从活性污泥中分离出的亚硝酸盐氧化细菌 "Nitrospira lenta "菌株 BS10 的基因组序列草案。

Q3 Biochemistry, Genetics and Molecular Biology
Standards in Genomic Sciences Pub Date : 2018-11-22 eCollection Date: 2018-01-01 DOI:10.1186/s40793-018-0338-7
Dimitra Sakoula, Boris Nowka, Eva Spieck, Holger Daims, Sebastian Lücker
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引用次数: 0

摘要

硝化细菌属(Nitrospira)被认为是许多自然和人工生态系统中分布最广、数量最多的亚硝酸盐氧化细菌。然而,主要由于缺乏纯培养物和基因组数据,该系统发生群的生态生理学多变性仍未得到充分研究。为了进一步扩大我们对这一重要生物技术属的了解,我们分析了 "Nitrospira lenta "菌株 BS10 的高质量基因组草案。N. lenta "的基因组大小为 3,756,190 bp,包含 3968 个基因组对象,其中 3907 个是预测的蛋白质编码序列。通过全面的基因组注释,重建了 "N. lenta "的能量守恒和碳固定核心代谢。比较分析表明,尽管 "N. moscoviensis "和 "N. defluvii "与 "N. lenta "存在生态位差异和系统发育距离,但它们的大多数代谢特征是相同的。总之,"N. lenta "的基因组为了解硝化细菌属的基因组多样性提供了重要信息,并为今后的比较基因组研究奠定了基础,从而有助于更好地了解硝化过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The draft genome sequence of "<i>Nitrospira lenta</i>" strain BS10, a nitrite oxidizing bacterium isolated from activated sludge.

The draft genome sequence of "<i>Nitrospira lenta</i>" strain BS10, a nitrite oxidizing bacterium isolated from activated sludge.

The draft genome sequence of "<i>Nitrospira lenta</i>" strain BS10, a nitrite oxidizing bacterium isolated from activated sludge.

The draft genome sequence of "Nitrospira lenta" strain BS10, a nitrite oxidizing bacterium isolated from activated sludge.

The genus Nitrospira is considered to be the most widespread and abundant group of nitrite-oxidizing bacteria in many natural and man-made ecosystems. However, the ecophysiological versatility within this phylogenetic group remains highly understudied, mainly due to the lack of pure cultures and genomic data. To further expand our understanding of this biotechnologically important genus, we analyzed the high quality draft genome of "Nitrospira lenta" strain BS10, a sublineage II Nitrospira that was isolated from a municipal wastewater treatment plant in Hamburg, Germany. The genome of "N. lenta" has a size of 3,756,190 bp and contains 3968 genomic objects, of which 3907 are predicted protein-coding sequences. Thorough genome annotation allowed the reconstruction of the "N. lenta" core metabolism for energy conservation and carbon fixation. Comparative analyses indicated that most metabolic features are shared with N. moscoviensis and "N. defluvii", despite their ecological niche differentiation and phylogenetic distance. In conclusion, the genome of "N. lenta" provides important insights into the genomic diversity of the genus Nitrospira and provides a foundation for future comparative genomic studies that will generate a better understanding of the nitrification process.

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来源期刊
Standards in Genomic Sciences
Standards in Genomic Sciences GENETICS & HEREDITY-MICROBIOLOGY
CiteScore
1.44
自引率
0.00%
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审稿时长
6-12 weeks
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