细菌泛基因组和反向疫苗学。

Genome dynamics Pub Date : 2009-01-01 Epub Date: 2009-08-19 DOI:10.1159/000235761
H Tettelin
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引用次数: 24

摘要

大多数人类细菌病原体的全基因组序列是可用的,下一代测序技术的出现将导致每个致病物种的大量测序分离物。对特定细菌的多个基因组序列的研究提供了对其进化,致病潜力和多样性的见解。病原体的泛基因组,定义为所有测序菌株共享的核心基因组和仅存在于分离物子集中的必要基因组的总和,可以分析以评估该物种可以获得的基因库的大小和多样性。然后利用这些信息更好地为反向疫苗学方法提供信息,从而根据基因组数据在计算机上确定候选疫苗并对其进行优先排序。基因组序列数据与功能基因组学结果和临床元数据的生物信息学整合对于最大限度地利用这些大量信息来回答生物学相关问题至关重要。
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The bacterial pan-genome and reverse vaccinology.

The whole genome sequence of most human bacterial pathogens is available and the advent of next-generation sequencing technologies will result in a large number of sequenced isolates per pathogenic species. The study of multiple genome sequences of a given bacterium provides insights into its evolution, pathogenic potential and diversity. The pathogen's pan-genome, defined as the sum of the core genome shared by all sequenced strains and the dispensable genome present only in a subset of the isolates, can be analyzed to assess the size and diversity of the gene repertoire that the species has access to. This information is then used to better inform the reverse vaccinology approach whereby vaccine candidates are identified and prioritized in silico based on genomic data. Bioinformatics integration of genome sequence data with functional genomics results and clinical meta-data is essential to maximize the use of this large amount of information to answer biologically relevant questions.

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