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本文引用的文献

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Community ecology as a framework for human microbiome research.以社区生态学为框架的人类微生物组研究。
Nat Med. 2019 Jun;25(6):884-889. doi: 10.1038/s41591-019-0464-9. Epub 2019 May 27.
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Microbiomes as Metacommunities: Understanding Host-Associated Microbes through Metacommunity Ecology.微生物组作为元群落:通过元群落生态学理解宿主相关微生物。
Trends Ecol Evol. 2018 Dec;33(12):926-935. doi: 10.1016/j.tree.2018.09.002. Epub 2018 Sep 25.
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Bacterial antagonism in host-associated microbial communities.宿主相关微生物群落中的细菌拮抗作用。
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Structural and functional relations of the white sturgeon alimentary canal (Acipenser transmontanus).白鲟消化道(高首鲟)的结构与功能关系
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The Gut Microbiota of Marine Fish.海洋鱼类的肠道微生物群
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Regulation of life span by the gut microbiota in the short-lived African turquoise killifish.肠道微生物群调控短命非洲慈鲷的寿命。
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Convergence of gut microbiotas in the adaptive radiations of African cichlid fishes.非洲丽鱼适应性辐射中肠道微生物群的趋同现象。
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Ontogenetic Characterization of the Intestinal Microbiota of Channel Catfish through 16S rRNA Gene Sequencing Reveals Insights on Temporal Shifts and the Influence of Environmental Microbes.通过16S rRNA基因测序对斑点叉尾鮰肠道微生物群进行个体发育特征分析,揭示了时间变化及环境微生物影响的相关见解。
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The impact of rearing environment on the development of gut microbiota in tilapia larvae.养殖环境对罗非鱼幼鱼肠道微生物群发育的影响。
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幼体湖鲟肠道微生物组组装的生态和个体发生成分、演替动态以及中性群落过程的生态评估。

Ecological and Ontogenetic Components of Larval Lake Sturgeon Gut Microbiota Assembly, Successional Dynamics, and Ecological Evaluation of Neutral Community Processes.

机构信息

Department of Fisheries & Wildlife, Michigan State University, East Lansing, Michigan, USA

Center for Frontier Sciences, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, Bangi, Malaysia.

出版信息

Appl Environ Microbiol. 2020 May 5;86(10). doi: 10.1128/AEM.02662-19.

DOI:10.1128/AEM.02662-19
PMID:32169941
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7205500/
Abstract

Gastrointestinal (GI) or gut microbiotas play essential roles in host development and physiology. These roles are influenced partly by the microbial community composition. During early developmental stages, the ecological processes underlying the assembly and successional changes in host GI community composition are influenced by numerous factors, including dispersal from the surrounding environment, age-dependent changes in the gut environment, and changes in dietary regimes. However, the relative importance of these factors to the gut microbiota is not well understood. We examined the effects of environmental (diet and water sources) and host early ontogenetic development on the diversity of and the compositional changes in the gut microbiota of a primitive teleost fish, the lake sturgeon (), based on massively parallel sequencing of the 16S rRNA gene. Fish larvae were raised in environments that differed in water source (stream versus filtered groundwater) and diet (supplemented versus nonsupplemented fish). We quantified the gut microbial community structure at three stages (prefeeding and 1 and 2 weeks after exogenous feeding began). The diversity declined and the community composition differed significantly among stages; however, only modest differences associated with dietary or water source treatments were documented. Many taxa present in the gut were over- or underrepresented relative to neutral expectations in each sampling period. The findings indicate dynamic relationships between the gut microbiota composition and host gastrointestinal physiology, with comparatively smaller influences being associated with the rearing environments. Neutral models of community assembly could not be rejected, but selectivity associated with microbe-host GI tract interactions through early ontogenetic stages was evident. The results have implications for sturgeon conservation and aquaculture production specifically and applications of microbe-based management in teleost fish generally. We quantified the effects of environment (diet and water sources) and host early ontogenetic development on the diversity of and compositional changes in gut microbial communities based on massively parallel sequencing of the 16S rRNA genes from the GI tracts of larval lake sturgeon (). The gut microbial community diversity declined and the community composition differed significantly among ontogenetic stages; however, only modest differences associated with dietary or water source treatments were documented. Selectivity associated with microbe-host GI tract interactions through early ontogenetic stages was evident. The results have implications for lake sturgeon and early larval ecology and survival in their natural habitat and for conservation and aquaculture production specifically, as well as applications of microbe-based management in teleost fish generally.

摘要

胃肠道(GI)或肠道微生物群在宿主发育和生理学中发挥着重要作用。这些作用部分受到微生物群落组成的影响。在早期发育阶段,宿主 GI 群落组成的组装和演替变化背后的生态过程受到许多因素的影响,包括来自周围环境的扩散、肠道环境随年龄的变化以及饮食方式的变化。然而,这些因素对肠道微生物群的相对重要性尚不清楚。我们基于 16S rRNA 基因的大规模平行测序,研究了环境(饮食和水源)和宿主早期个体发育对原始硬骨鱼(湖鲟)肠道微生物多样性和组成变化的影响。鱼仔在不同水源(溪流与过滤地下水)和饮食(补充与非补充 鱼)的环境中饲养。我们在三个阶段(摄食前和外源喂养开始后 1 周和 2 周)量化了肠道微生物群落结构。多样性下降,群落组成在各阶段有显著差异;然而,仅记录到与饮食或水源处理相关的适度差异。在每个采样期,许多存在于肠道中的分类群相对于中性预期被过度或不足代表。研究结果表明,肠道微生物群落组成与宿主胃肠道生理学之间存在动态关系,而与饲养环境相关的影响相对较小。群落组装的中性模型不能被拒绝,但通过早期个体发育阶段与微生物-宿主 GI 道相互作用相关的选择性是明显的。研究结果对湖鲟的保护和水产养殖生产具有特定意义,对一般硬骨鱼的基于微生物的管理应用也具有意义。我们基于大规模平行测序 GI 道的 16S rRNA 基因,量化了环境(饮食和水源)和宿主早期个体发育对肠道微生物群落多样性和组成变化的影响。从肠道微生物群落多样性下降和各阶段群落组成差异显著;然而,仅记录到与饮食或水源处理相关的适度差异。通过早期个体发育阶段与微生物-宿主 GI 道相互作用相关的选择性是明显的。研究结果对湖鲟及其在自然栖息地的早期幼虫生态学和生存以及保护和水产养殖生产具有特定意义,对一般硬骨鱼的基于微生物的管理应用也具有意义。