The Roslin Institute and the Royal (Dick) School of Veterinary Studies, University of Edinburgh, Easter Bush, UK.
Scotland's Rural College, Edinburgh, UK.
Nat Biotechnol. 2019 Aug;37(8):953-961. doi: 10.1038/s41587-019-0202-3. Epub 2019 Aug 2.
Ruminants provide essential nutrition for billions of people worldwide. The rumen is a specialized stomach that is adapted to the breakdown of plant-derived complex polysaccharides. The genomes of the rumen microbiota encode thousands of enzymes adapted to digestion of the plant matter that dominates the ruminant diet. We assembled 4,941 rumen microbial metagenome-assembled genomes (MAGs) using approximately 6.5 terabases of short- and long-read sequence data from 283 ruminant cattle. We present a genome-resolved metagenomics workflow that enabled assembly of bacterial and archaeal genomes that were at least 80% complete. Of note, we obtained three single-contig, whole-chromosome assemblies of rumen bacteria, two of which represent previously unknown rumen species, assembled from long-read data. Using our rumen genome collection we predicted and annotated a large set of rumen proteins. Our set of rumen MAGs increases the rate of mapping of rumen metagenomic sequencing reads from 15% to 50-70%. These genomic and protein resources will enable a better understanding of the structure and functions of the rumen microbiota.
反刍动物为全世界数十亿人提供了重要的营养。反刍动物的瘤胃是一种专门的胃,适应于分解植物源性的复杂多糖。瘤胃微生物组的基因组编码了数千种适应于消化以植物为主的反刍动物饮食的酶。我们使用来自 283 头反刍动物牛的大约 6.5 太字节的短读长和长读长序列数据,组装了 4941 个瘤胃微生物宏基因组组装基因组 (MAGs)。我们提出了一种基于基因组的宏基因组学工作流程,能够组装至少 80%完整的细菌和古菌基因组。值得注意的是,我们从长读长数据中获得了三个完整的单链、染色体组装的瘤胃细菌,其中两个代表了以前未知的瘤胃物种。利用我们的瘤胃基因组集合,我们预测并注释了大量的瘤胃蛋白。我们的一组瘤胃 MAGs 将瘤胃宏基因组测序reads 的映射率从 15%提高到 50-70%。这些基因组和蛋白质资源将使人们更好地理解瘤胃微生物组的结构和功能。