首页> 外文期刊>Microbial Ecology: An International Journal >Contrasting Ecological Processes and Functional Compositions Between Intestinal Bacterial Community in Healthy and Diseased Shrimp
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Contrasting Ecological Processes and Functional Compositions Between Intestinal Bacterial Community in Healthy and Diseased Shrimp

机译:健康和患病虾肠道细菌群落之间的生态过程和功能组成的对比

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Intestinal bacterial communities play a pivotal role in promoting host health; therefore, the disruption of intestinal bacterial homeostasis could result in disease. However, the effect of the occurrences of disease on intestinal bacterial community assembly remains unclear. To address this gap, we compared the multifaceted ecological differences in maintaining intestinal bacterial community assembly between healthy and diseased shrimps. The neutral model analysis shows that the relative importance of neutral processes decreases when disease occurs. This pattern is further corroborated by the ecosphere null model, revealing that the bacterial community assembly of diseased samples is dominated by stochastic processes. In addition, the occurrence of shrimp disease reduces the complexity and cooperative activities of species-to-species interactions. The keystone taxa affiliated with Alphapro teobacteria and Actinobacteria in healthy shrimp gut shift to Gammaproteobacteria species in diseased shrimp. Changes in intestinal bacterial communities significantly alter biological functions in shrimp. Within a given metabolic pathway, the pattern of enrichment or decrease between healthy and deceased shrimp is correlated with its functional effects. We propose that stressed shrimp are more prone to invasion by alien strains (evidenced by more stochastic assembly and higher migration rate in diseased shrimp), which, in turn, disrupts the cooperative activity among resident species. These findings greatly aid our understanding of the underlyingmechanisms that govern shrimp intestinal community assembly between health statuses.
机译:肠道细菌群落在促进宿主健康中起关键作用。因此,肠道细菌稳态的破坏可能导致疾病。然而,疾病的发生对肠道细菌群落组装的影响尚不清楚。为了解决这一差距,我们比较了健康虾和患病虾在维持肠道细菌群落组装方面的多方面生态差异。中性模型分析表明,疾病发生时中性过程的相对重要性降低。生态圈无效模型进一步证实了这种模式,这表明患病样品的细菌群落组装主要由随机过程决定。另外,虾病的发生降低了物种间相互作用的复杂性和合作活动。健康虾肠中与Alphapro细菌和放线菌相关的主要分类群转移到患病虾的Gproteobacteria菌种。肠道细菌群落的变化显着改变了虾的生物学功能。在给定的代谢途径中,健康虾和死虾之间的富集或减少模式与其功能作用相关。我们认为,受胁迫的虾更容易受到外来品系的入侵(有病虾的随机装配和更高的迁移率证明),这反过来又破坏了常驻物种之间的合作活动。这些发现极大地帮助我们了解了控制虾在健康状况之间的肠道肠道菌群组装的潜在机制。

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