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水产养殖生态系统水-鱼界面的微生物组:以投喂新型昆虫饲料的虹鳟为案例研究。

Aquaculture ecosystem microbiome at the water-fish interface: the case-study of rainbow trout fed with Tenebrio molitor novel diets.

机构信息

ZooPlantLab, Biotechnology and Biosciences Department, University of Milano-Bicocca, Milan, Italy.

Quantia Consulting Srl, Milan, Italy.

出版信息

BMC Microbiol. 2023 Sep 6;23(1):248. doi: 10.1186/s12866-023-02990-y.

Abstract

BACKGROUND

Sustainable aquaculture relies on multiple factors, including water quality, fish diets, and farmed fish. Replacing fishmeal (FM) with alternative protein sources is key for improving sustainability in aquaculture and promoting fish health. Indeed, great research efforts have been made to evaluate novel feed formulations, focusing especially on the effects on the fish gut microbiome. Few studies have explored host-environment interactions. In the present study, we evaluated the influence of novel insect-based (Tenebrio molitor) fish diets on the microbiome at the water-fish interface in an engineered rainbow trout (Oncorhynchus mykiss) farming ecosystem. Using 16S rRNA gene metabarcoding, we comprehensively analyzed the microbiomes of water, tank biofilm, fish intestinal mucus, fish cutis, and feed samples.

RESULTS

Core microbiome analysis revealed the presence of a highly reduced core shared by all sample sources, constituted by Aeromonas spp., in both the control and novel feed test groups. Network analysis showed that samples were clustered based on the sample source, with no significant differences related to the feed formulation tested. Thus, the different diets did not seem to affect the environment (water and tank biofilm) and fish (cutis and intestinal mucus) microbiomes. To disentangle the contribution of feed at a finer scale, we performed a differential abundance analysis and observed differential enrichment/impoverishment in specific taxa, comparing the samples belonging to the control diet group and the insect-based diet group.

CONCLUSIONS

Omic exploration of the water-fish interface exposes patterns that are otherwise undetected. These data demonstrate a link between the environment and fish and show that subtle but significant differences are caused by feed composition. Thus, the research presented here is a step towards positively influencing the aquaculture environment and its microbiome.

摘要

背景

可持续水产养殖依赖于多个因素,包括水质、鱼类饮食和养殖鱼类。用替代蛋白质来源替代鱼粉(FM)是提高水产养殖可持续性和促进鱼类健康的关键。事实上,已经做出了巨大的研究努力来评估新型饲料配方,特别是关注对鱼类肠道微生物组的影响。很少有研究探索宿主-环境相互作用。在本研究中,我们评估了新型昆虫(黄粉虫)鱼饲料对工程虹鳟(Oncorhynchus mykiss)养殖系统水-鱼界面微生物组的影响。使用 16S rRNA 基因代谢组学,我们全面分析了水、水箱生物膜、鱼类肠道粘液、鱼类表皮和饲料样本的微生物组。

结果

核心微生物组分析显示,存在一个由 Aeromonas spp. 组成的高度还原核心,存在于所有样本来源中,无论是对照组还是新型饲料实验组。网络分析表明,根据样本来源对样本进行聚类,与所测试的饲料配方无关。因此,不同的饮食似乎不会影响环境(水和水箱生物膜)和鱼类(表皮和肠道粘液)微生物组。为了更精细地分离饲料的贡献,我们进行了差异丰度分析,并观察到特定分类群的差异富集/贫化,比较属于对照组和昆虫组的样本。

结论

对水-鱼界面的组学探索揭示了否则无法检测到的模式。这些数据表明环境与鱼类之间存在联系,并表明饲料成分引起了微妙但显著的差异。因此,这里提出的研究是朝着积极影响水产养殖环境及其微生物组迈出的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e86/10481543/2d9820885f0f/12866_2023_2990_Fig1_HTML.jpg

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