Akoniyon Olusegun Philip, Adewumi Taiye Samson, Maharaj Leah, Oyegoke Olukunle Olugbenle, Roux Alexandra, Adeleke Matthew A, Maharaj Rajendra, Okpeku Moses
Discipline of Genetics, School of Life Sciences, University of KwaZulu-Natal, Westville Campus, Durban 4041, South Africa.
Office of Malaria Research, South African Medical Research Council, Cape Town 7505, South Africa.
Biology (Basel). 2022 Apr 13;11(4):587. doi: 10.3390/biology11040587.
Malaria elimination remains an important goal that requires the adoption of sophisticated science and management strategies in the era of the COVID-19 pandemic. The advent of next generation sequencing (NGS) is making whole genome sequencing (WGS) a standard today in the field of life sciences, as PCR genotyping and targeted sequencing provide insufficient information compared to the whole genome. Thus, adapting WGS approaches to malaria parasites is pertinent to studying the epidemiology of the disease, as different regions are at different phases in their malaria elimination agenda. Therefore, this review highlights the applications of WGS in disease management, challenges of WGS in controlling malaria parasites, and in furtherance, provides the roles of WGS in pursuit of malaria reduction and elimination. WGS has invaluable impacts in malaria research and has helped countries to reach elimination phase rapidly by providing required information needed to thwart transmission, pathology, and drug resistance. However, to eliminate malaria in sub-Saharan Africa (SSA), with high malaria transmission, we recommend that WGS machines should be readily available and affordable in the region.
在新冠疫情时代,疟疾消除仍是一个重要目标,这需要采用精密的科学和管理策略。随着下一代测序(NGS)的出现,全基因组测序(WGS)如今已成为生命科学领域的标准,因为与全基因组相比,聚合酶链反应(PCR)基因分型和靶向测序提供的信息不足。因此,将WGS方法应用于疟原虫对于研究该疾病的流行病学至关重要,因为不同地区在疟疾消除议程中处于不同阶段。因此,本综述强调了WGS在疾病管理中的应用、WGS在控制疟原虫方面的挑战,并进一步阐述了WGS在实现疟疾减少和消除方面的作用。WGS在疟疾研究中具有不可估量的影响,并通过提供阻止传播、病理和耐药性所需的信息,帮助各国迅速进入消除阶段。然而,为了在疟疾传播率高的撒哈拉以南非洲(SSA)消除疟疾,我们建议该地区应随时提供且负担得起WGS设备。