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Comparative genomics of the Komagataeibacter strains—Efficient bionanocellulose producers

机译:Komagataeibacter菌株的比较基因组学—高效的生双纤维纤维素生产商

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摘要

Komagataeibacter species are well‐recognized bionanocellulose (BNC) producers. This bacterial genus, formerly assigned to Gluconacetobacter, is known for its phenotypic diversity manifested by strain‐dependent carbon source preference, BNC production rate, pellicle structure, and strain stability. Here, we performed a comparative study of nineteen Komagataeibacter genomes, three of which were newly contributed in this work. We defined the core genome of the genus, clarified phylogenetic relationships among strains, and provided genetic evidence for the distinction between the two major clades, the K. xylinus and the K. hansenii. We found genomic traits, which likely contribute to the phenotypic diversity between the Komagataeibacter strains. These features include genome flexibility, carbohydrate uptake and regulation of its metabolism, exopolysaccharides synthesis, and the c‐di‐GMP signaling network. In addition, this work provides a comprehensive functional annotation of carbohydrate metabolism pathways, such as those related to glucose, glycerol, acetan, levan, and cellulose. Findings of this multi‐genomic study expand understanding of the genetic variation within the Komagataeibacter genus and facilitate exploiting of its full potential for bionanocellulose production at the industrial scale.
机译:Komagataeibacter物种是公认的紫苏纤维素(BNC)生产商。该细菌属,以前被分配给葡糖杆菌属,以其表型多样性而闻名,表现为依赖菌株的碳源偏好,BNC产生速率,防护膜结构和菌株稳定性。在这里,我们进行了19种Komagataeibacter基因组的比较研究,其中三个是这项工作的新贡献。我们定义了该属的核心基因组,阐明了菌株之间的系统发生关系,并为区分两个主要进化枝(K.xylinus和K.hansenii)提供了遗传证据。我们发现了基因组性状,可能有助于Komagataeibacter菌株之间的表型多样性。这些功能包括基因组灵活性,碳水化合物的摄取及其代谢调控,胞外多糖合成以及c-di-GMP信号网络。此外,这项工作为碳水化合物代谢途径提供了全面的功能注释,例如与葡萄糖,甘油,丙酮,左旋糖和纤维素有关的那些途径。这项多基因组研究的结果扩展了对Komagataeibacter属内遗传变异的了解,并促进了其在工业规模上生产仿生纤维素的全部潜力。

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