic acid (TDA),或者是不能产生 TDA 的突变体。由于 TDA 具有广泛的抗生素活性,我们假设 P. inhibens 产生 TDA 的潜力将强烈影响生物膜和浮游生物群落的组装模式。我们表明,两种环境中微生物组成的方差有 1.9%可以归因于 WT P. inhibens 的存在,特别是 Bacteriodetes 属的丰度因 TDA 产生菌的存在而增加。此外,通过推断微生物之间的潜在相互作用进行的网络分析表明,P. inhibens 主要与 Flavobacteriaceae 和 Alteromonadaceae 的属呈强烈正相关,并且 P. inhibens 仅因其产生 TDA 的潜力而成为生物膜中的关键 OTU。我们的研究结果表明,微生物次生代谢产物对复杂微生物群落的微生物相互作用和组装动态具有潜在影响。