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首页> 外文期刊>Frontiers in Microbiology >Functional Characteristics of the Gut Microbiome in C57BL/6 Mice Differentially Susceptible to Plasmodium yoelii
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Functional Characteristics of the Gut Microbiome in C57BL/6 Mice Differentially Susceptible to Plasmodium yoelii

机译:C57BL / 6小鼠易感<斜体>约氏疟原虫的肠道微生物组的功能特性

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C57BL/6 mice are widely used for in vivo studies of immune function and metabolism in mammals. In a previous study, it was observed that when C57BL/6 mice purchased from different vendors were infected with Plasmodium yoelii , a causative agent of murine malaria, they exhibited both differential immune responses and significantly different parasite burdens: these patterns were reproducible when gut contents were transplanted into gnotobiotic mice. To gain insight into the mechanism of resistance, we removed whole ceca from mice purchased from two vendors, Taconic Biosciences (low parasitemia) and Charles River Laboratories (high parasitemia), to determine the combined host and microflora metabolome and metatranscriptome. With the exception of two Charles River samples, we observed ≥90% similarity in overall bacterial gene expression within vendors and ≤80% similarity between vendors. In total 33 bacterial genes were differentially expressed in Charles River mice ( p -value < 0.05) relative to the mice purchased from Taconic. Included among these, fliC , ureABC , and six members of the nuo gene family were overrepresented in microbiomes susceptible to more severe malaria. Moreover, 38 mouse genes were differentially expressed in these purported genetically identical mice. Differentially expressed genes included basigin , a cell surface receptor required for P. falciparum invasion of red blood cells. Differences in metabolite pools were detected, though their relevance to malaria infection, microbial community activity, or host response is not yet understood. Our data have provided new targets that may connect gut microbial activity to malaria resistance and susceptibility phenotypes in the C57BL/6 model organism.
机译:C57BL / 6小鼠被广泛用于哺乳动物免疫功能和代谢的体内研究。在先前的研究中,观察到当从不同供应商处购买的C57BL / 6小鼠感染鼠疟原虫yoelii约氏疟原虫时,它们表现出不同的免疫反应和明显不同的寄生虫负担:当肠内容物含量高时,这些模式可重现被移植到gnotobiotic小鼠。为了深入了解耐药机制,我们从Taconic Biosciences(低寄生虫病)和Charles River Laboratories(高寄生虫病)这两家供应商处购买的小鼠中去除了整个盲肠,以确定宿主和微生物区系代谢组和元转录组。除两个Charles River样本外,我们观察到供应商内部细菌基因总体表达的≥90%相似性,而卖方之间的相似性≤80%。相对于购自Taconic的小鼠,在Charles River小鼠中共有33种细菌基因差异表达(p值<0.05)。其中,fliC,ureABC和nuo基因家族的6个成员在易受更严重疟疾侵袭的微生物群中代表过多。此外,在这些所谓的基因相同的小鼠中38个小鼠基因差异表达。差异表达的基因包括basigin,这是恶性疟原虫侵袭红细胞所需的细胞表面受体。尽管尚不了解它们与疟疾感染,微生物群落活动或宿主反应的相关性,但仍检测到了代谢物库的差异。我们的数据提供了新的靶标,这些靶标可能将肠道微生物活性与C57BL / 6模型生物中的疟疾抗药性和易感性表型联系起来。

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