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The Mammalian Microbiome and Its Importance in Laboratory AnimalResearch

机译:哺乳动物微生物组及其在实验动物中的重要性研究

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摘要

In this issue are assembled 10 fascinating, well-researched papers that describe the emerging field centered on the microbiome of vertebrate animals and how these complex microbial populations play a fundamental role in shaping homeostasis of the host. The content of the papers will deal with bacteria and, because of relative paucity of information on these organisms, will not include discussions on viruses, fungus, protozoa, and parasites that colonize various animals. Dissecting the number and interactions of the 500–1000 bacterial species that can inhabit the intestines of animals is made possible by advanced DNA sequencing methods, which do not depend on whether the organism can be cultured or not. Laboratory animals, particularly rodents, have proven to be an indispensable component in not only understanding how the microbiome aids in digestion and protects the host against pathogens, but also in understanding the relationship of various species of bacteria to development of the immune system. Importantly, this research elucidates purported mechanisms for how the microbiome can profoundly affect initiation and progression of diseases such as type 1 diabetes, metabolic syndromes, obesity, autoimmune arthritis, inflammatory bowel disease, and irritable bowel syndrome. The strengths and limitations of the use of germfree mice colonized with single species of bacteria, a restricted flora, or most recently the use of human-derived microbiota arealso discussed.
机译:在本期中,汇集了10篇引人入胜,经过大量研究的论文,这些论文以脊椎动物的微生物组为中心,描述了新兴领域,以及这些复杂的微生物种群如何在形成宿主体内稳态方面发挥基本作用。论文的内容将涉及细菌,并且由于有关这些生物的信息相对匮乏,因此将不包括关于病毒,真菌,原生动物和寄生于各种动物的寄生虫的讨论。可以通过先进的DNA测序方法来剖析可以栖息在动物肠道中的500–1000种细菌的数量和相互作用,这不取决于是否可以培养该生物。实验动物,特别是啮齿动物,已被证明是必不可少的组成部分,不仅可以理解微生物组如何帮助消化并保护宿主免受病原体侵害,而且还可以理解各种细菌与免疫系统发育之间的关系。重要的是,这项研究阐明了微生物组如何深刻影响疾病的发生和发展的机制,例如1型糖尿病,代谢综合征,肥胖症,自身免疫性关节炎,炎症性肠病和肠易激综合症。使用由单种细菌,有限菌群定殖的无菌小鼠的优势和局限性,或者最近使用人类来源的微生物群的优势和局限性是还讨论了。

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