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三种新分离的未分类丁酸弧菌属物种的基因组结构阐明了它们在瘤胃生态系统中的潜在作用。

Genomic architecture of three newly isolated unclassified Butyrivibrio species elucidate their potential role in the rumen ecosystem.

作者信息

Sengupta Kriti, Hivarkar Sai Suresh, Palevich Nikola, Chaudhary Prem Prashant, Dhakephalkar Prashant K, Dagar Sumit Singh

机构信息

Bioenergy Group, Agharkar Research Institute, Pune, India.

Bioenergy Group, Agharkar Research Institute, Pune, India; Savitribai Phule Pune University, Ganeshkhind, Pune, India.

出版信息

Genomics. 2022 Mar;114(2):110281. doi: 10.1016/j.ygeno.2022.110281. Epub 2022 Feb 4.

Abstract

One cellulose-degrading strain CB08 and two xylan-degrading strains XB500-5 and X503 were isolated from buffalo rumen. All the strains were designated as putative novel species of Butyrivibrio based on phylogeny, phylogenomy, digital DNA-DNA hybridization, and average nucleotide identity with their closest type strains. The draft genome length of CB08 was ~3.54 Mb, while X503 and XB500-5 genome sizes were ~3.24 Mb and ~3.27 Mb, respectively. Only 68.28% of total orthologous clusters were shared among three genomes, and 40-44% of genes were identified as hypothetical proteins. The presence of genes encoding diverse carbohydrate-active enzymes (CAZymes) exhibited the lignocellulolytic potential of these strains. Further, the genome annotations revealed the metabolic pathways for monosaccharide fermentation to acetate, butyrate, lactate, ethanol, and hydrogen. The presence of genes for chemotaxis, antibiotic resistance, antimicrobial activity, synthesis of vitamins, and essential fatty acid suggested the versatile metabolic nature of these Butyrivibrio strains in the rumen environment.

摘要

从水牛瘤胃中分离出一株纤维素降解菌株CB08和两株木聚糖降解菌株XB500-5和X503。基于系统发育、系统发育基因组学、数字DNA-DNA杂交以及与它们最接近的模式菌株的平均核苷酸同一性,所有这些菌株都被指定为丁酸弧菌属的假定新物种。CB08的基因组草图长度约为3.54 Mb,而X503和XB500-5的基因组大小分别约为3.24 Mb和3.27 Mb。三个基因组之间仅共享68.28%的直系同源簇,40-44%的基因被鉴定为假定蛋白。编码多种碳水化合物活性酶(CAZymes)的基因的存在表明了这些菌株的木质纤维素分解潜力。此外,基因组注释揭示了单糖发酵生成乙酸、丁酸、乳酸、乙醇和氢气的代谢途径。趋化性、抗生素抗性、抗菌活性、维生素合成和必需脂肪酸相关基因的存在表明了这些丁酸弧菌菌株在瘤胃环境中具有多功能的代谢特性。

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