Medeiros J D, Leite L R, Pylro V S, Oliveira F S, Almeida V M, Fernandes G R, Salim A C M, Araújo F M G, Volpini A C, Oliveira G, Cuadros-Orellana S
Biosystems Informatics and Genomics Group, René Rachou Research Center, FIOCRUZ-MG, Belo Horizonte, MG, Brazil.
Institute of Biological Sciences, Federal University of Minas Gerais, UFMG, Belo Horizonte, MG, Brazil.
Mol Ecol. 2017 Oct;26(20):5541-5551. doi: 10.1111/mec.14294. Epub 2017 Sep 12.
Acid mine drainage (AMD) is characterized by an acid and metal-rich run-off that originates from mining systems. Despite having been studied for many decades, much remains unknown about the microbial community dynamics in AMD sites, especially during their early development, when the acidity is moderate. Here, we describe draft genome assemblies from single cells retrieved from an early-stage AMD sample. These cells belong to the genus Hydrotalea and are closely related to Hydrotalea flava. The phylogeny and average nucleotide identity analysis suggest that all single amplified genomes (SAGs) form two clades that may represent different strains. These cells have the genomic potential for denitrification, copper and other metal resistance. Two coexisting CRISPR-Cas loci were recovered across SAGs, and we observed heterogeneity in the population with regard to the spacer sequences, together with the loss of trailer-end spacers. Our results suggest that the genomes of Hydrotalea sp. strains studied here are adjusting to a quickly changing selective pressure at the microhabitat scale, and an important form of this selective pressure is infection by foreign DNA.
酸性矿山排水(AMD)的特征是源自采矿系统的富含酸和金属的径流。尽管已经研究了几十年,但关于AMD场地中微生物群落动态,尤其是在酸度适中的早期发育阶段,仍有许多未知之处。在这里,我们描述了从早期AMD样本中获取的单细胞的基因组草图组装。这些细胞属于Hydrotalea属,与黄褐Hydrotalea密切相关。系统发育和平均核苷酸同一性分析表明,所有单扩增基因组(SAG)形成两个分支,可能代表不同的菌株。这些细胞具有反硝化、抗铜和其他金属的基因组潜力。在SAG中发现了两个共存的CRISPR-Cas位点,我们观察到群体中间隔序列的异质性,以及末端间隔序列的缺失。我们的结果表明,这里研究的Hydrotalea sp.菌株的基因组正在适应微生境尺度上快速变化的选择压力,这种选择压力的一种重要形式是外来DNA的感染。