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利用微生物互作网络推断厌氧环烷酸生物降解菌群中的潜在共营养关系。

Potential syntrophic associations in anaerobic naphthenic acids biodegrading consortia inferred with microbial interactome networks.

机构信息

Department of Environmental Engineering, China Jiliang University, Hangzhou, 310018, China.

Institute of Soil and Water Resources and Environmental Science, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, 310058, China.

出版信息

J Hazard Mater. 2020 Oct 5;397:122678. doi: 10.1016/j.jhazmat.2020.122678. Epub 2020 Jun 1.

Abstract

Naphthenic acids (NAs) can be syntrophically metabolized by indigenous microbial communities in pristine sediments beneath oil sands tailings ponds. Syntrophy is an essential determinant of the microbial interactome, however, the interactome network in anaerobic NAs-degrading consortia has not been previously addressed due to complexity and resistance of NAs. To evaluate the impact of electron acceptors on topology of interactome networks, we inferred two microbial interactome networks for anaerobic NAs-degrading consortia under nitrate- and sulfate-reducing conditions. The complexity of the network was higher under sulfate-reducing conditions than nitrate-reducing conditions. Differences in the taxonomic composition between the two modules implies that different potential syntrophic interactions exist in each network. We inferred the presence of the same syntrophic microorganisms, from genera Bellilinea, Longilinea, and Litorilinea, initiating the metabolism in both networks, but within each network, we predicted unique syntrophic associations that have not been reported. Electron acceptor has a large effect on the interactome networks for anaerobic NAs-degrading consortia, offers insight into an unrecognized dimension of these consortia. These results provide a novel approach for exploring potential syntrophic relationships in biodegrading processes to help cost-effectively remove NAs in oil sands tailings ponds.

摘要

环烷酸(NAs)可以被油砂尾矿池底原始沉积物中的土著微生物群落协同代谢。共生是微生物相互作用的重要决定因素,然而,由于 NAs 的复杂性和抗性,厌氧 NAs 降解共生体中的相互作用网络尚未得到解决。为了评估电子受体对相互作用网络拓扑结构的影响,我们在硝酸盐和硫酸盐还原条件下,对厌氧 NAs 降解共生体推断了两个微生物相互作用网络。硫酸盐还原条件下网络的复杂性高于硝酸盐还原条件。两个模块之间的分类组成差异表明,每个网络中存在不同的潜在共生相互作用。我们推断出相同的共生微生物存在于属 Bellilinea、Longilinea 和 Litorilinea 中,它们在两个网络中启动代谢,但在每个网络中,我们预测了一些独特的共生关系,这些关系尚未被报道过。电子受体对厌氧 NAs 降解共生体的相互作用网络有很大影响,为这些共生体提供了一个未被认识的维度的见解。这些结果为探索生物降解过程中的潜在共生关系提供了一种新方法,有助于在经济上有效地去除油砂尾矿池中的 NAs。

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