Lin-Lin Xu, Shelby E McIlroy, Yueqiong Ni, Isis Guibert, Jiarui Chen, Ulisses Rocha, David M Baker, Gianni Panagiotou
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引用次数: 0
摘要
海洋沉积物中的微生物群落对海洋生态系统的整体健康和恢复能力有重要贡献。然而,人类干扰的增加破坏了生物多样性,进而破坏了海洋沉积物的自然功能。在这里,我们通过对沉积物微生物组进行深度枪式元基因组测序,并对底栖元动物进行 COI 代谢编码,证明微生物和元动物分类变异的 50% 以上可以用特定的化学污染指数来解释。有趣的是,微生物群落分类学和功能属性的相似性与底栖元动物群落组成的相似性之间存在明显的相关性。此外,我们还进行了中介分析来评估微生物组介导的间接效应,结果表明,在污染对底栖元胞动物的总效应中,微生物物种和功能分别占 36% 和 26%。我们的研究为今后在城市化沿海地区探索海洋生态系统的研究引入了一个多层次的视角,揭示了污染压力对微生物群落及其关键生物地球化学功能的影响,这反过来又可能影响大型底栖动物的组成。
Chemical pollution drives taxonomic and functional shifts in marine sediment microbiome, influencing benthic metazoans.
Microbial communities in marine sediments contribute significantly to the overall health and resiliency of marine ecosystems. However, increased human disturbance undermines biodiversity and, hence, natural functionality provided by marine sediments. Here, through a deep shotgun metagenomics sequencing of the sediment microbiome and COI metabarcoding of benthic metazoans, we demonstrate that >50% of the microorganisms' and metazoan's taxonomic variation can be explained by specific chemical pollution indices. Interestingly, there was a significant correlation between the similarity in microbiome communities' taxonomical and functional attributes and the similarity of benthic metazoans community composition. Furthermore, mediation analysis was conducted to evaluate the microbiome-mediated indirect effect, suggesting that microbial species and functions accounted for 36% and 26%, respectively, of the total effect of pollution on the benthic metazoans. Our study introduces a multi-level perspective for future studies in urbanized coastal areas to explore marine ecosystems, revealing the impact of pollution stress on microbiome communities and their critical biogeochemical functions, which in turn may influence macrofaunal composition.