Jørgensen Tue S, Kiil Anne S, Hansen Martin A, Sørensen Søren J, Hansen Lars H
Section of Microbiology, Department of Biology, University of Copenhagen Copenhagen, Denmark.
Section of Microbiology, Department of Biology, University of Copenhagen Copenhagen, Denmark ; Environmental Microbiology and Biotechnology, Department of Environmental Science, Aarhus University Roskilde, Denmark.
Front Microbiol. 2015 Jan 22;5:750. doi: 10.3389/fmicb.2014.00750. eCollection 2014.
Mobile genetic elements (MGEs) are pivotal for bacterial evolution and adaptation, allowing shuffling of genes even between distantly related bacterial species. The study of these elements is biologically interesting as the mode of genetic propagation is kaleidoscopic and important, as MGEs are the main vehicles of the increasing bacterial antibiotic resistance that causes thousands of human deaths each year. The study of MGEs has previously focused on plasmids from individual isolates, but the revolution in sequencing technology has allowed the study of mobile genomic elements of entire communities using metagenomic approaches. The problem in using metagenomic sequencing for the study of MGEs is that plasmids and other mobile elements only comprise a small fraction of the total genetic content that are difficult to separate from chromosomal DNA based on sequence alone. The distinction between plasmid and chromosome is important as the mobility and regulation of genes largely depend on their genetic context. Several different approaches have been proposed that specifically enrich plasmid DNA from community samples. Here, we review recent approaches used to study entire plasmid pools from complex environments, and point out possible future developments for and pitfalls of these approaches. Further, we discuss the use of the PacBio long-read sequencing technology for MGE discovery.
移动遗传元件(MGEs)对细菌的进化和适应至关重要,甚至能使基因在亲缘关系很远的细菌物种之间进行交换。对这些元件的研究在生物学上很有趣,因为其基因传播模式千变万化且很重要,因为MGEs是导致每年数千人死亡的细菌抗生素耐药性增加的主要载体。此前对MGEs的研究主要集中在单个分离株的质粒上,但测序技术的革命使得利用宏基因组学方法研究整个群落的移动基因组元件成为可能。使用宏基因组测序研究MGEs的问题在于,质粒和其他移动元件仅占总遗传内容的一小部分,仅根据序列很难将它们与染色体DNA分离。质粒和染色体的区分很重要,因为基因的移动性和调控很大程度上取决于它们的遗传背景。已经提出了几种不同的方法来从群落样本中特异性富集质粒DNA。在这里,我们综述了用于研究复杂环境中整个质粒库的最新方法,并指出这些方法未来可能的发展方向和陷阱。此外,我们还讨论了PacBio长读长测序技术在MGE发现中的应用。