首页> 美国卫生研究院文献>other >Carbon and Sulfur Cycling below the Chemocline in a Meromictic Lake and the Identification of a Novel Taxonomic Lineage in the FCB Superphylum Candidatus Aegiribacteria
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Carbon and Sulfur Cycling below the Chemocline in a Meromictic Lake and the Identification of a Novel Taxonomic Lineage in the FCB Superphylum Candidatus Aegiribacteria

机译:在一个湖泊中的化学环以下的碳和硫循环以及FCB超级植物念珠菌中新的生物分类谱系的鉴定

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摘要

Mahoney Lake in British Columbia is an extreme meromictic system with unusually high levels of sulfate and sulfide present in the water column. As is common in strongly stratified lakes, Mahoney Lake hosts a dense, sulfide-oxidizing phototrophic microbial community where light reaches the chemocline. Below this “plate,” the euxinic hypolimnion is anoxic, eutrophic, saline, and rich in sulfide, polysulfides, elemental sulfur, and other sulfur intermediates. While much is known regarding microbial communities in sunlit portions of euxinic systems, the composition and genetic potential of organisms living at aphotic depths have rarely been studied. Metagenomic sequencing of samples from the hypolimnion and the underlying sediments of Mahoney Lake indicate that multiple taxa contribute to sulfate reduction below the chemocline and that the hypolimnion and sediments each support distinct populations of sulfate reducing bacteria (SRB) that differ from the SRB populations observed in the chemocline. After assembling and binning the metagenomic datasets, we recovered near-complete genomes of dominant populations including two Deltaproteobacteria. One of the deltaproteobacterial genomes encoded a 16S rRNA sequence that was most closely related to the sulfur-disproportionating genus Dissulfuribacter and the other encoded a 16S rRNA sequence that was most closely related to the fatty acid- and aromatic acid-degrading genus Syntrophus. We also recovered two near-complete genomes of Firmicutes species. Analysis of concatenated ribosomal protein trees suggests these genomes are most closely related to extremely alkaliphilic genera Alkaliphilus and Dethiobacter. Our metagenomic data indicate that these Firmicutes contribute to carbon cycling below the chemocline. Lastly, we recovered a nearly complete genome from the sediment metagenome which represents a new genus within the FCB (Fibrobacteres, Chlorobi, Bacteroidetes) superphylum. Consistent with the geochemical data, we found little or no evidence for organisms capable of sulfide oxidation in the aphotic zone below the chemocline. Instead, comparison of functional genes below the chemocline are consistent with recovery of multiple populations capable of reducing oxidized sulfur. Our data support previous observations that at least some of the sulfide necessary to support the dense population of phototrophs in the chemocline is supplied from sulfate reduction in the hypolimnion and sediments. These studies provide key insights regarding the taxonomic and functional diversity within a euxinic environment and highlight the complexity of biogeochemical carbon and sulfur cycling necessary to maintain euxinia.
机译:不列颠哥伦比亚省的Mahoney湖是一个极端的岩相质系统,水柱中存在异常高水平的硫酸盐和硫化物。像在强烈分层的湖泊中常见的那样,马洪尼湖(Mahoney Lake)拥有一个密集的,硫化物氧化的光养微生物群落,在那里光到达了趋化霉素。在该“板块”下方,富营养化的次生碱是缺氧的,富营养的,盐水,并且富含硫化物,多硫化物,元素硫和其他硫中间体。尽管关于安乐死系统阳光照射部分中的微生物群落的信息很多,但很少研究生活在无光深度的生物的组成和遗传潜力。从Mahoney Lake次生水和下层沉积物中取样的基因组学测序表明,多种类群有助于将硫酸盐还原到化学趋化线以下,次生水和沉积物分别支持不同的硫酸盐还原细菌(SRB)种群,这些种群与SRB种群不同。趋化霉素。在组装并分类了宏基因组数据集后,我们恢复了包括两个Deltaproteobacteria在内的优势种群的近乎完整的基因组。 δ变形细菌基因组之一编码与硫歧化属Dissulfuribacter最密切相关的16S rRNA序列,另一个编码与脂肪酸和芳香酸降解菌Syntrophus最密切相关的16S rRNA序列。我们还回收了两个Firmicutes物种的近乎完整的基因组。串联核糖体蛋白树的分析表明,这些基因组与极端嗜碱性的嗜碱菌属和脱硫杆菌属关系最密切。我们的宏基因组学数据表明,这些Firmicutes有助于趋化趋化因子以下的碳循环。最后,我们从沉积物基因组中回收了近乎完整的基因组,该基因组代表了FCB上系的一个新属(纤维杆菌,绿藻,拟杆菌)。与地球化学数据一致,我们几乎没有找到或没有证据表明在趋化霉素以下的无水带中能够硫化物氧化的生物。相反,比较趋化酶以下的功能基因与恢复能够还原氧化硫的多个种群相一致。我们的数据支持以前的观察结果,即支持趋化霉素中密集的光养菌种群的至少一些硫化物是由次生水和沉积物中的硫酸盐还原提供的。这些研究提供了关于在富营养环境中生物分类学和功能多样性的关键见解,并强调了维持富营养必需的生物地球化学碳和硫循环的复杂性。

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