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大口黑鲈(Micropterus salmoides)肠道微生物群与水培系统环境微生物群之间的关系。

Connection between the gut microbiota of largemouth bass (Micropterus salmoides) and microbiota of the aquaponics system environment.

机构信息

Fisheries Science Institute, Microbiota Group, Beijing Academy of Agriculture and Forestry Sciences, P.O. Box: 100068, Beijing, China.

出版信息

Environ Sci Pollut Res Int. 2024 Oct;31(49):59125-59139. doi: 10.1007/s11356-024-35120-w. Epub 2024 Sep 28.

Abstract

The significant role played by the gut microbiota in fish growth, development, immunity, and overall health has been widely established. Nevertheless, there remains a lack of clarity regarding the interaction and origin between the environmental microbiota and the gut microbiota of aquaculture species within the aquaponics coupling system. Thus, we conducted an analysis of the gut microbiota of largemouth bass (Micropterus salmoides) obtained from an indoor enclosed circulating water aquaponics coupling system located in greenhouses in northern China. Additionally, we examined the microbiota of the fish pond water and tomato rhizosphere soil using high-throughput sequencing of the 16S rRNA gene. Our results demonstrated significant differences in the compositions of fish pond water, rhizosphere soil, and the gut microbiota of largemouth bass. Moreover, these compositions changed throughout the culture period. Approximately 11.99% of the bacterial composition in the gut microbiota of largemouth bass could be attributable to the rhizosphere soil microbiota, while 62.01% of the bacterial composition could be attributable to the fish pond water microbiota. However, the proportion of bacteria in the gut microbiota from the fish pond water microbiota remained respectively 40.90% and 56.15% in May and September, which increased markedly to 88.97% in July. Similarly, the proportion of bacteria in the pond water microbiota from the tomato rhizosphere soil microbiota were respectively 0% and 8.95% in samples collected in May and September, which increased markedly to 69.26% in July, and the proportion of bacteria in the gut microbiota from the tomato rhizosphere soil microbiota were respectively 0.07% and 0% in samples collected in May and September, which increased to 0.45% in July. The research results offer essential insights into the interactions and origins of environmental microbiota and gut microbiota in the aquaponics system of cultured fish. This knowledge could enhance green aquaponics practices for largemouth bass.

摘要

肠道微生物群在鱼类的生长、发育、免疫和整体健康中起着重要作用,这一点已得到广泛证实。然而,在水产养殖物种的水产养殖系统中,环境微生物群与肠道微生物群之间的相互作用和起源仍不清楚。因此,我们对来自中国北方温室室内封闭循环水水产养殖系统的大口黑鲈(Micropterus salmoides)的肠道微生物群进行了分析。此外,我们还通过高通量测序 16S rRNA 基因对鱼塘水和番茄根际土壤的微生物进行了检测。我们的研究结果表明,鱼塘水、根际土壤和大口黑鲈肠道微生物群的组成存在显著差异。此外,这些组成在整个养殖期间都发生了变化。大约 11.99%的大口黑鲈肠道微生物群的细菌组成可归因于根际土壤微生物群,而 62.01%的细菌组成可归因于鱼塘水微生物群。然而,池塘水微生物群在五月和九月的肠道微生物群中的细菌比例分别为 40.90%和 56.15%,在七月时显著增加到 88.97%。同样,在五月和九月采集的样本中,来自番茄根际土壤微生物群的池塘水微生物群中的细菌比例分别为 0%和 8.95%,在七月时显著增加到 69.26%,而来自番茄根际土壤微生物群的肠道微生物群中的细菌比例分别为 0.07%和 0%,在七月时增加到 0.45%。研究结果为水产养殖系统中养殖鱼类的环境微生物群和肠道微生物群的相互作用和起源提供了重要的见解。这些知识可以增强大口黑鲈绿色水产养殖的实践。

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