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Herbivorous rodents (Neotoma spp.) harbour abundant and active foregut microbiota

机译:草食性啮齿动物(Neotoma spp。)拥有丰富而活跃的前肠微生物群

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Symbiotic gut microbes have facilitated the success of herbivorous mammals, which are generally grouped into foregut- and hindgut-fermenters. However, rodents are primarily herbivorous and exhibit a variety of gastrointestinal anatomies. Most rodents house microbes in hindgut chambers, such as the caecum and colon. Some rodents also exhibit stomach segmentation with a foregut chamber proximal to the stomach. For over a century, scientists have hypothesized that this foregut chamber houses a microbial community, yet this has never been explicitly examined. We investigated the capacity of each of the gut regions to house microbes by measuring size, pH, bacterial cell density, concentrations of microbial metabolites and digesta transit time in woodrats (Neotoma spp.). We also compared microbial communities across gut chambers, as well as faeces, using 16S rRNA sequencing. This allowed us to test the appropriateness of using faeces as a proxy for microbial communities of other gut chambers. We found that woodrats house foregut microbial communities with similar density and volatile fatty acid concentrations to rumen ecosystems. Resident microbial communities varied between gut chambers, and faecal bacterial communities were significantly different from caecal and colonic communities. The foregut microbiota may provide a number of physiological services to the host.
机译:共生肠道微生物促进了草食性哺乳动物的成功,通常将其分为前肠和后肠发酵罐。然而,啮齿动物主要是草食性的,并且表现出各种胃肠道解剖结构。大多数啮齿动物在盲肠腔中容纳微生物,例如盲肠和结肠。一些啮齿动物还表现出胃的分割,在靠近胃的地方有一个前肠室。一个多世纪以来,科学家一直假设该前肠室中有一个微生物群落,但从未对此进行过明确的检查。我们通过测量大小,pH,细菌细胞密度,微生物代谢物的浓度以及伍德拉特鼠(Neotoma spp。)中消化消化的时间来研究每个肠道区域容纳微生物的能力。我们还使用16S rRNA测序比较了整个肠道室和粪便中的微生物群落。这使我们能够测试使用粪便替代其他肠道室内微生物群落的适当性。我们发现,wood鼠的前肠微生物群落的密度和挥发性脂肪酸浓度与瘤胃生态系统相似。肠道室之间的居民微生物群落各不相同,粪便细菌群落与盲肠和结肠群落显着不同。前肠微生物群可以为宿主提供许多生理服务。

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