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近交系小鼠种群在引入设施后,其肠道微生物群的组成和功能会出现代际变化。

Inbred Mouse Populations Exhibit Intergenerational Changes in Intestinal Microbiota Composition and Function Following Introduction to a Facility.

作者信息

Choo Jocelyn M, Trim Paul J, Leong Lex E X, Abell Guy C J, Brune Carly, Jeffries Nicole, Wesselingh Steve, Dear T N, Snel Marten F, Rogers Geraint B

机构信息

Infection and Immunity Theme, South Australian Health and Medical Research Institute, AdelaideSA, Australia.

Lysosomal Diseases Research Unit, Nutrition and Metabolism Theme, South Australia Health and Medical Research Institute, AdelaideSA, Australia.

出版信息

Front Microbiol. 2017 Apr 11;8:608. doi: 10.3389/fmicb.2017.00608. eCollection 2017.

Abstract

Inbred mice are used to investigate many aspects of human physiology, including susceptibility to disease and response to therapies. Despite increasing evidence that the composition and function of the murine intestinal microbiota can substantially influence a broad range of experimental outcomes, relatively little is known about microbiome dynamics within experimental mouse populations. We investigated changes in the intestinal microbiome between C57BL/6J mice spanning six generations (assessed at generations 1, 2, 3, and 6), following their introduction to a stringently controlled facility. Fecal microbiota composition and function were assessed by 16S rRNA gene amplicon sequencing and liquid chromatography mass spectrometry, respectively. Significant divergence of the intestinal microbiota between founder and second generation mice, as well as continuing inter-generational variance, was observed. Bacterial taxa whose relative abundance changed significantly through time included , and ( < 0.05), all of which are recognized as having the potential to substantially influence host physiology. Shifts in microbiota composition were mirrored by corresponding differences in the fecal metabolome ( = 0.57, = 0.0001), with notable differences in levels of tryptophan pathway metabolites and amino acids, including glutamine, glutamate and aspartate. We related the magnitude of changes in the intestinal microbiota and metabolome characteristics during acclimation to those observed between populations housed in separate facilities, which differed in regards to husbandry, barrier conditions and dietary intake. The microbiome variance reported here has implications for experimental reproducibility, and as a consequence, experimental design and the interpretation of research outcomes across wide range of contexts.

摘要

近交系小鼠被用于研究人类生理学的许多方面,包括疾病易感性和对治疗的反应。尽管越来越多的证据表明,小鼠肠道微生物群的组成和功能可显著影响广泛的实验结果,但对于实验小鼠群体内微生物组的动态变化却知之甚少。我们研究了C57BL/6J小鼠在引入严格控制的饲养设施后,历经六代(在第1、2、3和6代进行评估)期间肠道微生物组的变化。分别通过16S rRNA基因扩增子测序和液相色谱质谱法评估粪便微生物群的组成和功能。观察到奠基小鼠和第二代小鼠之间肠道微生物群存在显著差异,并且代际差异持续存在。随时间相对丰度发生显著变化的细菌类群包括 、 和 ( < 0.05),所有这些都被认为有可能对宿主生理学产生重大影响。微生物群组成的变化反映在粪便代谢组的相应差异上( = 0.57, = 0.0001),色氨酸途径代谢物和氨基酸水平存在显著差异,包括谷氨酰胺、谷氨酸和天冬氨酸。我们将适应过程中肠道微生物群和代谢组特征的变化幅度与在饲养管理、屏障条件和饮食摄入方面存在差异的不同设施中饲养的小鼠群体之间观察到的变化幅度进行了关联。此处报道的微生物组差异对实验可重复性有影响,因此,在广泛的背景下对实验设计和研究结果的解释也有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f880/5387074/56f9dfd75830/fmicb-08-00608-g001.jpg

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