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Enrichment allows identification of diverse, rare elements in metagenomic resistome-virulome sequencing

机译:富集允许鉴定均衡型毒细胞毒蛛测序中的不同稀有元素

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Shotgun metagenomic sequencing is increasingly utilized as a tool to evaluate ecological-level dynamics of antimicrobial resistance and virulence, in conjunction with microbiome analysis. Interest in use of this method for environmental surveillance of antimicrobial resistance and pathogenic microorganisms is also increasing. In published metagenomic datasets, the total of all resistance- and virulence-related sequences accounts for ?1% of all sequenced DNA, leading to limitations in detection of low-abundance resistome-virulome elements. This study describes the extent and composition of the low-abundance portion of the resistome-virulome, using a bait-capture and enrichment system that incorporates unique molecular indices to count DNA molecules and correct for enrichment bias. The use of the bait-capture and enrichment system significantly increased on-target sequencing of the resistome-virulome, enabling detection of an additional 1441 gene accessions and revealing a low-abundance portion of the resistome-virulome that was more diverse and compositionally different than that detected by more traditional metagenomic assays. The low-abundance portion of the resistome-virulome also contained resistance genes with public health importance, such as extended-spectrum betalactamases, that were not detected using traditional shotgun metagenomic sequencing. In addition, the use of the bait-capture and enrichment system enabled identification of rare resistance gene haplotypes that were used to discriminate between sample origins. These results demonstrate that the rare resistome-virulome contains valuable and unique information that can be utilized for both surveillance and population genetic investigations of resistance. Access to the rare resistome-virulome using the bait-capture and enrichment system validated in this study can greatly advance our understanding of microbiome-resistome dynamics.
机译:霰弹枪代理测序越来越多地用于评估微生物组分析的抗微生物抗性和毒力的生态水平动态的工具。利用这种用于抗菌药物抗性和病原微生物的环境监测方法也在增加。在发表的偏心组数据集中,所有抵抗和毒力相关序列的总和占所有测序DNA的1%,导致检测低丰度抵抗毒细胞组元素的限制。本研究描述了使用诱饵捕获和富集系统的耐抵抗力和富集系统的低丰度部分的程度和组成,该诱捕和富集系统包含独特的分子索引来计算DNA分子并进行富集偏倚。使用诱饵捕获和富集系统的使用显着提高了抗毒性毒细胞的靶标序列,从而能够检测另外的1441个基因释放,并揭示更多样化和组成不同的抗抵抗力毒毒剂的低丰度部分。由更传统的偏见测定检测到。抗抵抗型毒物组的低丰度部分也含有公共健康重要性的抗性基因,例如使用传统霰弹枪偏心测序未检测到的扩展谱贝酰酰胺酶。此外,使用诱饵捕获和富集系统的使用使耐含耐抗性基因单倍型用于区分样品起源。这些结果表明,罕见的耐抵抗型毒物组含有有价值的和独特的信息,可用于抵抗的监测和群体遗传研究。使用本研究验证的诱饵捕获和富集系统的含蓄耐热体系的进入可以大大推进我们对微生物组电阻动态的理解。

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