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Metabolic diversity and ecological niches of Achromatium populations revealed with single-cell genomic sequencing

机译:单细胞基因组测序揭示 Achromatium 种群的代谢多样性和生态位

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Large, sulfur-cycling, calcite-precipitating bacteria in the genus Achromatium represent a significant proportion of bacterial communities near sediment-water interfaces at sites throughout the world. Our understanding of their potentially crucial roles in calcium, carbon, sulfur, nitrogen, and iron cycling is limited because they have not been cultured or sequenced using environmental genomics approaches to date. We utilized single-cell genomic sequencing to obtain one incomplete and two nearly complete draft genomes for Achromatium collected at Warm Mineral Springs (WMS), FL. Based on 16S rRNA gene sequences, the three cells represent distinct and relatively distant Achromatium populations (91–92% identity). The draft genomes encode key genes involved in sulfur and hydrogen oxidation; oxygen, nitrogen and polysulfide respiration; carbon and nitrogen fixation; organic carbon assimilation and storage; chemotaxis; twitching motility; antibiotic resistance; and membrane transport. Known genes for iron and manganese energy metabolism were not detected. The presence of pyrophosphatase and vacuolar (V)-type ATPases, which are generally rare in bacterial genomes, suggests a role for these enzymes in calcium transport, proton pumping, and/or energy generation in the membranes of calcite-containing inclusions.
机译:铬属中大型的循环硫,方解石沉淀的细菌代表了世界各地沉积物-水界面附近细菌群落的很大一部分。我们对它们在钙,碳,硫,氮和铁循环中潜在关键作用的理解是有限的,因为迄今为止尚未使用环境基因组学方法对其进行培养或测序。我们利用单细胞基因组测序获得了在佛罗里达州的温矿泉(WMS)收集的一个不完全和两个接近完整的非铬基因组草图。根据16S rRNA基因序列,这三个细胞代表了不同且相对较远的无色菌种群(91-92%的同一性)。原始基因组编码涉及硫和氢氧化的关键基因。氧气,氮气和多硫化物呼吸;碳氮固定有机碳同化和储存;趋化性抽搐运动抗生素耐药性;和膜运输。未检测到铁和锰能量代谢的已知基因。在细菌基因组中通常很少见的焦磷酸酶和液泡(V)型ATPase的存在表明,这些酶在含方解石包裹体膜的钙转运,质子泵送和/或能量产生中起作用。

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