Marine Microbiology Group, Department of Ecology and Marine Resources, Mediterranean Institute for Advanced Studies (IMEDEA, CSIC-UIB), E-07190 Esporles, Spain.
School of Civil & Environmental Engineering, Georgia Institute of Technology, Atlanta, GA, USA.
Syst Appl Microbiol. 2018 May;41(3):198-212. doi: 10.1016/j.syapm.2017.12.004. Epub 2018 Jan 31.
The application of tandem MALDI-TOF MS screening with 16S rRNA gene sequencing of selected isolates has been demonstrated to be an excellent approach for retrieving novelty from large-scale culturing. The application of such methodologies in different hypersaline samples allowed the isolation of the culture-recalcitrant Salinibacter ruber second phylotype (EHB-2) for the first time, as well as a new species recently isolated from the Argentinian Altiplano hypersaline lakes. In this study, the genome sequences of the different species of the phylum Rhodothermaeota were compared and the genetic repertoire along the evolutionary gradient was analyzed together with each intraspecific variability. Altogether, the results indicated an open pan-genome for the family Salinibacteraceae, as well as the codification of relevant traits such as diverse rhodopsin genes, CRISPR-Cas systems and spacers, and one T6SS secretion system that could give ecological advantages to an EHB-2 isolate. For the new Salinibacter species, we propose the name Salinibacter altiplanensis sp. nov. (the designated type strain is AN15=CECT 9105=IBRC-M 11031).
串联 MALDI-TOF MS 筛选与选定分离株 16S rRNA 基因测序的应用已被证明是从大规模培养中获取新颖性的绝佳方法。此类方法在不同的高盐样品中的应用首次分离到了培养抗性的盐红菌第二型(EHB-2),以及最近从阿根廷高原盐湖中分离出的一个新物种。在这项研究中,对比了 Rhodothermaeota 门不同物种的基因组序列,并对进化梯度上的遗传库进行了分析,同时分析了每个种内的变异性。总的来说,结果表明 Salinibacteraceae 科的基因组是一个开放的泛基因组,并且编码了各种视紫红质基因、CRISPR-Cas 系统和间隔区,以及一个 T6SS 分泌系统,这可能为 EHB-2 分离株带来生态优势。对于新的盐红菌物种,我们提议命名为盐红菌高平原种。(指定的模式菌株为 AN15=CECT 9105=IBRC-M 11031)。