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Draft Genome Sequence of Chromatium okenii Isolated from the Stratified Alpine Lake Cadagno

机译:从分层高山湖泊卡达尼奥分离出的奥克色衣藻基因组序列草案。

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Blooms of purple sulfur bacteria (PSB) are important drivers of the global sulfur cycling oxidizing reduced sulfur in intertidal flats and stagnant water bodies. Since the discovery of PSB Chromatium okenii in 1838, it has been found that this species is characteristic of for stratified, sulfidic environments worldwide and its autotrophic metabolism has been studied in depth since. We describe here the first high-quality draft genome of a large-celled, phototrophic, γ-proteobacteria of the genus Chromatium isolated from the stratified alpine Lake Cadagno, C. okenii strain LaCa. Long read technology was used to assemble the 3.78?Mb genome that encodes 3,016 protein-coding genes and 67 RNA genes. Our findings are discussed from an ecological perspective related to Lake Cadagno. Moreover, findings of previous studies on the phototrophic and the proposed chemoautotrophic metabolism of C. okenii were confirmed on a genomic level. We additionally compared the C. okenii genome with other genomes of sequenced, phototrophic sulfur bacteria from the same environment. We found that biological functions involved in chemotaxis, movement and S-layer-proteins were enriched in strain LaCa. We describe these features as possible adaptions of strain LaCa to rapidly changing environmental conditions within the chemocline and the protection against phage infection during blooms. The high quality draft genome of C. okenii strain LaCa thereby provides a basis for future functional research on bioconvection and phage infection dynamics of blooming PSB.
机译:紫色硫细菌(PSB)的绽放是全球硫循环氧化潮间带和死水的还原硫的重要驱动力。自1838年发现PSB色霉菌以来,已发现该菌是全世界分层硫化环境的特征,并且自此以后对其自养代谢进行了深入研究。我们在这里描述了从层状高山湖Cadagno,C. okenii菌株LaCa中分离出的铬属的大细胞,光养性,γ-变形细菌的第一个高质量的基因组草图。使用长读技术来组装3.78?Mb基因组,该基因组编码3016个蛋白质编码基因和67个RNA基因。从与卡达尼奥湖有关的生态角度讨论了我们的发现。此外,在基因组水平上证实了先前对oke.i的光养和拟定的化学自养代谢研究的发现。我们还比较了oken。C. okenii基因组与来自同一环境的测序的,光养性硫细菌的其他基因组。我们发现,涉及趋化性,运动和S层蛋白的生物学功能在LaCa菌株中富集。我们将这些特征描述为LaCa菌株可能适应于chemocline内快速变化的环境条件,以及在开花期间防止噬菌体感染。 oke。C. okenii菌株LaCa的高质量草图基因组因此为将来对盛开的PSB的生物对流和噬菌体感染动力学的功能研究提供了基础。

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