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首页> 外文期刊>Journal of Biotechnology >Insights into the annotated genome sequence of Methanoculleus bourgensis MS2(T), related to dominant methanogens in biogas-producing plants
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Insights into the annotated genome sequence of Methanoculleus bourgensis MS2(T), related to dominant methanogens in biogas-producing plants

机译:深入了解沼气甲烷甲烷菌MS2(T)的注释基因组序列,该基因组与产沼气植物中的主要产甲烷菌有关

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摘要

The final step of the biogas production process, the methanogenesis, is frequently dominated by members of the genus Methanoculleus. In particular, the species Methanoculleus bourgensis was identified to play a role in different biogas reactor systems. The genome of the type strain M. bourgensis MS2(T), originally isolated from a sewage sludge digestor, was completely sequenced to analyze putative adaptive genome features conferring competitiveness within biogas reactor environments to the strain. Sequencing and assembly of the M. bourgensis MS2(T) genome yielded a chromosome with a size of 2,789,773 bp. Comparative analysis of M. bourgensis MS2(T) and Methanoculleus marisnigri JR1 revealed significant similarities. The absence of genes for a putative ammonium uptake system may indicate that M. bourgensis MS2(T) is adapted to environments rich in ammonium/ammonia. Specific genes featuring predicted functions in the context of osmolyte production were detected in the genome of M. bourgensis MS2(T). Mapping of metagenome sequences derived from a production-scale biogas plant revealed that M. bourgensis MS2(T) almost completely comprises the genetic information of dominant methanogens present in the biogas reactor analyzed. Hence, availability of the M. bourgensis MS2(T) genome sequence may be valuable regarding further research addressing the performance of Methanoculleus species in agricultural biogas plants. (C) 2014 Elsevier B.V. All rights reserved.
机译:沼气生产过程的最后一步,即甲烷生成,通常由甲烷菌属成员主导。特别地,已鉴定出勃艮第甲烷菌在不同的沼气反应器系统中起作用。最初从污水污泥消化器中分离出的菌株M. bourgensis MS2(T)的基因组已完成完整测序,以分析推定的适应性基因组特征,从而赋予沼气反应器环境以竞争优势。测序和组装布尔格斯菌MS2(T)基因组产生了一条2,789,773 bp的染色体。对M. bourgensis MS2(T)和Marthniculleus marisnigri JR1的比较分析显示出显着的相似性。假定的铵吸收系统缺少基因可能表明,M。bourgensis MS2(T)适用于富含铵/氨的环境。在渗菌生产中检测到具有特定功能的特定基因,该基因在布尔格氏菌MS2(T)的基因组中被检测到。从生产规模的沼气厂获得的元基因组序列的图谱显示,M。bourgensis MS2(T)几乎完全包含分析的沼气反应器中存在的主要产甲烷菌的遗传信息。因此,关于解决农业沼气厂中甲烷菌种性能的进一步研究,M。bourgensis MS2(T)基因组序列的可用性可能是有价值的。 (C)2014 Elsevier B.V.保留所有权利。

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