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大西洋鳕鱼肠道后生境组装的驱动因素,投喂添加大型海藻的饲料。

Drivers of ecological assembly in the hindgut of Atlantic Cod fed a macroalgal supplemented diet.

机构信息

Microbiology Discipline, School of Natural Sciences, National University of Ireland Galway, Galway, Ireland.

Water and Environment Group, Infrastructure and Environment Division, James Watt School of Engineering, University of Glasgow, Glasgow, UK.

出版信息

NPJ Biofilms Microbiomes. 2022 May 4;8(1):36. doi: 10.1038/s41522-022-00296-x.

Abstract

It is difficult to disentangle the many variables (e.g. internal or external cues and random events) that shape the microbiota in the gastrointestinal tract of any living species. Ecological assembly processes applied to microbial communities can elucidate these drivers. In our study, farmed Atlantic cod (Gadus morhua) were fed a diet of 10% macroalgae supplement (Ulva rigida [ULVA] or Ascophyllum nodosum [ASCO] or a non-supplemented control diet [CTRL]) over 12 weeks. We determined the influence of ecological assembly processes using a suite of null-modelling tools. We observed dissimilarity in the abundance of common OTUs over time, which was driven by deterministic assembly. The CTRL samples showed selection as a critical assembly process. While dispersal limitation was a driver of the gut microbiome for fish fed the macroalgae supplemented diet at Week 12 (i.e., ASCO and ULVA). Fish from the ASCO grouping diverged into ASCO_N (normal) and ASCO_LG (lower growth), where ASCO_LG individuals found the diet unpalatable. The recruitment of new taxa overtime was altered in the ASCO_LG fish, with the gut microbiome showing phylogenetic underdispersion (nepotistic species recruitment). Finally, the gut microbiome (CTRL and ULVA) showed increasing robustness to taxonomic disturbance over time and lower functional redundancy. This study advances our understanding of the ecological assembly and succession in the hindgut of juvenile Atlantic cod across dietary treatments. Understanding the processes driving ecological assembly in the gut microbiome, in fish research specifically, could allow us to manipulate the microbiome for improved health or resilience to disease for improved aquaculture welfare and production.

摘要

很难理清影响任何生物胃肠道微生物群的众多变量(例如内部或外部线索和随机事件)。应用于微生物群落的生态组装过程可以阐明这些驱动因素。在我们的研究中,养殖大西洋鳕鱼(Gadus morhua)在 12 周内喂食 10%的海藻补充剂(Ulva rigida [ULVA]或Ascophyllum nodosum [ASCO]或未补充对照饮食[CTRL])。我们使用一整套零模型工具来确定生态组装过程的影响。我们观察到随着时间的推移常见 OTU 的丰度存在差异,这是由确定性组装驱动的。CTRL 样品显示选择是关键的组装过程。虽然扩散限制是 12 周时喂食海藻补充饮食的鱼类肠道微生物组的驱动因素(即 ASCO 和 ULVA)。来自 ASCO 分组的鱼分为 ASCO_N(正常)和 ASCO_LG(生长较低),其中 ASCO_LG 个体发现饮食不可口。随着时间的推移,新分类群的招募在 ASCO_LG 鱼类中发生了变化,肠道微生物组表现出系统发育过度分散(亲缘物种招募)。最后,肠道微生物组(CTRL 和 ULVA)显示出随着时间的推移对分类学干扰的抵抗力增强和功能冗余降低。这项研究增进了我们对幼龄大西洋鳕鱼在不同饮食处理下后肠生态组装和演替的理解。了解在鱼类研究中驱动肠道微生物组生态组装的过程,可以使我们操纵微生物组,以提高健康或对疾病的抵抗力,从而提高水产养殖福利和产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18e0/9068720/3f049b319aba/41522_2022_296_Fig1_HTML.jpg

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