Sorokin Dimitry Y, Gumerov Vadim M, Rakitin Andrey L, Beletsky Alexey V, Damsté J S Sinninghe, Muyzer Gerard, Mardanov Andrey V, Ravin Nikolai V
Winogradsky Institute of Microbiology, Russian Academy of Sciences, Prospect 60-let Oktyabrya, bld. 7-2, 117312, Moscow, Russia; Department of Biotechnology, Delft University of Technology, Delft, The Netherlands.
Environ Microbiol. 2014 Jun;16(6):1549-65. doi: 10.1111/1462-2920.12284. Epub 2013 Oct 21.
Anaerobic enrichments from hypersaline soda lakes with chitin as substrate yielded five closely related anaerobic haloalkaliphilic isolates growing on insoluble chitin by fermentation at pH 10 and salinities up to 3.5 M. The chitinolytic activity was exclusively cell associated. To better understand the biology and evolutionary history of this novel bacterial lineage, the genome of the type strain ACht1 was sequenced. Analysis of the 2.6 Mb draft genome revealed enzymes of chitin-degradation pathways, including secreted cell-bound chitinases. The reconstructed central metabolism revealed pathways enabling the fermentation of polysaccharides, while it lacks the genes needed for aerobic or anaerobic respiration. The Rnf-type complex, oxaloacetate decarboxylase and sodium-transporting V-type adenosine triphosphatase were identified among putative membrane-bound ion pumps. According to 16S ribosomal RNA analysis, the isolates belong to the candidate phylum Termite Group 3, representing its first culturable members. Phylogenetic analysis using ribosomal proteins and taxonomic distribution analysis of the whole proteome supported a class-level classification of ACht1 most probably affiliated to the phylum Fibribacteres. Based on phylogenetic, phenotypic and genomic analyses, the novel bacteria are proposed to be classified as Chitinivibrio alkaliphilus gen. nov., sp. nov., within a novel class Chitinivibrione.
以几丁质为底物,从高盐苏打湖进行厌氧富集培养,获得了5株密切相关的厌氧嗜盐碱菌株,它们在pH值为10、盐度高达3.5M的条件下,通过发酵作用在不溶性几丁质上生长。几丁质分解活性仅与细胞相关。为了更好地了解这一新细菌谱系的生物学特性和进化历史,对模式菌株ACht1的基因组进行了测序。对2.6Mb的基因组草图分析发现了几丁质降解途径的酶,包括分泌型细胞结合几丁质酶。重建的中心代谢揭示了多糖发酵途径,但缺乏有氧或无氧呼吸所需的基因。在假定的膜结合离子泵中鉴定出了Rnf型复合物、草酰乙酸脱羧酶和钠转运V型三磷酸腺苷酶。根据16S核糖体RNA分析,这些分离株属于候选门白蚁群3,是该群的首个可培养成员。利用核糖体蛋白进行的系统发育分析和全蛋白质组的分类分布分析支持将ACht1分类为一个类,最有可能隶属于纤维杆菌门。基于系统发育、表型和基因组分析,建议将这种新细菌分类为嗜碱几丁质弧菌属新属、新种,属于一个新类几丁质弧菌纲。