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从皮肤到肠道:了解东北林蛙和黑龙江林蛙的微生物多样性。

From Skin to Gut: Understanding Microbial Diversity in Rana amurensis and R. dybowskii.

机构信息

Heilongjiang Vocational College of Agricultural Technology, Jiamusi, 154007, China.

College of Biology and Agriculture, Jiamusi University, Jiamusi, 154007, China.

出版信息

Curr Microbiol. 2024 Sep 13;81(11):354. doi: 10.1007/s00284-024-03868-6.

Abstract

Amphibians face the threat of decline and extinction, and their health is crucially affected by the microbiota. Their health and ecological adaptability essentially depend on the diverse microbial communities that are shaped by unique host traits and environmental factors. However, there is still limited research on this topic. In this study, cutaneous (C) and gut (G) microbiota in Rana amurensis (A) and R. dybowskii (D) was analyzed through 16S amplicon sequencing. Groups AC and DC significantly differed in alpha diversity, while the gut groups (AG and DG) showed no such differences. Analyses of Bray-Curtis dissimilarity matrix and unweighted UniFrac distances showed significant differences in cutaneous microbiota between groups AC and DC, but not between groups AG and DG. Stochastic processes significantly influenced the assembly of cutaneous and gut microbiota in amphibians, with a notably higher species dispersal rate in the gut. The predominant phyla in the skin of R. amurensis and R. dybowskii were Bacteroidetes and Proteobacteria, respectively, with significant variations in Bacteroidota. Contrarily, the gut microbiota of both species was dominated by Firmicutes, Proteobacteria, and Bacteroidetes, without significant phylum-level differences. Linear discriminant analysis effect size (LEfSe) analysis identified distinct microbial enrichment in each group. Predictive analysis using phylogenetic investigation of communities by reconstruction of unobserved states 2 (PICRUSt2) revealed the significant functional pathways associated with the microbiota, which indicates their potential roles in immune system function, development, regeneration, and response to infectious diseases. This research underscores the critical impact of both host and environmental factors in shaping amphibian microbial ecosystems and emphasizes the need for further studies to explore these complex interactions for conservation efforts.

摘要

两栖动物面临着衰退和灭绝的威胁,其健康状况受到微生物群的极大影响。它们的健康和生态适应性主要取决于由独特的宿主特征和环境因素塑造的多样化微生物群落。然而,目前对这一主题的研究仍然有限。在这项研究中,通过 16S 扩增子测序分析了黑龙江林蛙(A)和花背蟾蜍(D)的皮肤(C)和肠道(G)微生物群。AC 和 DC 组在 alpha 多样性方面存在显著差异,而肠道组(AG 和 DG)则没有这种差异。Bray-Curtis 不相似性矩阵和非加权 UniFrac 距离分析表明,AC 和 DC 组之间的皮肤微生物群存在显著差异,但 AG 和 DG 组之间没有这种差异。随机过程显著影响了两栖动物皮肤和肠道微生物群的组装,肠道中的物种扩散率明显更高。黑龙江林蛙和花背蟾蜍皮肤的主要门分别为厚壁菌门和变形菌门,其中拟杆菌门有显著变化。相反,这两个物种的肠道微生物群主要由厚壁菌门、变形菌门和拟杆菌门组成,没有明显的门水平差异。线性判别分析效应量(LEfSe)分析确定了每个组中独特的微生物富集。使用未观察状态重建的群落系统发育分析 2(PICRUSt2)进行的预测分析揭示了与微生物群相关的显著功能途径,这表明它们在免疫系统功能、发育、再生和对传染病的反应中可能发挥作用。这项研究强调了宿主和环境因素在塑造两栖动物微生物生态系统方面的关键影响,并强调需要进一步研究探索这些复杂的相互作用,以促进保护工作。

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