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比较基因组学:它如何增进我们对隐孢子虫病流行病学的认识?

Comparative genomics: how has it advanced our knowledge of cryptosporidiosis epidemiology?

机构信息

College of Veterinary Medicine, South China Agricultural University, Guangzhou, 510642, Guangdong, China.

出版信息

Parasitol Res. 2019 Dec;118(12):3195-3204. doi: 10.1007/s00436-019-06537-x. Epub 2019 Nov 14.

Abstract

Whole genomic sequencing (WGS) and comparative genomics are increasingly used in the characterization of Cryptosporidium spp. They are facilitated by the establishment of procedures for WGS analysis of clinical specimens without laboratory propagation of pathogens. Results of recent comparative genomics analysis suggest that gene duplication might be associated with broad host ranges of some zoonotic Cryptosporidium species and subtypes, while genetic recombination could be involved in the emergence of virulent subtypes. The availability of WGS data has further facilitated the development of advanced molecular typing tools. The use of these tools together with comparative genomics analyses has begun to improve the investigations of outbreaks in industrialized nations. More WGS data, however, are needed from both industrialized nations and developing countries before we can have in-depth understanding of the population genetics and evolution of Cryptosporidium spp. and genetic determinants of various phenotypic traits in human-pathogenic subtypes.

摘要

全基因组测序(WGS)和比较基因组学越来越多地用于鉴定隐孢子虫属。通过建立无需在实验室中繁殖病原体即可对临床标本进行 WGS 分析的程序,促进了这一过程。最近的比较基因组学分析结果表明,基因复制可能与一些动物源隐孢子虫种和亚型的广泛宿主范围有关,而遗传重组可能与毒力亚型的出现有关。WGS 数据的可用性进一步促进了先进分子分型工具的发展。这些工具的使用以及比较基因组学分析已经开始改善工业化国家暴发的调查。然而,在我们能够深入了解隐孢子虫属的种群遗传学和进化以及人源致病亚型的各种表型特征的遗传决定因素之前,还需要来自工业化国家和发展中国家的更多 WGS 数据。

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