哺乳动物微生物群的季节性动态在不同的环境之间
Mason R Stothart1,2, Hayley A Spina1, Michelle Z Hotchkiss3
1Department of Integrative Biology University of Guelph Guelph Ontario Canada.
Ecology and evolution
|December 19, 2023
概括
城市和郊区松鼠表现出不同的肠道微生物群,受环境和季节的影响. 像饮食和缓存这样的宿主行为可以保持微生物组的相似性,尽管存在环境差异.
科学领域:
- 微生物学 微生物学
- 生态生态学 生态生态学
- 动物行为 动物行为
背景情况:
- 与宿主相关的细菌微生物组有助于适应季节性和人为变化.
- 了解环境变化如何相互作用以塑造微生物群变异至关重要.
- 大多数野生动物微生物研究都缺乏季节性或环境背景.
研究的目的:
- 调查城市与郊区东部灰松鼠的季节性肠道微生物组变化.
- 确定环境环境是否影响季节性微生物组节奏.
- 探索宿主行为,饮食和微生物组结构的相互作用.
主要方法:
- 来自城市和郊区灰松鼠的肠道微生物组的16S幅测序.
- 在四个季节采样:春季,夏季,秋季和冬季.
- 微生物组组成和丰度模式的比较分析.
主要成果:
- 城市和郊区松鼠之间显著的微生物群差异持续了全年,可能是由于人为的食物.
- 秋季观察到微生物组的相似性,归因于种子缓存行为.
- 在冬季,在两种种群体中都发生了显著的Akkermansia*枯竭.
结论:
- 城市灰松鼠和外城灰松鼠之间的季节性微生物组模式不同.
- 主体的行为和饮食可以在环境和季节之间推动微生物群的相似性.
- 生理反应,如Akkermansia枯竭,突出了共同的季节性挑战.
相关概念视频
Introduction to Microbial Ecology
Microbial ecology examines the complex web of interactions and diversity among microorganisms within various ecosystems. This field seeks to understand how microbial populations adapt to and influence their environments and how these interactions shape broader ecological processes. Microbes are integral to ecosystem function, participating in nutrient cycling, energy flow, and the maintenance of environmental homeostasis.An ecosystem represents a dynamic interaction between living organisms...
Microenvironments
Microorganisms inhabit highly localized spaces known as microenvironments, which are defined by distinct physical and chemical characteristics. These include oxygen concentration, pH, temperature, light availability, and nutrient levels. The conditions within a microenvironment can differ markedly from those in the surrounding area and significantly influence microbial growth, metabolism, and community structure.Microenvironments often display sharp physicochemical gradients over small spatial...
Introduction to the Human Microbiota
Microorganisms colonize various regions of the human body, including the mouth, nasal passages, throat, stomach, intestines, urogenital tract, and skin. The total number of microbial cells is estimated to range from 10¹³ to 10¹⁴—comparable to, or exceeding, the number of human somatic cells. This host–microbiome relationship has led to the conceptualization of humans as supraorganisms, wherein microbial communities perform vital roles in development, immunity, and disease...
Development of Human Microbiota
The human microbiota begins developing at birth and undergoes continual change as we age. Infancy marks a critical period of microbial sensitivity, offering a “window of opportunity” during which beneficial microbes help mature the immune system. By age three, children typically develop a more stable and diverse microbial community. Newborns acquire microbes from their immediate environment; vaginal delivery favors maternal vaginal microbes, while cesarean births favor microbes from the skin...
The Oral Microbiota
The oral microbiome includes a complex ecosystem comprising over 700 microbial species, identified through genomic sequencing and culture-based analyses to date. This community includes a core microbiome, found universally among individuals, and a variable component influenced by environmental factors such as diet, lifestyle, and host genetics. Site-specific conditions, including oxygen gradients, pH levels, and nutrient availability, determine the spatial distribution of these microorganisms...
Microbiota of the Large Intestine
The large intestine hosts the most densely populated microbial ecosystem in the human body. This complex community primarily consists of anaerobic bacteria, with Bacillota (formerly Firmicutes) and Bacteroidota (formerly Bacteroidetes) as the predominant groups. The distribution of these microbes varies along different sections of the large intestine, influenced by local environmental factors such as oxygen availability and nutrient composition.The cecum, located at the beginning of the large...


