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营养污染改变了一种领地性珊瑚礁鱼类的肠道微生物群。

Nutrient pollution alters the gut microbiome of a territorial reef fish.

作者信息

Degregori Samuel, Casey Jordan M, Barber Paul H

机构信息

Department of Ecology and Evolutionary Biology, University of California, 621 Young Drive South, Los Angeles, CA 90095, USA.

Department of Marine Science, University of Texas at Austin, Marine Science Institute, 750 Channel View Drive, Port Aransas, TX 78373, USA.

出版信息

Mar Pollut Bull. 2021 Aug;169:112522. doi: 10.1016/j.marpolbul.2021.112522. Epub 2021 Jun 4.

Abstract

Human-induced nutrient pollution threatens coral reefs worldwide. Although eutrophication disrupts coral microbiomes, often leading to coral mortality, it is unknown whether eutrophication impacts the microbiomes of other coral reef organisms. Of particular interest are herbivorous fishes, whose algae consumption is critical in maintaining healthy corals. To examine the effects of eutrophication on fish gut microbiomes, we experimentally enriched territories of Stegastes nigricans, a predominantly herbivorous damselfish that farms turf algae. Using 16S RNA sequencing, we demonstrate that hindgut and foregut microbiomes have significantly higher alpha diversity in nutrient-enriched territories as compared to unenriched controls. S. nigricans gut microbiomes also exhibited significantly different compositions across treatments. In contrast, these changes were not observed in the microbiomes of the turf algae consumed by S. nigricans, indicating that the gut microbiome changes were autochthonous. Combined, our results provide a novel example of endogenous microbial shifts in wild vertebrates caused by simulated anthropogenic stress.

摘要

人为造成的营养污染威胁着全球的珊瑚礁。尽管富营养化会破坏珊瑚微生物群,常常导致珊瑚死亡,但富营养化是否会影响其他珊瑚礁生物的微生物群仍不清楚。特别值得关注的是草食性鱼类,它们对藻类的消耗对于维持健康的珊瑚至关重要。为了研究富营养化对鱼类肠道微生物群的影响,我们通过实验对主要以养殖丝状藻类为生的草食性雀鲷——黑背眶锯雀鲷(Stegastes nigricans)的领地进行了营养富集处理。通过16S RNA测序,我们证明,与未富集的对照组相比,在营养富集的领地中,后肠和前肠微生物群的α多样性显著更高。黑背眶锯雀鲷的肠道微生物群在不同处理之间也表现出显著不同的组成。相比之下,在黑背眶锯雀鲷所食用的丝状藻类的微生物群中未观察到这些变化,这表明肠道微生物群的变化是内生的。综合来看,我们的结果提供了一个由模拟人为压力导致野生脊椎动物内源性微生物变化的新例子。

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