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南方鲇胃肠道微生物群落的高时空变化:对动态食物消化的见解

High Spatial and Temporal Variations of Microbial Community along the Southern Catfish Gastrointestinal Tract: Insights into Dynamic Food Digestion.

作者信息

Zhang Zhimin, Li Dapeng, Refaey Mohamed M, Xu Weitong

机构信息

Department of Fishery Resources and Environment, College of Fisheries, Huazhong Agricultural UniversityWuhan, China.

Hubei Provincial Engineering Laboratory for Pond AquacultureWuhan, China.

出版信息

Front Microbiol. 2017 Aug 9;8:1531. doi: 10.3389/fmicb.2017.01531. eCollection 2017.

Abstract

The fish intestinal microbiota is affected by dietary shifts or diet-related seasonal fluctuations making it highly variable and dynamic. It assists with the digestion and absorption of food that is a common, yet dynamic process. However, fundamental dynamics of microbial ecology associated with food digestion in intestine and stomach are poorly understood in fish. We selected the southern catfish, , as the targeted species, owing to its foraging behavior with a large meal that can assure clear periodic rhythms in food digestion, to study spatial variations of the microbial community along the gastrointestinal (GI) tract. We further evaluated temporal microbial dynamics by collecting GI tract samples at time intervals 03, 12, and 24h after feeding. High-throughput sequencing results showed higher microbial diversity in the stomach than in the intestine and distinguishable community structures between stomach and intestine. were dominated by both and unclassified , which was the most abundant taxon in the stomach, whereas were dominated by , which prevailed in the intestine. was significantly increased and was decreased after feeding. Furthermore, inter-stomach microbial variability was greater than inter-intestine microbial variability. These results demonstrate that GI microbial assemblies are specific per anatomical site and are highly dynamic during food digestion, indicating that digestive status and/or sampling time are factors potentially influencing the microbial compositions. Furthermore, the finding of high spatial and temporal variations of the microbial community along the GI tract suggests limitations of single sampling regime to study food-derived microbial ecology.

摘要

鱼类肠道微生物群会受到饮食变化或与饮食相关的季节性波动的影响,从而使其具有高度的变异性和动态性。它有助于食物的消化和吸收,这是一个常见但又动态变化的过程。然而,鱼类肠道和胃中与食物消化相关的微生物生态学基本动态仍知之甚少。我们选择南方鲇作为目标物种,因其摄食行为为大餐型,能够确保食物消化具有清晰的周期性节律,以此来研究胃肠道(GI)中微生物群落的空间变化。我们还通过在喂食后0、3、12和24小时的时间间隔收集胃肠道样本,进一步评估微生物的时间动态。高通量测序结果显示,胃中的微生物多样性高于肠道,且胃和肠道之间的群落结构可区分。胃中以[具体菌属1]和未分类的[具体菌属2]为主,[具体菌属2]是胃中最丰富的分类群,而肠道中以[具体菌属3]为主,[具体菌属3]在肠道中占优势。喂食后[具体菌属4]显著增加,[具体菌属5]减少。此外,胃间的微生物变异性大于肠间的微生物变异性。这些结果表明,胃肠道微生物组合在每个解剖部位都是特定的,并且在食物消化过程中具有高度动态性,这表明消化状态和/或采样时间是可能影响微生物组成的因素。此外,胃肠道中微生物群落的高空间和时间变异性的发现表明,单一采样方式在研究食物来源的微生物生态学方面存在局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d24/5552716/64a916f005e3/fmicb-08-01531-g0001.jpg

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