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首页> 外文期刊>Nature reviews Cancer >Metagenomic characterisation of ruminal bacterial diversity in buffaloes from birth to adulthood using 16S rRNA gene amplicon sequencing
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Metagenomic characterisation of ruminal bacterial diversity in buffaloes from birth to adulthood using 16S rRNA gene amplicon sequencing

机译:使用16S rRNA基因扩增序列,从出生于生育中的水牛瘤瘤细菌多样性的聚蛋白表征

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Microbial colonisation in the forestomach of a ruminant is one of the most crucial factors in determining many of its physiological developments and digestive capabilities. The present study attempts to identify establishment pattern of microbes in relation to food, age and rumen development in the buffalo calves at every fortnight interval from birth to 6months of age, followed by every month till animals became 1year of age. Diversity study based on 16S rRNA gene sequencing identified rapidly changing bacterial population during initial 60days of life, which got assemblage as rumen became physiologically mature with increasing age of animals. A lactate fermenting aerobic to facultative anaerobic genera found during initial 30days of life were expeditiously replaced by strict anaerobic cellulolytic bacterial population with increasing age. The study confirms that initial colonisation mainly depends on the oral cavity and skin of the mother, followed by the surrounding environment and feed offered, which is reversed in order once animal gets older. Some of the well-described genera based on culture-dependent studies like Ruminococcus spp. were found to be in lesser proportion suggesting an additional role of other microbes or niche in cellulose degradation. We report the presence of Porphyromonas spp. and Mannheimia glucosidal for the first time in bovine infants.
机译:反刍动物的林苗中的微生物殖民化是确定其许多生理发展和消化能力的最重要因素之一。目前的研究试图鉴定与食物,年末间隔的食物,年龄和瘤胃发育中的微生物的建立模式,每两周间隔从出生到6个月,其次每月都会成为动物的1年龄。基于16S rRNA基因测序的多样性研究确定了初始60天生命期间的细菌种群,随着瘤胃的初始化,随着动物的增加而变得生理上成熟。在最初的30天生命中发现的乳酸发酵有氧致力于突出的厌氧属,迅速取代严格的厌氧纤维素溶解细菌人群,随着年龄的增加而取代。该研究证实,初始殖民化主要取决于母亲的口腔和皮肤,其次是周围环境和饲料提供,曾经是一旦动物变老,曾经逆转。基于媒体和喇叭板SPP等文化依赖性研究的一些熟熟的属。被发现处于较小的比例,表明其他微生物或利基在纤维素降解中的额外作用。我们报告了P​​orphyromonas SPP的存在。和Mannheimia葡萄糖在牛婴儿的第一次。

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