Genomic epidemiology of Plasmodium knowlesi reveals putative genetic drivers of adaptation in Malaysia.

IF 3.4 2区 医学 Q1 PARASITOLOGY
PLoS Neglected Tropical Diseases Pub Date : 2025-03-12 eCollection Date: 2025-03-01 DOI:10.1371/journal.pntd.0012885
Jacob A F Westaway, Ernest Diez Benavente, Sarah Auburn, Michal Kucharski, Nicolas Aranciaga, Sourav Nayak, Timothy William, Giri S Rajahram, Kim A Piera, Kamil Braima, Angelica F Tan, Danshy A Alaza, Bridget E Barber, Chris Drakeley, Roberto Amato, Edwin Sutanto, Hidayat Trimarsanto, Jenarun Jelip, Nicholas M Anstey, Zbynek Bozdech, Matthew Field, Matthew J Grigg
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引用次数: 0

Abstract

Sabah, Malaysia, has amongst the highest burden of human Plasmodium knowlesi infection in the world, associated with increasing encroachment on the parasite's macaque host habitat. However, the genomic make-up of P. knowlesi in Sabah was previously poorly understood. To inform on local patterns of transmission and putative adaptive drivers, we conduct population-level genetic analyses of P. knowlesi human infections using 52 new whole genomes from Sabah, Malaysia, in combination with publicly available data. We identify the emergence of distinct geographical subpopulations within the macaque-associated clusters using identity-by-descent-based connectivity analysis. Secondly, we report on introgression events between the clusters, which may be linked to differentiation of the subpopulations, and that overlap genes critical for survival in human and mosquito hosts. Using village-level locations from P. knowlesi infections, we also identify associations between several introgressed regions and both intact forest perimeter-area ratio and mosquito vector habitat suitability. Our findings provide further evidence of the complex role of changing ecosystems and sympatric macaque hosts in Malaysia driving distinct genetic changes seen in P. knowlesi populations. Future expanded analyses of evolving P. knowlesi genetics and environmental drivers of transmission will be important to guide public health surveillance and control strategies.

诺氏疟原虫的基因组流行病学揭示了马来西亚适应的假定遗传驱动因素。
马来西亚沙巴是世界上人类感染诺氏疟原虫负担最重的国家之一,这与该寄生虫的猕猴宿主栖息地日益受到侵犯有关。然而,以前人们对沙巴州诺氏疟原虫的基因组组成知之甚少。为了了解当地传播模式和假定的适应性驱动因素,我们利用来自马来西亚沙巴的52个新的全基因组,结合公开数据,对诺氏疟原虫人类感染进行了群体水平的遗传分析。我们使用基于血统的身份连通性分析来确定猕猴相关集群中不同地理亚种群的出现。其次,我们报告了集群之间的渗入事件,这可能与亚种群的分化有关,并且重叠了对人类和蚊子宿主生存至关重要的基因。利用诺氏疟原虫感染的村庄水平位置,我们还确定了几个渗入区域与完整森林周长面积比和蚊子媒介生境适宜性之间的关系。我们的研究结果进一步证明了马来西亚生态系统的变化和同域猕猴宿主的复杂作用,推动了诺氏疟原虫种群中不同的遗传变化。未来对诺氏疟原虫进化的遗传学和传播的环境驱动因素的扩展分析将对指导公共卫生监测和控制战略具有重要意义。
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来源期刊
PLoS Neglected Tropical Diseases
PLoS Neglected Tropical Diseases PARASITOLOGY-TROPICAL MEDICINE
自引率
10.50%
发文量
723
期刊介绍: PLOS Neglected Tropical Diseases publishes research devoted to the pathology, epidemiology, prevention, treatment and control of the neglected tropical diseases (NTDs), as well as relevant public policy. The NTDs are defined as a group of poverty-promoting chronic infectious diseases, which primarily occur in rural areas and poor urban areas of low-income and middle-income countries. Their impact on child health and development, pregnancy, and worker productivity, as well as their stigmatizing features limit economic stability. All aspects of these diseases are considered, including: Pathogenesis Clinical features Pharmacology and treatment Diagnosis Epidemiology Vector biology Vaccinology and prevention Demographic, ecological and social determinants Public health and policy aspects (including cost-effectiveness analyses).
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