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单基因组测序揭示人类疟原虫的体内进化。

Single-genome sequencing reveals within-host evolution of human malaria parasites.

机构信息

Host-Pathogen Interaction Program, Texas Biomedical Research Institute, San Antonio, TX, USA.

Disease Intervention and Prevention, Centre for Tropical Medicine and Global Health, Nuffield Department of Medicine Research building, University of Oxford, Old Road campus, Oxford, UK; Shoklo Malaria Research Unit, Mahidol-Oxford Tropical Medicine Research Unit, Faculty of Tropical Medicine, Mahidol University, Mae Sot, Thailand.

出版信息

Cell Host Microbe. 2021 Oct 13;29(10):1496-1506.e3. doi: 10.1016/j.chom.2021.08.009. Epub 2021 Sep 6.

Abstract

Population genomics of bulk malaria infections is unable to examine intrahost evolution; therefore, most work has focused on the role of recombination in generating genetic variation. We used single-cell sequencing protocol for low-parasitaemia infections to generate 406 near-complete single Plasmodium vivax genomes from 11 patients sampled during sequential febrile episodes. Parasite genomes contain hundreds of de novo mutations, showing strong signatures of selection, which are enriched in the ApiAP2 family of transcription factors, known targets of adaptation. Comparing 315 P. falciparum single-cell genomes from 15 patients with our P. vivax data, we find broad complementary patterns of de novo mutation at the gene and pathway level, revealing the importance of within-host evolution during malaria infections.

摘要

群体基因组学无法检测疟疾感染个体内的进化情况;因此,大多数研究都集中在重组在产生遗传变异方面的作用。我们使用单细胞测序方案对低寄生虫血症感染进行检测,从 11 名在发热期间连续取样的患者中获得了 406 个近乎完整的单个间日疟原虫 vivax 基因组。寄生虫基因组包含数百个新生突变,表现出强烈的选择特征,这些特征在转录因子 ApiAP2 家族中富集,该家族是适应的已知靶点。将 15 名患者的 315 个恶性疟原虫单细胞基因组与我们的间日疟原虫数据进行比较,我们发现基因和途径水平上的新生突变具有广泛的互补模式,揭示了疟疾感染期间个体内进化的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8fb/8549078/71811a2fe6e8/nihms-1738965-f0002.jpg

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