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骆驼瘤胃中常驻细菌群落的深度多样性分析。

In-depth diversity analysis of the bacterial community resident in the camel rumen.

作者信息

Gharechahi Javad, Zahiri Hossein Shahbani, Noghabi Kambiz Akbari, Salekdeh Ghasem Hosseini

机构信息

Division of Industrial and Environmental Biotechnology, National Institute for Genetic Engineering and Biotechnology, Tehran, Iran; Department of Systems Biology, Agricultural Biotechnology Research Institute of Iran, Karaj, Iran.

Division of Industrial and Environmental Biotechnology, National Institute for Genetic Engineering and Biotechnology, Tehran, Iran.

出版信息

Syst Appl Microbiol. 2015 Feb;38(1):67-76. doi: 10.1016/j.syapm.2014.09.004. Epub 2014 Oct 23.

Abstract

The rumen compartment of the ruminant digestive tract is an enlarged fermentation chamber which houses a diverse collection of symbiotic microorganisms that provide the host animal with a remarkable ability to digest plant lignocellulosic materials. Characterization of the ruminal microbial community provides opportunities to improve animal food digestion efficiency, mitigate methane emission, and develop efficient fermentation systems to convert plant biomasses into biofuels. In this study, 16S rRNA gene amplicon pyrosequencing was applied in order to explore the structure of the bacterial community inhabiting the camel rumen. Using 76,333 quality-checked, chimera- and singleton-filtered reads, 4954 operational taxonomic units (OTUs) were identified at a 97% species level sequence identity. At the phylum level, more than 96% of the reads were affiliated to OTUs belonging to Bacteroidetes (51%), Firmicutes (31%), Proteobacteria (4.8%), Spirochaetes (3.5%), Fibrobacteres (3.1%), Verrucomicrobia (2.7%), and Tenericutes (0.95%). A total of 15% of the OTUs (746) that contained representative sequences from all major taxa were shared by all animals and they were considered as candidate members of the core camel rumen microbiome. Analysis of microbial composition through the solid and liquid fractions of rumen digesta revealed differential enrichment of members of Fibrobacter, Clostridium, Ruminococcus, and Treponema in the solid fraction, as well as members of Prevotella, Verrucomicrobia, Cyanobacteria, and Succinivibrio in the liquid fraction. The results clearly showed that the camel rumen microbiome was structurally similar but compositionally distinct from that of other ruminants, such as the cow. The unique characteristic of the camel rumen microbiome that differentiated it from those of other ruminants was the significant enrichment for cellulolytic bacteria.

摘要

反刍动物消化道的瘤胃部分是一个扩大的发酵腔室,里面容纳着各种各样的共生微生物,这些微生物赋予宿主动物消化植物木质纤维素材料的非凡能力。瘤胃微生物群落的特征分析为提高动物食物消化效率、减少甲烷排放以及开发将植物生物质转化为生物燃料的高效发酵系统提供了机会。在本研究中,应用16S rRNA基因扩增子焦磷酸测序来探究骆驼瘤胃中细菌群落的结构。通过对76333条经过质量检查、去除嵌合体和单例序列的 reads 进行分析,在97% 的物种水平序列同一性下鉴定出4954个操作分类单元(OTU)。在门水平上,超过96% 的 reads 隶属于属于拟杆菌门(51%)、厚壁菌门(31%)、变形菌门(4.8%)、螺旋体门(3.5%)、纤维杆菌门(3.1%)、疣微菌门(2.7%)和柔膜菌门(0.95%)的OTU。所有动物共有的包含所有主要分类群代表性序列的OTU总数为15%(746个),它们被视为骆驼瘤胃核心微生物组的候选成员。通过瘤胃消化物的固体和液体部分进行的微生物组成分析显示,纤维杆菌属、梭菌属、瘤胃球菌属和密螺旋体属的成员在固体部分有差异富集,而普雷沃氏菌属、疣微菌门、蓝细菌和琥珀酸弧菌属的成员在液体部分有差异富集。结果清楚地表明,骆驼瘤胃微生物组在结构上与其他反刍动物(如牛)相似,但在组成上有所不同。骆驼瘤胃微生物组与其他反刍动物不同的独特特征是纤维素分解菌的显著富集。

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