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A Single-Cell Genome for Thiovulum sp.

机译:硫杆菌属的单细胞基因组

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We determined a significant fraction of the genome sequence of a representative of Thiovulum , the uncultivated genus of colorless sulfur Epsilonproteobacteria , by analyzing the genome sequences of four individual cells collected from phototrophic mats from Elkhorn Slough, California. These cells were isolated utilizing a microfluidic laser-tweezing system, and their genomes were amplified by multiple-displacement amplification prior to sequencing. Thiovulum is a gradient bacterium found at oxic-anoxic marine interfaces and noted for its distinctive morphology and rapid swimming motility. The genomic sequences of the four individual cells were assembled into a composite genome consisting of 221 contigs covering 2.083 Mb including 2,162 genes. This single-cell genome represents a genomic view of the physiological capabilities of isolated Thiovulum cells. Thiovulum is the second-fastest bacterium ever observed, swimming at 615 μm/s, and this genome shows that this rapid swimming motility is a result of a standard flagellar machinery that has been extensively characterized in other bacteria. This suggests that standard flagella are capable of propelling bacterial cells at speeds much faster than typically thought. Analysis of the genome suggests that naturally occurring Thiovulum populations are more diverse than previously recognized and that studies performed in the past probably address a wide range of unrecognized genotypic and phenotypic diversities of Thiovulum . The genome presented in this article provides a basis for future isolation-independent studies of Thiovulum , where single-cell and metagenomic tools can be used to differentiate between different Thiovulum genotypes.
机译:通过分析从加利福尼亚州Elkhorn Slough的光养垫收集到的四个单个细胞的基因组序列,我们确定了代表Thiovulum(无色硫Epsilon变形杆菌属)的未培养属的基因组序列的很大一部分。利用微流控激光钳系统分离这些细胞,并在测序前通过多位移扩增法扩增其基因组。硫脲是一种在有氧-缺氧海洋界面处发现的梯度细菌,因其独特的形态和快速的游泳运动而着称。将四个单个细胞的基因组序列组装成一个复合基因组,该基因组由221个重叠群组成,覆盖2.083 Mb,包括2,162个基因。该单细胞基因组代表了分离的硫细菌细胞的生理功能的基因组视图。硫脲是有史以来观察到的第二快的细菌,以615μm/ s的速度游泳,该基因组表明,这种快速的游泳运动是标准鞭毛机制的结果,该鞭毛机制已在其他细菌中得到了广泛表征。这表明标准鞭毛能够以比通常认为的快得多的速度推进细菌细胞。基因组的分析表明,自然发生的硫霉菌种群比以前公认的多,并且过去进行的研究可能涉及广泛的未认识的硫霉菌基因型和表型多样性。本文介绍的基因组为以后的分离硫属硫菌的研究提供了基础,其中单细胞和宏基因组学工具可用于区分不同硫属硫菌基因型。

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