Ben Hania Wajdi, Joseph Manon, Bunk Boyke, Spröer Cathrin, Klenk Hans-Peter, Fardeau Marie-Laure, Spring Stefan
Laboratoire de Microbiologie IRD, MIO, Aix Marseille Université, Marseille, France.
Department Microbial Ecology and Diversity Research, Leibniz Institute DSMZ-German Collection of Microorganisms and Cell Cultures, Braunschweig, Germany.
Environ Microbiol. 2017 Mar;19(3):1134-1148. doi: 10.1111/1462-2920.13639. Epub 2017 Jan 13.
The anaerobic, mesophilic and moderately halophilic strain L21-Spi-D4 was recently isolated from the suboxic zone of a hypersaline cyanobacterial mat using protein-rich extracts of Arthrospira (formerly Spirulina) platensis as substrate. Phylogenetic analyses based on 16S rRNA genes indicated an affiliation of the novel strain with the Bacteroidetes clade MgMjR-022, which is widely distributed and abundant in hypersaline microbial mats and heretofore comprised only sequences of uncultured bacteria. Analyses of the complete genome sequence of strain L21-Spi-D4 revealed a possible specialization on the degradation of cyanobacterial biomass. Besides genes for enzymes degrading specific cyanobacterial proteins a conspicuous transport complex for the polypeptide cyanophycin could be identified that is homologous to typical polysaccharide utilization loci of Bacteroidetes. A distinct and reproducible co-occurrence pattern of environmental 16S rRNA gene sequences of the MgMjR-022 clade and cyanobacteria in the suboxic zone of hypersaline mats points to a specific dependence of members of this clade on decaying cyanobacteria. Based on a comparative analysis of phenotypic, genomic and ecological characteristics we propose to establish the novel taxa Salinivirga cyanobacteriivorans gen. nov., sp. nov., represented by the type strain L21-Spi-D4 , and Salinivirgaceae fam. nov., comprising sequences of the MgMjR-022 clade.
厌氧、嗜温且中度嗜盐的菌株L21-Spi-D4最近从高盐蓝藻席的缺氧区分离得到,使用钝顶节旋藻(原螺旋藻)富含蛋白质的提取物作为底物。基于16S rRNA基因的系统发育分析表明,该新菌株属于拟杆菌门MgMjR-022分支,该分支在高盐微生物席中广泛分布且数量众多,迄今为止仅包含未培养细菌的序列。对菌株L21-Spi-D4的全基因组序列分析揭示了其在蓝藻生物质降解方面可能具有的特异性。除了降解特定蓝藻蛋白的酶的基因外,还鉴定出一种与拟杆菌典型多糖利用位点同源的明显的藻青素多肽转运复合体。高盐席缺氧区MgMjR-022分支的环境16S rRNA基因序列与蓝藻之间独特且可重复的共现模式表明,该分支成员对腐烂蓝藻具有特定依赖性。基于对表型、基因组和生态特征的比较分析,我们提议建立新分类单元食蓝藻盐栖菌属(Salinivirga cyanobacteriivorans),新属,新种,以模式菌株L21-Spi-D4为代表,以及盐栖菌科(Salinivirgaceae),新科,包含MgMjR-022分支的序列。