Author:
Bang Woo Jun,Kim Heung Chul,Ryu Jihun,Lee Hyeon Seung,Lee So Youn,Kim Myung Soon,Chong Sung Tae,Klein Terry A.,Choi Kwang Shik
Abstract
Abstract
Background
Genus Anopheles mosquitoes are the primary vectors of human malaria, which is a serious threat to public health worldwide. To reduce the spread of malaria and identify the malaria infection rates in mosquitoes, accurate species identification is needed. Malaria re-emerged in 1993 in the Republic of Korea (ROK), with numbers peaking in 2004 before decreasing to current levels. Eight Anopheles species (Anopheles sinensis, Anopheles pullus, Anopheles belenrae, Anopheles lesteri, Anopheles kleini, Anopheles sineroides, Anopheles koreicus, Anopheles lindesayi) are distributed throughout Korea. Members of the Anopheles Hyrcanus group currently cannot be identified morphologically. The other species of Anopheles can be identified morphologically, except when specimens are damaged in traps. The purpose of this study was to develop a rapid and accurate method for simultaneous molecular identification of the eight Anopheles species present in the ROK.
Methods
Anopheles spp. used in this study were collected near/in the demilitarized zone in ROK, where most malaria cases are reported. DNA from 165 of the Anopheles specimens was used to develop a multiplex PCR assay. The internal transcribed spacer 2 (ITS2) region of each species was sequenced and analysed for molecular identification.
Results
DNA from a total of 165 Anopheles specimens was identified to species using a multiplex diagnostic system. These included: 20 An. sinensis, 21 An. koreicus, 17 An. lindesayi, 25 An. kleini, 11 An. lesteri, 22 An. sineroides, 23 An. belenrae, and 26 An. pullus. Each species was clearly distinguished by electrophoresis as follows: 1,112 bp for An. sinensis; 925 bp for An. koreicus; 650 bp for An. lindesayi; 527 bp for An. kleini; 436 bp for An. lesteri; 315 bp for An. sineroides; 260 bp for An. belenrae; and, 157 bp for An. pullus.
Conclusion
A multiplex PCR assay was developed to identify Anopheles spp. distributed in ROK. This method can be used to accurately identify Anopheles species that are difficult to identify morphologically to determine species distributions and malaria infection rates.
Funder
National Research Foundation of Korea
Armed Forces Health Surveillance Division, Global Emerging Infections Surveillance
Publisher
Springer Science and Business Media LLC
Subject
Infectious Diseases,Parasitology
Reference54 articles.
1. WHO. Vector-borne diseases. Geneva, World Health Organization. 2020. https://www.who.int/news-room/fact-sheets/detail/vector-borne-diseases. Accessed 17 January 2021.
2. WHO. World Malaria Report 2019. Geneva: World Health Organization; 2019.
3. Caminade C, Kovats S, Rocklov J, Tompkins AM, Morse AP, Colón-González FJ, et al. Impact of climate change on global malaria distribution. Proc Natl Acad Sci USA. 2014;111:3286–91.
4. Caminade C, Mclnture KM, Jones AE. Impact of recent and future climate change on vector-borne diseases. Ann NY Acad Sci. 2019;1436:157–73.
5. Im JH, Kwon HY, Baek J, Park SW, Durey A, Lee KH, et al. Severe Plasmodium vivax infection in Korea. Malar J. 2017;16:51.
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