Skip to main content
Top
Published in: Malaria Journal 1/2016

Open Access 01-12-2016 | Research

Plasmodium malariae and Plasmodium ovale infections in the China–Myanmar border area

Authors: Peipei Li, Zhenjun Zhao, Hua Xing, Wenli Li, Xiaotong Zhu, Yaming Cao, Zhaoqing Yang, Jetsumon Sattabongkot, Guiyun Yan, Qi Fan, Liwang Cui

Published in: Malaria Journal | Issue 1/2016

Login to get access

Abstract

Background

The Greater Mekong Subregion is aiming to achieve regional malaria elimination by 2030. Though a shift in malaria parasite species predominance by Plasmodium vivax has been recently documented, the transmission of the two minor Plasmodium species, Plasmodium malariae and Plasmodium ovale spp., is poorly characterized in the region. This study aims to determine the prevalence of these minor species in the China–Myanmar border area and their genetic diversity.

Methods

Epidemiology study was conducted during passive case detection in hospitals and clinics in Myanmar and four counties in China along the China–Myanmar border. Cross-sectional surveys were conducted in villages and camps for internally displaced persons to determine the prevalence of malaria infections. Malaria infections were diagnosed initially by microscopy and later in the laboratory using nested PCR for the SSU rRNA genes. Plasmodium malariae and P. ovale infections were confirmed by sequencing the PCR products. The P. ovale subtypes were determined by sequencing the Pocytb, Pocox1 and Pog3p genes. Parasite populations were evaluated by PCR amplification and sequencing of the MSP-1 genes. Antifolate sensitivity was assessed by sequencing the dhfr-ts and dhps genes from the P. malariae and P. ovale isolates.

Results

Analysis of 2701 blood samples collected from the China–Myanmar border by nested PCR targeting the parasite SSU rRNA genes identified 561 malaria cases, including 161 Plasmodium falciparum, 327 P. vivax, 66 P. falciparum/P. vivax mixed infections, 4 P. malariae and 3 P. ovale spp. P. vivax and P. falciparum accounted for >60 and ~30% of all malaria cases, respectively. In comparison, the prevalence of P. malariae and P. ovale spp. was very low and only made up ~1% of all PCR-positive cases. Nevertheless, these two species were often misidentified as P. vivax infections or completely missed by microscopy even among symptomatic patients. Phylogenetic analysis of the SSU rRNA, Pocytb, Pocox1 and Pog3p genes confirmed that the three P. ovale spp. isolates belonged to the subtype P. ovale curtisi. Low-level genetic diversity was detected in the MSP-1, dhfr and dhps genes of these minor parasite species, potentially stemming from the low prevalence of these parasites preventing their mixing. Whereas most of the dhfr and dhps positions equivalent to those conferring antifolate resistance in P. falciparum and P. vivax were wild type, a new mutation S113C corresponding to the S108 position in pfdhfr was identified in two P. ovale curtisi isolates.

Conclusions

The four human malaria parasite species all occurred sympatrically at the China–Myanmar border. While P. vivax has become the predominant species, the two minor parasite species also occurred at very low prevalence but were often misidentified or missed by conventional microscopy. These minor parasite species displayed low levels of polymorphisms in the msp-1, dhfr and dhps genes.
Appendix
Available only for authorised users
Literature
2.
go back to reference Gething PW, Elyazar IR, Moyes CL, Smith DL, Battle KE, Guerra CA, et al. A long neglected world malaria map: Plasmodium vivax endemicity in 2010. PLoS Negl Trop Dis. 2012;6:e1814.PubMedPubMedCentralCrossRef Gething PW, Elyazar IR, Moyes CL, Smith DL, Battle KE, Guerra CA, et al. A long neglected world malaria map: Plasmodium vivax endemicity in 2010. PLoS Negl Trop Dis. 2012;6:e1814.PubMedPubMedCentralCrossRef
3.
go back to reference Mueller I, Zimmerman PA, Reeder JC. Plasmodium malariae and Plasmodium ovale–the “bashful” malaria parasites. Trends Parasitol. 2007;23:278–83.PubMedPubMedCentralCrossRef Mueller I, Zimmerman PA, Reeder JC. Plasmodium malariae and Plasmodium ovale–the “bashful” malaria parasites. Trends Parasitol. 2007;23:278–83.PubMedPubMedCentralCrossRef
6.
go back to reference Trape JF, Rogier C, Konate L, Diagne N, Bouganali H, Canque B, et al. The Dielmo project: a longitudinal study of natural malaria infection and the mechanisms of protective immunity in a community living in a holoendemic area of Senegal. Am J Trop Med Hyg. 1994;51:123–37.PubMed Trape JF, Rogier C, Konate L, Diagne N, Bouganali H, Canque B, et al. The Dielmo project: a longitudinal study of natural malaria infection and the mechanisms of protective immunity in a community living in a holoendemic area of Senegal. Am J Trop Med Hyg. 1994;51:123–37.PubMed
7.
go back to reference Koita OA, Sangare L, Sango HA, Dao S, Keita N, Maiga M, et al. Effect of seasonality and ecological factors on the prevalence of the four malaria parasite species in northern Mali. J Trop Med. 2012;2012:367160.PubMedPubMedCentralCrossRef Koita OA, Sangare L, Sango HA, Dao S, Keita N, Maiga M, et al. Effect of seasonality and ecological factors on the prevalence of the four malaria parasite species in northern Mali. J Trop Med. 2012;2012:367160.PubMedPubMedCentralCrossRef
8.
go back to reference Roucher C, Rogier C, Sokhna C, Tall A, Trape JF. A 20-year longitudinal study of Plasmodium ovale and Plasmodium malariae prevalence and morbidity in a West African population. PLoS ONE. 2014;9:e87169.PubMedPubMedCentralCrossRef Roucher C, Rogier C, Sokhna C, Tall A, Trape JF. A 20-year longitudinal study of Plasmodium ovale and Plasmodium malariae prevalence and morbidity in a West African population. PLoS ONE. 2014;9:e87169.PubMedPubMedCentralCrossRef
9.
go back to reference Trape JF, Tall A, Sokhna C, Ly AB, Diagne N, Ndiath O, et al. The rise and fall of malaria in a West African rural community, Dielmo, Senegal, from 1990 to 2012: a 22 year longitudinal study. Lancet Infect Dis. 2014;14:476–88.PubMedCrossRef Trape JF, Tall A, Sokhna C, Ly AB, Diagne N, Ndiath O, et al. The rise and fall of malaria in a West African rural community, Dielmo, Senegal, from 1990 to 2012: a 22 year longitudinal study. Lancet Infect Dis. 2014;14:476–88.PubMedCrossRef
10.
go back to reference Doderer-Lang C, Atchade PS, Meckert L, Haar E, Perrotey S, Filisetti D, et al. The ears of the African elephant: unexpected high seroprevalence of Plasmodium ovale and Plasmodium malariae in healthy populations in Western Africa. Malar J. 2014;13:240.PubMedPubMedCentralCrossRef Doderer-Lang C, Atchade PS, Meckert L, Haar E, Perrotey S, Filisetti D, et al. The ears of the African elephant: unexpected high seroprevalence of Plasmodium ovale and Plasmodium malariae in healthy populations in Western Africa. Malar J. 2014;13:240.PubMedPubMedCentralCrossRef
11.
go back to reference Snounou G, Viriyakosol S, Jarra W, Thaithong S, Brown KN. Identification of the four human malaria parasite species in field samples by the polymerase chain reaction and detection of a high prevalence of mixed infections. Mol Biochem Parasitol. 1993;58:283–92.PubMedCrossRef Snounou G, Viriyakosol S, Jarra W, Thaithong S, Brown KN. Identification of the four human malaria parasite species in field samples by the polymerase chain reaction and detection of a high prevalence of mixed infections. Mol Biochem Parasitol. 1993;58:283–92.PubMedCrossRef
12.
go back to reference Sutherland CJ, Tanomsing N, Nolder D, Oguike M, Jennison C, Pukrittayakamee S, et al. Two nonrecombining sympatric forms of the human malaria parasite Plasmodium ovale occur globally. J Infect Dis. 2010;201:1544–50.PubMedCrossRef Sutherland CJ, Tanomsing N, Nolder D, Oguike M, Jennison C, Pukrittayakamee S, et al. Two nonrecombining sympatric forms of the human malaria parasite Plasmodium ovale occur globally. J Infect Dis. 2010;201:1544–50.PubMedCrossRef
13.
go back to reference Ansari HR, Templeton TJ, Subudhi AK, Ramaprasad A, Tang J, Lu F, et al. Genome-scale comparison of expanded gene families in Plasmodium ovale wallikeri and Plasmodium ovale curtisi with Plasmodium malariae and with other Plasmodium species. Int J Parasitol. 2016;46:685–96.PubMedCrossRef Ansari HR, Templeton TJ, Subudhi AK, Ramaprasad A, Tang J, Lu F, et al. Genome-scale comparison of expanded gene families in Plasmodium ovale wallikeri and Plasmodium ovale curtisi with Plasmodium malariae and with other Plasmodium species. Int J Parasitol. 2016;46:685–96.PubMedCrossRef
14.
go back to reference Sitali L, Chipeta J, Miller JM, Moonga HB, Kumar N, Moss WJ, et al. Patterns of mixed Plasmodium species infections among children 6 years and under in selected malaria hyper-endemic communities of Zambia: population-based survey observations. BMC Infect Dis. 2015;15:204.PubMedPubMedCentralCrossRef Sitali L, Chipeta J, Miller JM, Moonga HB, Kumar N, Moss WJ, et al. Patterns of mixed Plasmodium species infections among children 6 years and under in selected malaria hyper-endemic communities of Zambia: population-based survey observations. BMC Infect Dis. 2015;15:204.PubMedPubMedCentralCrossRef
15.
go back to reference Getnet G, Getie S, Srivastava M, Birhan W, Fola AA, Noedl H. Diagnostic performance of rapid diagnostic tests for the diagnosis of malaria at public health facilities in Northwest Ethiopia. Trop Med Int Health. 2015;20:1564–8.PubMedCrossRef Getnet G, Getie S, Srivastava M, Birhan W, Fola AA, Noedl H. Diagnostic performance of rapid diagnostic tests for the diagnosis of malaria at public health facilities in Northwest Ethiopia. Trop Med Int Health. 2015;20:1564–8.PubMedCrossRef
16.
go back to reference Zhou X, Huang JL, Njuabe MT, Li SG, Chen JH, Zhou XN. A molecular survey of febrile cases in malaria-endemic areas along China–Myanmar border in Yunnan province, People’s Republic of China. Parasite. 2014;21:27.PubMedPubMedCentralCrossRef Zhou X, Huang JL, Njuabe MT, Li SG, Chen JH, Zhou XN. A molecular survey of febrile cases in malaria-endemic areas along China–Myanmar border in Yunnan province, People’s Republic of China. Parasite. 2014;21:27.PubMedPubMedCentralCrossRef
17.
go back to reference Oguike MC, Betson M, Burke M, Nolder D, Stothard JR, Kleinschmidt I, et al. Plasmodium ovale curtisi and Plasmodium ovale wallikeri circulate simultaneously in African communities. Int J Parasitol. 2011;41:677–83.PubMedPubMedCentralCrossRef Oguike MC, Betson M, Burke M, Nolder D, Stothard JR, Kleinschmidt I, et al. Plasmodium ovale curtisi and Plasmodium ovale wallikeri circulate simultaneously in African communities. Int J Parasitol. 2011;41:677–83.PubMedPubMedCentralCrossRef
18.
go back to reference Calderaro A, Piccolo G, Gorrini C, Rossi S, Montecchini S, Dell’Anna ML, et al. Accurate identification of the six human Plasmodium spp. causing imported malaria, including Plasmodium ovale wallikeri and Plasmodium knowlesi. Malar J. 2013;12:321.PubMedPubMedCentralCrossRef Calderaro A, Piccolo G, Gorrini C, Rossi S, Montecchini S, Dell’Anna ML, et al. Accurate identification of the six human Plasmodium spp. causing imported malaria, including Plasmodium ovale wallikeri and Plasmodium knowlesi. Malar J. 2013;12:321.PubMedPubMedCentralCrossRef
19.
go back to reference Kawamoto F, Liu Q, Ferreira MU, Tantular IS. How prevalent are Plasmodium ovale and P. malariae in East Asia? Parasitol Today. 1999;15:422–6.PubMedCrossRef Kawamoto F, Liu Q, Ferreira MU, Tantular IS. How prevalent are Plasmodium ovale and P. malariae in East Asia? Parasitol Today. 1999;15:422–6.PubMedCrossRef
20.
go back to reference Eyles DE, Wharton RH, Cheong WH, Warren M. Studies on ùalaria and Anopheles balabacensis in Cambodia. Bull World Health Organ. 1964;30:7–21.PubMedPubMedCentral Eyles DE, Wharton RH, Cheong WH, Warren M. Studies on ùalaria and Anopheles balabacensis in Cambodia. Bull World Health Organ. 1964;30:7–21.PubMedPubMedCentral
21.
go back to reference Steenkeste N, Rogers WO, Okell L, Jeanne I, Incardona S, Duval L, et al. Sub-microscopic malaria cases and mixed malaria infection in a remote area of high malaria endemicity in Rattanakiri province, Cambodia: implication for malaria elimination. Malar J. 2010;9:108.PubMedPubMedCentralCrossRef Steenkeste N, Rogers WO, Okell L, Jeanne I, Incardona S, Duval L, et al. Sub-microscopic malaria cases and mixed malaria infection in a remote area of high malaria endemicity in Rattanakiri province, Cambodia: implication for malaria elimination. Malar J. 2010;9:108.PubMedPubMedCentralCrossRef
22.
go back to reference Sluydts V, Heng S, Coosemans M, Van Roey K, Gryseels C, Canier L, et al. Spatial clustering and risk factors of malaria infections in Ratanakiri Province, Cambodia. Malar J. 2014;13:387.PubMedPubMedCentralCrossRef Sluydts V, Heng S, Coosemans M, Van Roey K, Gryseels C, Canier L, et al. Spatial clustering and risk factors of malaria infections in Ratanakiri Province, Cambodia. Malar J. 2014;13:387.PubMedPubMedCentralCrossRef
23.
go back to reference Liu Q, Zhu S, Mizuno S, Kimura M, Liu P, Isomura S, et al. Sequence variation in the small-subunit rRNA gene of Plasmodium malariae and prevalence of isolates with the variant sequence in Sichuan, China. J Clin Microbiol. 1998;36:3378–81.PubMedPubMedCentral Liu Q, Zhu S, Mizuno S, Kimura M, Liu P, Isomura S, et al. Sequence variation in the small-subunit rRNA gene of Plasmodium malariae and prevalence of isolates with the variant sequence in Sichuan, China. J Clin Microbiol. 1998;36:3378–81.PubMedPubMedCentral
24.
go back to reference Kawamoto F, Win TT, Mizuno S, Lin K, Kyaw O, Tantulart IS, et al. Unusual Plasmodium malariae-like parasites in southeast Asia. J Parasitol. 2002;88:350–7.PubMedCrossRef Kawamoto F, Win TT, Mizuno S, Lin K, Kyaw O, Tantulart IS, et al. Unusual Plasmodium malariae-like parasites in southeast Asia. J Parasitol. 2002;88:350–7.PubMedCrossRef
25.
go back to reference Wang RB, Zhang J, Zhang QF. Malaria baseline survey in four special regions of northern Myanmar near China: a cross-sectional study. Malar J. 2014;13:302.PubMedPubMedCentralCrossRef Wang RB, Zhang J, Zhang QF. Malaria baseline survey in four special regions of northern Myanmar near China: a cross-sectional study. Malar J. 2014;13:302.PubMedPubMedCentralCrossRef
26.
go back to reference Zhou M, Liu Q, Wongsrichanalai C, Suwonkerd W, Panart K, Prajakwong S, et al. High prevalence of Plasmodium malariae and Plasmodium ovale in malaria patients along the Thai–Myanmar border, as revealed by acridine orange staining and PCR-based diagnoses. Trop Med Int Health. 1998;3:304–12.PubMedCrossRef Zhou M, Liu Q, Wongsrichanalai C, Suwonkerd W, Panart K, Prajakwong S, et al. High prevalence of Plasmodium malariae and Plasmodium ovale in malaria patients along the Thai–Myanmar border, as revealed by acridine orange staining and PCR-based diagnoses. Trop Med Int Health. 1998;3:304–12.PubMedCrossRef
27.
go back to reference Putaporntip C, Hongsrimuang T, Seethamchai S, Kobasa T, Limkittikul K, Cui L, et al. Differential prevalence of Plasmodium infections and cryptic Plasmodium knowlesi malaria in humans in Thailand. J Infect Dis. 2009;199:1143–50.PubMedCrossRef Putaporntip C, Hongsrimuang T, Seethamchai S, Kobasa T, Limkittikul K, Cui L, et al. Differential prevalence of Plasmodium infections and cryptic Plasmodium knowlesi malaria in humans in Thailand. J Infect Dis. 2009;199:1143–50.PubMedCrossRef
28.
go back to reference Swan H, Sloan L, Muyombwe A, Chavalitshewinkoon-Petmitr P, Krudsood S, Leowattana W, et al. Evaluation of a real-time polymerase chain reaction assay for the diagnosis of malaria in patients from Thailand. Am J Trop Med Hyg. 2005;73:850–4.PubMed Swan H, Sloan L, Muyombwe A, Chavalitshewinkoon-Petmitr P, Krudsood S, Leowattana W, et al. Evaluation of a real-time polymerase chain reaction assay for the diagnosis of malaria in patients from Thailand. Am J Trop Med Hyg. 2005;73:850–4.PubMed
29.
go back to reference Paxton LA, Slutsker L, Schultz LJ, Luby SP, Meriwether R, Matson P, et al. Imported malaria in Montagnard refugees settling in North Carolina: implications for prevention and control. Am J Trop Med Hyg. 1996;54:54–7.PubMed Paxton LA, Slutsker L, Schultz LJ, Luby SP, Meriwether R, Matson P, et al. Imported malaria in Montagnard refugees settling in North Carolina: implications for prevention and control. Am J Trop Med Hyg. 1996;54:54–7.PubMed
30.
go back to reference Nguyen HV, van den Eede P, van Overmeir C, Thang ND, le Hung X, D’Alessandro U, et al. Marked age-dependent prevalence of symptomatic and patent infections and complexity of distribution of human Plasmodium species in central Vietnam. Am J Trop Med Hyg. 2012;87:989–95.PubMedPubMedCentralCrossRef Nguyen HV, van den Eede P, van Overmeir C, Thang ND, le Hung X, D’Alessandro U, et al. Marked age-dependent prevalence of symptomatic and patent infections and complexity of distribution of human Plasmodium species in central Vietnam. Am J Trop Med Hyg. 2012;87:989–95.PubMedPubMedCentralCrossRef
31.
go back to reference Karnasuta C, Pongvongsa T, Jongsakul K, Na Nakorn A, Watt G. Plasmodium ovale in Lao PDR. Southeast Asian J Trop Med Public Health. 1997;28:746–7.PubMed Karnasuta C, Pongvongsa T, Jongsakul K, Na Nakorn A, Watt G. Plasmodium ovale in Lao PDR. Southeast Asian J Trop Med Public Health. 1997;28:746–7.PubMed
32.
go back to reference Toma H, Kobayashi J, Vannachone B, Arakawa T, Sato Y, Nambanya S, et al. Plasmodium ovale infections detected by PCR assay in Lao PDR. Southeast Asian J Trop Med Public Health. 1999;30:620–2.PubMed Toma H, Kobayashi J, Vannachone B, Arakawa T, Sato Y, Nambanya S, et al. Plasmodium ovale infections detected by PCR assay in Lao PDR. Southeast Asian J Trop Med Public Health. 1999;30:620–2.PubMed
33.
go back to reference Win TT, Lin K, Mizuno S, Zhou M, Liu Q, Ferreira MU, et al. Wide distribution of Plasmodium ovale in Myanmar. Trop Med Int Health. 2002;7:231–9.PubMedCrossRef Win TT, Lin K, Mizuno S, Zhou M, Liu Q, Ferreira MU, et al. Wide distribution of Plasmodium ovale in Myanmar. Trop Med Int Health. 2002;7:231–9.PubMedCrossRef
34.
go back to reference Yan J, Li N, Wei X, Li P, Zhao Z, Wang L, et al. Performance of two rapid diagnostic tests for malaria diagnosis at the China–Myanmar border area. Malar J. 2013;12:73.PubMedPubMedCentralCrossRef Yan J, Li N, Wei X, Li P, Zhao Z, Wang L, et al. Performance of two rapid diagnostic tests for malaria diagnosis at the China–Myanmar border area. Malar J. 2013;12:73.PubMedPubMedCentralCrossRef
35.
go back to reference Kawamoto F, Miyake H, Kaneko O, Kimura M, Nguyen TD, Liu Q, et al. Sequence variation in the 18S rRNA gene, a target for PCR-based malaria diagnosis, in Plasmodium ovale from southern Vietnam. J Clin Microbiol. 1996;34:2287–9.PubMedPubMedCentral Kawamoto F, Miyake H, Kaneko O, Kimura M, Nguyen TD, Liu Q, et al. Sequence variation in the 18S rRNA gene, a target for PCR-based malaria diagnosis, in Plasmodium ovale from southern Vietnam. J Clin Microbiol. 1996;34:2287–9.PubMedPubMedCentral
36.
go back to reference Yao YT, Wu CC. On tghe peculiar morphology of the malaria parasite from a patient and the possibility of its being Plasmodium ovale. Chin Med J. 1941;60:178–83. Yao YT, Wu CC. On tghe peculiar morphology of the malaria parasite from a patient and the possibility of its being Plasmodium ovale. Chin Med J. 1941;60:178–83.
37.
go back to reference Li M, Xia Z, Yan H. New type of SSUrDNA sequence was detected from both Plasmodium ovale curtisi and Plasmodium ovale wallikeri samples. Malar J. 2014;13:216.PubMedPubMedCentralCrossRef Li M, Xia Z, Yan H. New type of SSUrDNA sequence was detected from both Plasmodium ovale curtisi and Plasmodium ovale wallikeri samples. Malar J. 2014;13:216.PubMedPubMedCentralCrossRef
38.
go back to reference Zhang L, Feng J, Xia ZG. Malaria situation in the People’s Republic of China in 2013 (in Chinese). Zhongguo Ji Sheng Chong Xue Yu Ji Sheng Chong Bing Za Zhi. 2014;32:407–13.PubMed Zhang L, Feng J, Xia ZG. Malaria situation in the People’s Republic of China in 2013 (in Chinese). Zhongguo Ji Sheng Chong Xue Yu Ji Sheng Chong Bing Za Zhi. 2014;32:407–13.PubMed
39.
go back to reference Cui L, Yan G, Sattabongkot J, Cao Y, Chen B, Chen X, et al. Malaria in the Greater Mekong Subregion: heterogeneity and complexity. Acta Trop. 2012;121:227–39.PubMedCrossRef Cui L, Yan G, Sattabongkot J, Cao Y, Chen B, Chen X, et al. Malaria in the Greater Mekong Subregion: heterogeneity and complexity. Acta Trop. 2012;121:227–39.PubMedCrossRef
40.
41.
go back to reference Feng J, Xiao H, Xia Z, Zhang L, Xiao N. Analysis of malaria epidemiological characteristics in the People’s Republic of China, 2004-2013. Am J Trop Med Hyg. 2015;93:293–9.PubMedPubMedCentralCrossRef Feng J, Xiao H, Xia Z, Zhang L, Xiao N. Analysis of malaria epidemiological characteristics in the People’s Republic of China, 2004-2013. Am J Trop Med Hyg. 2015;93:293–9.PubMedPubMedCentralCrossRef
42.
go back to reference Li P, Zhao Z, Wang Y, Xing H, Parker DM, Yang Z, et al. Nested PCR detection of malaria directly using blood filter paper samples from epidemiological surveys. Malar J. 2014;13:175.PubMedPubMedCentralCrossRef Li P, Zhao Z, Wang Y, Xing H, Parker DM, Yang Z, et al. Nested PCR detection of malaria directly using blood filter paper samples from epidemiological surveys. Malar J. 2014;13:175.PubMedPubMedCentralCrossRef
43.
go back to reference Tanomsing N, Mayxay M, Newton PN, Nosten F, Dolecek C, Hien TT, et al. Genetic variability of Plasmodium malariae dihydropteroate synthase (dhps) in four Asian countries. PLoS ONE. 2014;9:e93942.PubMedPubMedCentralCrossRef Tanomsing N, Mayxay M, Newton PN, Nosten F, Dolecek C, Hien TT, et al. Genetic variability of Plasmodium malariae dihydropteroate synthase (dhps) in four Asian countries. PLoS ONE. 2014;9:e93942.PubMedPubMedCentralCrossRef
44.
go back to reference Tanomsing N, Imwong M, Pukrittayakamee S, Chotivanich K, Looareesuwan S, Mayxay M, et al. Genetic analysis of the dihydrofolate reductase-thymidylate synthase gene from geographically diverse isolates of Plasmodium malariae. Antimicrob Agents Chemother. 2007;51:3523–30.PubMedPubMedCentralCrossRef Tanomsing N, Imwong M, Pukrittayakamee S, Chotivanich K, Looareesuwan S, Mayxay M, et al. Genetic analysis of the dihydrofolate reductase-thymidylate synthase gene from geographically diverse isolates of Plasmodium malariae. Antimicrob Agents Chemother. 2007;51:3523–30.PubMedPubMedCentralCrossRef
45.
go back to reference Birkenmeyer L, Muerhoff AS, Dawson GJ, Desai SM. Isolation and characterization of the MSP1 genes from Plasmodium malariae and Plasmodium ovale. Am J Trop Med Hyg. 2010;82:996–1003.PubMedPubMedCentralCrossRef Birkenmeyer L, Muerhoff AS, Dawson GJ, Desai SM. Isolation and characterization of the MSP1 genes from Plasmodium malariae and Plasmodium ovale. Am J Trop Med Hyg. 2010;82:996–1003.PubMedPubMedCentralCrossRef
46.
go back to reference Guimaraes LO, Wunderlich G, Alves JM, Bueno MG, Rohe F, Catao-Dias JL, et al. Merozoite surface protein-1 genetic diversity in Plasmodium malariae and Plasmodium brasilianum from Brazil. BMC Infect Dis. 2015;15:529.PubMedPubMedCentralCrossRef Guimaraes LO, Wunderlich G, Alves JM, Bueno MG, Rohe F, Catao-Dias JL, et al. Merozoite surface protein-1 genetic diversity in Plasmodium malariae and Plasmodium brasilianum from Brazil. BMC Infect Dis. 2015;15:529.PubMedPubMedCentralCrossRef
47.
48.
go back to reference Putaporntip C, Hughes AL, Jongwutiwes S. Low level of sequence diversity at merozoite surface protein-1 locus of Plasmodium ovale curtisi and P. ovale wallikeri from Thai isolates. PLoS ONE. 2013;8:e58962.PubMedPubMedCentralCrossRef Putaporntip C, Hughes AL, Jongwutiwes S. Low level of sequence diversity at merozoite surface protein-1 locus of Plasmodium ovale curtisi and P. ovale wallikeri from Thai isolates. PLoS ONE. 2013;8:e58962.PubMedPubMedCentralCrossRef
49.
go back to reference Cowman AF, Morry MJ, Biggs BA, Cross GA, Foote SJ. Amino acid changes linked to pyrimethamine resistance in the dihydrofolate reductase-thymidylate synthase gene of Plasmodium falciparum. Proc Natl Acad Sci USA. 1988;85:9109–13.PubMedPubMedCentralCrossRef Cowman AF, Morry MJ, Biggs BA, Cross GA, Foote SJ. Amino acid changes linked to pyrimethamine resistance in the dihydrofolate reductase-thymidylate synthase gene of Plasmodium falciparum. Proc Natl Acad Sci USA. 1988;85:9109–13.PubMedPubMedCentralCrossRef
50.
go back to reference Sirawaraporn W, Sathitkul T, Sirawaraporn R, Yuthavong Y, Santi DV. Antifolate-resistant mutants of Plasmodium falciparum dihydrofolate reductase. Proc Natl Acad Sci USA. 1997;94:1124–9.PubMedPubMedCentralCrossRef Sirawaraporn W, Sathitkul T, Sirawaraporn R, Yuthavong Y, Santi DV. Antifolate-resistant mutants of Plasmodium falciparum dihydrofolate reductase. Proc Natl Acad Sci USA. 1997;94:1124–9.PubMedPubMedCentralCrossRef
51.
go back to reference Khim N, Kim S, Bouchier C, Tichit M, Ariey F, Fandeur T, et al. Reduced impact of pyrimethamine drug pressure on Plasmodium malariae dihydrofolate reductase gene. Antimicrob Agents Chemother. 2012;56:863–8.PubMedPubMedCentralCrossRef Khim N, Kim S, Bouchier C, Tichit M, Ariey F, Fandeur T, et al. Reduced impact of pyrimethamine drug pressure on Plasmodium malariae dihydrofolate reductase gene. Antimicrob Agents Chemother. 2012;56:863–8.PubMedPubMedCentralCrossRef
52.
go back to reference Chavatte JM, Tan SB, Snounou G, Lin RT. Molecular characterization of misidentified Plasmodium ovale imported cases in Singapore. Malar J. 2015;14:454.PubMedPubMedCentralCrossRef Chavatte JM, Tan SB, Snounou G, Lin RT. Molecular characterization of misidentified Plasmodium ovale imported cases in Singapore. Malar J. 2015;14:454.PubMedPubMedCentralCrossRef
53.
go back to reference Li N, Parker DM, Yang Z, Fan Q, Zhou G, Ai G, et al. Risk factors associated with slide positivity among febrile patients in a conflict zone of north-eastern Myanmar along the China–Myanmar border. Malar J. 2013;12:361.PubMedPubMedCentralCrossRef Li N, Parker DM, Yang Z, Fan Q, Zhou G, Ai G, et al. Risk factors associated with slide positivity among febrile patients in a conflict zone of north-eastern Myanmar along the China–Myanmar border. Malar J. 2013;12:361.PubMedPubMedCentralCrossRef
54.
go back to reference de Pecoulas PE, Tahar R, Ouatas T, Mazabraud A, Basco LK. Sequence variations in the Plasmodium vivax dihydrofolate reductase-thymidylate synthase gene and their relationship with pyrimethamine resistance. Mol Biochem Parasitol. 1998;92:265–73.PubMedCrossRef de Pecoulas PE, Tahar R, Ouatas T, Mazabraud A, Basco LK. Sequence variations in the Plasmodium vivax dihydrofolate reductase-thymidylate synthase gene and their relationship with pyrimethamine resistance. Mol Biochem Parasitol. 1998;92:265–73.PubMedCrossRef
Metadata
Title
Plasmodium malariae and Plasmodium ovale infections in the China–Myanmar border area
Authors
Peipei Li
Zhenjun Zhao
Hua Xing
Wenli Li
Xiaotong Zhu
Yaming Cao
Zhaoqing Yang
Jetsumon Sattabongkot
Guiyun Yan
Qi Fan
Liwang Cui
Publication date
01-12-2016
Publisher
BioMed Central
Published in
Malaria Journal / Issue 1/2016
Electronic ISSN: 1475-2875
DOI
https://doi.org/10.1186/s12936-016-1605-y

Other articles of this Issue 1/2016

Malaria Journal 1/2016 Go to the issue