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Diversity and Distribution of Sulfur Oxidation-Related Genes in Thioalkalivibrio a Genus of Chemolithoautotrophic and Haloalkaliphilic Sulfur-Oxidizing Bacteria

机译:硫代自养和卤代嗜碱硫氧化细菌属硫代盐弧菌属中硫氧化相关基因的多样性和分布

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摘要

Soda lakes are saline alkaline lakes characterized by high concentrations of sodium carbonate/bicarbonate which lead to a stable elevated pH (>9), and moderate to extremely high salinity. Despite this combination of extreme conditions, biodiversity in soda lakes is high, and the presence of diverse microbial communities provides a driving force for highly active biogeochemical cycles. The sulfur cycle is one of the most important of these and bacterial sulfur oxidation is dominated by members of the obligately chemolithoautotrophic genus Thioalkalivibrio. Currently, 10 species have been described in this genus, but over one hundred isolates have been obtained from soda lake samples. The genomes of 75 strains were sequenced and annotated previously, and used in this study to provide a comprehensive picture of the diversity and distribution of genes related to dissimilatory sulfur metabolism in Thioalkalivibrio. Initially, all annotated genes in 75 Thioalkalivibrio genomes were placed in ortholog groups and filtered by bi-directional best BLAST analysis. Investigation of the ortholog groups containing genes related to sulfur oxidation showed that flavocytochrome c (fcc), the truncated sox system, and sulfite:quinone oxidoreductase (soe) are present in all strains, whereas dissimilatory sulfite reductase (dsr; which catalyzes the oxidation of elemental sulfur) was found in only six strains. The heterodisulfide reductase system (hdr), which is proposed to oxidize sulfur to sulfite in strains lacking both dsr and soxCD, was detected in 73 genomes. Hierarchical clustering of strains based on sulfur gene repertoire correlated closely with previous phylogenomic analysis. The phylogenetic analysis of several sulfur oxidation genes showed a complex evolutionary history. All in all, this study presents a comprehensive investigation of sulfur metabolism-related genes in cultivated Thioalkalivibrio strains and provides several avenues for future research.
机译:苏打湖是盐碱湖,其特征在于高浓度的碳酸钠/碳酸氢钠可导致pH值稳定升高(> 9),且盐度中等至极高。尽管存在各种极端条件,但苏打湖的生物多样性仍然很高,而且各种微生物群落的存在为活跃的生物地球化学循环提供了动力。硫循环是其中最重要的循环之一,细菌硫的氧化主要由专化生化自养菌硫代碱解弧菌属的成员控制。目前,该属已描述了10种,但已从苏打湖样品中获得了一百多种分离物。先前已对75个菌株的基因组进行了测序和注释,并用于本研究中,以全面了解硫代盐碱弧菌中与异化硫代谢相关的基因的多样性和分布。最初,将75个硫代嗜盐弧菌基因组中的所有注释基因放入直系同源物组中,并通过双向最佳BLAST分析进行过滤。对含有与硫氧化有关的基因的直系同源基团的研究表明,所有菌株中均存在黄素细胞色素c(fcc),截短的sox系统和亚硫酸盐:醌氧化还原酶(soe),而异化亚硫酸盐还原酶(dsr;催化亚硫酸盐氧化)仅在六个菌株中发现了元素硫)。在73个基因组中检测到了异二硫键还原酶系统(hdr),该系统可在缺乏dsr和soxCD的菌株中将硫氧化为亚硫酸盐。基于硫基因库的菌株的层次聚类与先前的植物学分析密切相关。几个硫氧化基因的系统发育分析显示了复杂的进化历史。总而言之,本研究对栽培硫代盐碱弧菌菌株中硫代谢相关基因进行了全面的研究,并为今后的研究提供了一些途径。

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