时空差异诱导了濒危有蹄类动物肠道微生物群结构和功能的变化。

IF 4.9 Q1 MICROBIOLOGY Animal microbiome Pub Date : 2024-12-20 DOI:10.1186/s42523-024-00362-z
Xiaofan Ma, Xiaoyu Hu, Kai Liu, Wei Wang, Wei Jia, Huayao Gao, Ming Lu, Jie Liu, Yunfeng Chen, Yingjie Ma, Yumei Li, Yonggang Nie
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引用次数: 0

摘要

动物肠道菌群的组成和功能受多种因素的影响,其中饮食是主要因素之一。饮食受到季节变化和地理差异的影响,这反过来又影响宿主的营养水平。为了适应这些环境变化,肠道微生物群经常产生相应的反应。了解环境、饮食、宿主和肠道微生物群之间的关系有助于探索野生动物的环境适应性。本研究以野生梅花鹿(Cervus nippon)为研究对象,探讨环境如何塑造肠道微生物群,影响微生物群组成与功能之间的关系,以及季节性生活环境对季节性饮食变化的相互适应。为此,我们采用DNA元编码、16S RNA基因扩增测序、宏基因组霰弹枪测序和营养分析等方法,全面考察饲料植物、营养状况和宿主肠道微生物群之间的关系。我们的分析表明,铁步和珲春地区在饮食上存在时空差异,这最终导致了蛋白质、纤维素和可溶性糖的摄入量不同。各组微生物组组成和功能表现出独特的特征,与营养相关的蛋白质吸收代谢途径、碳水化合物代谢吸收途径和纤维素酶功能在基因水平上存在显著差异。我们还发现不同群体肠道菌群的致病菌和耐药机制基因存在差异。结果表明,异域种群的肠道微生物群能够适应不同季节和地区食物组成和营养的变化,帮助宿主应对生活环境的时空变化。与此同时,不同程度的人类活动可能对野生动物的健康产生潜在影响。
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Spatiotemporal differences induced changes in the structure and function of the gut microbiota in an endangered ungulate.

The composition and function of animal gut microbiota are shaped by various factors, among which diet is one of the major factors. Diet is affected by seasonal shifts and geographical differences, which in turn impact the host's nutritional levels. To adapt to these environmental changes, the gut microbiome often produces matching responses. Understanding the relationships among the environment, diet, host and the gut microbiome is helpful for exploring the environmental adaptation of wildlife. Here, we chose wild sika deer (Cervus nippon), which is composed natural allopatric populations, to explore how the environment shapes the gut microbiome and affects the relationship between microbiota composition and function and the mutual adaptation of the seasonal living environment to seasonal dietary changes. To this purpose we used DNA metabarcoding, 16S RNA gene amplification sequencing, metagenomic shotgun sequencing and nutritional analyses to comprehensively examine the relationships among the forage plant, nutrient status and host gut microbiome. Our analyses showed spatiotemporal differences in diet between the Tiebu and Hunchun regions, which ultimately led to varying intakes of protein, cellulose, and soluble sugar. The microbiome composition and function showed unique characteristics in each group, and significant differences were detected at the gene level for the protein absorption and metabolism pathway, the carbohydrate metabolic absorption pathway, and cellulase enzyme function, which are related to nutrition. We also found differences in the pathogenic bacteria and resistance mechanisms genes of the gut microbiota in different groups. Our results showed that the gut microbiome of allopatric populations adapts to changes in food composition and nutrition in different seasons and areas to help the host cope with spatiotemporal changes in the living environment. At the same time, varying levels of human activity can have potential health impacts on wild animals.

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