Population genomics identifies a distinct Plasmodium vivax population on the China-Myanmar border of Southeast Asia

被引:18
作者
Brashear, Awtum M. [1 ,2 ]
Fan, Qi [3 ]
Hu, Yubing [4 ]
Li, Yuling [4 ]
Zhao, Yan [4 ]
Wang, Zenglei [5 ,6 ]
Cao, Yaming [4 ]
Miao, Jun [1 ]
Barry, Alyssa [7 ]
Cui, Liwang [1 ]
机构
[1] Univ S Florida, Dept Internal Med, Tampa, FL 33620 USA
[2] Penn State Univ, University Pk, PA 16802 USA
[3] Dalian Inst Technol, Dalian, Liaoning, Peoples R China
[4] China Med Univ, Coll Basic Med Sci, Dept Immunol, Shenyang, Liaoning, Peoples R China
[5] Chinese Acad Med Sci, Inst Pathogen Biol, MHC Key Lab Syst Biol Pathogens, Beijing, Peoples R China
[6] Beijing Union Med Coll, Beijing, Peoples R China
[7] Deakin Univ, Fac Hlth, Sch Med, Infect Syst Epidemiol, Geelong, Vic, Australia
来源
PLOS NEGLECTED TROPICAL DISEASES | 2020年 / 14卷 / 08期
关键词
SINGLE NUCLEOTIDE POLYMORPHISMS; FALCIPARUM; MALARIA; RESISTANCE; SPREAD; CHLOROQUINE; DIVERSITY; PROGRAM; FORMAT; GENE;
D O I
10.1371/journal.pntd.0008506
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Author summary Plasmodium vivaxis an understudied malaria parasite compared toP.falciparumdespite that it is the most commonPlasmodiumspecies outside of Africa. In the Greater Mekong Subregion (GMS), the increased proportion ofP.vivaxproves its resilience to conventional malaria control measures. Within the GMS malaria incidence is highly heterogeneous, typified by more intensive malaria transmission along international borders. Understanding the transmission between countries and tracking parasite introduction are therefore essential to eliminating malaria within this region. The China-Myanmar border (CMB) presents such an example wherein China has eliminated autochthonous malaria cases, while Myanmar has high malaria incidence. Malaria on the CMB is nearly entirely due toP.vivax, yet few studies investigated the genetics and evolution of theP.vivaxpopulations in the area. Here we used whole-genome sequencing for a holistic analysis ofP.vivaxfrom the CMB and compared them to those from other sites of the GMS. Parasites on the CMB had a significantly higher proportion (75%) of monoclonal infection than parasites from other regions. Many of the CMB parasites showed significant genetic sharing that is consistent with the result of clonal expansion, consistent with the malaria outbreak occurring during the study period. WhileP.vivaxparasites from the entire GMS were substantially mixed with no evidence of significant gene flow barriers, those from the CMB were more genetically distinct from other populations. Genome-wide scans for selection identified genes potentially under selection, and especially notable are genes associated with sulfadoxine/pyrimethamine resistance. Genes also under selection include those potentially encoding membrane channels and transporters, which were associated with drug resistance in Plasmodium falciparum. Moreover, this population genomic study also identified a set of 36 single nucleotide polymorphisms, which could serve as a barcode for differentiating parasites from various regions of the GMS, a task that is important for the final phase of regional malaria elimination. Plasmodium vivaxhas become the predominant malaria parasite and a major challenge for malaria elimination in the Greater Mekong Subregion (GMS). Yet, our knowledge about the evolution ofP.vivaxpopulations in the GMS is fragmental. We performed whole genome sequencing on 23P.vivaxsamples from the China-Myanmar border (CMB) and used 21 high-coverage samples to compare to over 200 samples from the rest of the GMS. Using genome-wide single nucleotide polymorphisms (SNPs), we analyzed population differentiation, genetic structure, migration and potential selection using an array of methods. The CMB parasites displayed a higher proportion of monoclonal infections, and 52% shared over 90% of their genomes in identity-by-descent segments with at least one other sample from the CMB, suggesting preferential expansion of certain parasite strains in this region, likely resulting from theP.vivaxoutbreaks occurring during this study period. Principal component, admixture, fixation index and phylogenetic analyses all identified that parasites from the CMB were genetically distinct from parasites from eastern parts of the GMS (Cambodia, Laos, Vietnam, and Thailand), whereas the eastern GMS parasite populations were largely undifferentiated. Such a genetic differentiation pattern of theP.vivaxpopulations from the GMS parasite was largely explainable through geographic distance. Using the genome-wide SNPs, we narrowed down to a set of 36 SNPs for differentiating parasites from different areas of the GMS. Genome-wide scans to determine selection in the genome with two statistical methods identified genes potentially under drug selection, including genes associated with antifolate resistance and genes linked to chloroquine resistance inPlasmodium falciparum.
引用
收藏
页码:1 / 23
页数:23
相关论文
共 50 条
  • [41] Genetic diversity of Plasmodium falciparum histidine-rich protein 2 in the China-Myanmar border area
    Li, Peipei
    Xing, Hua
    Zhao, Zhenjun
    Yang, Zhaoqing
    Cao, Yaming
    Li, Wenli
    Yan, Guiyun
    Sattabongkot, Jetsumon
    Cui, Liwang
    Fan, Qi
    ACTA TROPICA, 2015, 152 : 26 - 31
  • [42] Genetic diversity and natural selection of three blood-stage 6-Cys proteins in Plasmodium vivax populations from the China-Myanmar endemic border
    Wang, Yue
    Ma, An
    Chen, Shen-Bo
    Yang, Ying-Chao
    Chen, Jun-Hu
    Yin, Ming-Bo
    INFECTION GENETICS AND EVOLUTION, 2014, 28 : 167 - 174
  • [43] Genetic diversity and population structure of Plasmodium vivax in Central China
    Yaobao Liu
    Sarah Auburn
    Jun Cao
    Hidayat Trimarsanto
    Huayun Zhou
    Karen-Ann Gray
    Taane G Clark
    Ric N Price
    Qin Cheng
    Rui Huang
    Qi Gao
    Malaria Journal, 13
  • [44] Ex vivo susceptibilities of Plasmodium vivax isolates from the China-Myanmar border to antimalarial drugs and association with polymorphisms in Pvmdr1 and Pvcrt-o genes
    Li, Jiangyan
    Zhang, Jie
    Li, Qian
    Hu, Yue
    Ruan, Yonghua
    Tao, Zhiyong
    Xia, Hui
    Qiao, Jichen
    Meng, Lingwen
    Zeng, Weilin
    Li, Cuiying
    He, Xi
    Zhao, Luyi
    Siddiqui, Faiza A.
    Miao, Jun
    Yang, Zhaoqing
    Fang, Qiang
    Cui, Liwang
    PLOS NEGLECTED TROPICAL DISEASES, 2020, 14 (06): : 1 - 17
  • [45] Population genomics reveals the expansion of highly inbred Plasmodium vivax lineages in the main malaria hotspot of Brazil
    de Oliveira, Thais Crippa
    Corder, Rodrigo M.
    Early, Angela
    Rodrigues, Priscila T.
    Ladeia-Andrade, Simone
    Alves, Joao Marcelo P.
    Neafsey, Daniel E.
    Ferreira, Marcelo U.
    PLOS NEGLECTED TROPICAL DISEASES, 2020, 14 (10): : 1 - 16
  • [46] Population genomics studies identify signatures of global dispersal and drug resistance in Plasmodium vivax
    Hupalo, Daniel N.
    Luo, Zunping
    Melnikov, Alexandre
    Sutton, Patrick L.
    Rogov, Peter
    Escalante, Ananias
    Vallejo, Andres F.
    Herrera, Socrates
    Arevalo-Herrera, Myriam
    Fan, Qi
    Wang, Ying
    Cui, Liwang
    Lucas, Carmen M.
    Durand, Salomon
    Sanchez, Juan F.
    Baldeviano, G. Christian
    Lescano, Andres G.
    Laman, Moses
    Barnadas, Celine
    Barry, Alyssa
    Mueller, Ivo
    Kazura, James W.
    Eapen, Alex
    Kanagaraj, Deena
    Valecha, Neena
    Ferreira, Marcelo U.
    Roobsoong, Wanlapa
    Nguitragool, Wang
    Sattabonkot, Jetsumon
    Gamboa, Dionicia
    Kosek, Margaret
    Vinetz, Joseph M.
    Gonzalez-Ceron, Lilia
    Birren, Bruce W.
    Neafsey, Daniel E.
    Carlton, Jane M.
    NATURE GENETICS, 2016, 48 (08) : 953 - +
  • [47] PvMSP-3α and PvMSP-3ß genotyping reveals higher genetic diversity in Plasmodium vivax parasites from migrant workers than residents at the China-Myanmar border
    Li, Xiaosong
    Bai, Yao
    Wu, Yanrui
    Zeng, Weilin
    Xiang, Zheng
    Zhao, Hui
    Zhao, Wei
    Chen, Xi
    Duan, Mengxi
    Wang, Xun
    Zhu, Wenya
    Sun, Kemin
    Wu, Yiman
    Zhang, Yanmei
    Qin, Yucheng
    Rosenthal, Benjamin M.
    Cui, Liwang
    Yang, Zhaoqing
    INFECTION GENETICS AND EVOLUTION, 2022, 106
  • [48] Plasmodium vivax populations revisited: mitochondrial genomes of temperate strains in Asia suggest ancient population expansion
    Miao, Miao
    Yang, Zhaoqing
    Patch, Harland
    Huang, Yaming
    Escalante, Ananias A.
    Cui, Liwang
    BMC EVOLUTIONARY BIOLOGY, 2012, 12
  • [49] Investigation and control of a Plasmodium falciparum malaria outbreak in Shan Special Region II of Myanmar along the China-Myanmar Border from June to December 2014
    Liu, Hui
    Xu, Jian-Wei
    Yang, Heng-Lin
    Li, Mei
    Sun, Cheng-De
    Yin, Yi-Jie
    Zheng, Zhi-Liang
    Zhang, Guang-Yun
    Yu, Ai-Shui
    Yang, Yong-Hui
    Li, Chun-Hui
    Ai, Shui
    INFECTIOUS DISEASES OF POVERTY, 2016, 5
  • [50] In vivo monitoring of dihydroartemisinin-piperaquine sensitivity in Plasmodium falciparum along the China-Myanmar border of Yunnan Province, China from 2007 to 2013
    Hui Liu
    Heng-lin Yang
    Lin-hua Tang
    Xing-liang Li
    Fang Huang
    Jia-zhi Wang
    Chun-fu Li
    Heng-ye Wang
    Ren-hua Nie
    Xiang-rui Guo
    Ying-xue Lin
    Mei Li
    Jian Wang
    Jian-wei Xu
    Malaria Journal, 14