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虾类养殖过程中随机组装会增加虾肠道微生物组的复杂性和稳定性。

Stochastic Assembly Increases the Complexity and Stability of Shrimp Gut Microbiota During Aquaculture Progression.

机构信息

Dalian Ocean Development Affairs Service, Dalian, Liaoning, 116023, China.

Dalian Ocean University, Dalian Liaoning, 116023, China.

出版信息

Mar Biotechnol (NY). 2024 Feb;26(1):92-102. doi: 10.1007/s10126-023-10279-4. Epub 2024 Jan 2.

Abstract

The gut microbiota of aquaculture species contributes to their food metabolism and regulates their health, which has been shown to vary during aquaculture progression of their hosts. However, limited research has examined the outcomes and mechanisms of these changes in the gut microbiota of hosts. Here, Kuruma shrimps from the beginning, middle, and late stages of aquaculture progression (about a time duration of 2 months between each stage) were collected and variations in the gut microbiota of Kuruma shrimp during the whole aquaculture process were examined. High-throughput sequencing demonstrated increases in the diversity and richness of the shrimp gut microbiota with aquaculture progression. In addition, the gut microbiota composition differed among cultural stages, with enrichment of Firmicutes, RF39, and Megamonas and a reduction in Proteobacteria in the mid-stage. Notably, only very few taxa were persistent in the shrimp gut microbiota during the whole aquaculture progression, while the number of taxa that specific to the end of aquaculture was high. Network analysis revealed increasing complexity of the shrimp gut microbiota during aquaculture progression. Moreover, the shrimp gut microbiota became significantly more stable towards the end of aquaculture. According to the results of neutral community model, contribution of stochastic processes for shaping the shrimp gut microbiota was elevated along the aquaculture progression. This study showed substantial variations in shrimp gut microbiota during aquaculture progression and explored the underlying mechanisms regulating these changes.

摘要

养殖物种的肠道微生物群有助于其食物代谢,并调节其健康,宿主的养殖进展过程中,其肠道微生物群已被证明存在差异。然而,有限的研究调查了宿主肠道微生物群这些变化的结果和机制。在这里,从养殖进展的早期、中期和晚期收集了养殖的黑虎虾,并检查了整个养殖过程中黑虎虾肠道微生物群的变化。高通量测序表明,随着养殖的进展,虾肠道微生物群的多样性和丰富度增加。此外,肠道微生物群组成在养殖阶段之间存在差异,Firmicutes、RF39 和 Megamonas 富集,而中期 Proteobacteria 减少。值得注意的是,在整个养殖过程中,只有极少数的分类群在虾肠道微生物群中持续存在,而特定于养殖结束的分类群数量很多。网络分析显示,在养殖过程中,虾肠道微生物群的复杂性不断增加。此外,养殖结束时虾肠道微生物群的稳定性显著提高。根据中性群落模型的结果,在养殖进展过程中,随机过程对塑造虾肠道微生物群的贡献增加。本研究表明,在养殖过程中虾肠道微生物群发生了很大的变化,并探讨了调节这些变化的潜在机制。

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