Charoonluk Jirapattharasate
Obihiro University of Agriculture and Veterinary Medicine
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Publication
Featured researches published by Charoonluk Jirapattharasate.
Ticks and Tick-borne Diseases | 2017
Mo Zhou; Shinuo Cao; Ferda Sevinc; Mutlu Sevinc; Onur Ceylan; Sepil Ekici; Charoonluk Jirapattharasate; Paul Franck Adjou Moumouni; Mingming Liu; Guanbo Wang; Aiko Iguchi; Patrick Vudriko; Hiroshi Suzuki; Xuenan Xuan
Babesia spp., Theileria spp. and Anaplasma spp. are significant tick-borne pathogens of livestock globally. In this study, we investigated the presence and distribution of Babesia ovis, Theileria ovis and Anaplasma ovis in 343 small ruminants (249 sheep and 94 goats) from 13 towns in the Central Anatolia region of Turkey using species-specific PCR assays. The PCR were conducted using the primers based on the B. ovis ssu rRNA (BoSSUrRNA), T. ovis ssu rRNA (ToSSUrRNA) and A. ovis major surface protein 4 (AoMSP4) genes, respectively. Fragments of these genes were sequenced for phylogenetic analysis. PCR results revealed that the overall infections of A. ovis, T. ovis and B. ovis were 60.0%, 35.9% and 5.2%, respectively. Co-infection of the animals with two or three pathogens was detected in 105/343 (30.6%) of the ovine samples. The results of sequence analysis indicated that AoMSP4 were conserved among the Turkish samples, with 100% sequence identity values. In contrast, the BoSSUrRNA and ToSSUrRNA gene sequences were relatively diverse with identity values of 98.54%-99.82% and 99.23%-99.81%, respectively. Phylograms were inferred based on the BoSSUrRNA, ToSSUrRNA and AoMSP4 sequences obtained in this study and those from previous studies. B. ovis isolates from Turkey were found in the same clade as the isolates from other countries in phylogenetic analysis. On the other hand, the Turkish T. ovis isolates in the present study formed a monophyletic grouping with the isolates from other countries in a phylogeny based on ToSSUrRNA sequences. Furthermore, phylogenetic analysis using AoMSP4 sequences showed the presence of three genotypes of A. ovis. This study provides important data for understanding the epidemiology of tick-borne diseases in small ruminants and the degree of genetic heterogeneities among these pathogens in Turkey. To our knowledge, this is the first study on the co-infection of Babesia, Theileria and Anaplasma in sheep and goats in Turkey.
Ticks and Tick-borne Diseases | 2016
Mo Zhou; Shinuo Cao; Ferda Sevinc; Mutlu Sevinc; Onur Ceylan; Paul Franck Adjou Moumouni; Charoonluk Jirapattharasate; Mingming Liu; Guanbo Wang; Aiko Iguchi; Patrick Vudriko; Hiroshi Suzuki; Xuenan Xuan
Babesia spp., Theileria spp. and Anaplasma spp. are significant tick-borne pathogens of livestock globally. In this study, we investigated the presence and distribution of Babesia bigemina, Theileria annulata, Theileria orientalis and Anaplasma marginale in cattle from 6 provinces of Turkey using species-specific PCR assays. The PCR were conducted using the primers based on the B. bigemina rhoptry-associated protein 1a (BbiRAP-1a), T. annulata merozoite surface antigen-1 (Tams-1), T. orientalis major piroplasm surface protein (ToMPSP) and A. marginale major surface protein 4 (AmMSP4) genes, respectively. Fragments of B. bigemina internal transcribed spacer (BbiITS), T. annulata internal transcribed spacer (TaITS), ToMPSP and AmMSP4 genes were sequenced for phylogenetic analysis. PCR results revealed that the overall infections of A. marginale, T. annulata, B. bigemina and T. orientalis were 29.1%, 18.9%, 11.2% and 5.6%, respectively. The co-infection of two or three pathogens was detected in 29/196 (15.1%) of the cattle samples. The results of sequence analysis indicated that BbiRAP-1a, BbiITS, Tams-1, ToMPSP and AmMSP4 were conserved among the Turkish samples, with 99.76%, 99-99.8%, 99.34-99.78%, 96.9-99.61% and 99.42-99.71% sequence identity values, respectively. In contrast, the Turkish TaITS gene sequences were relatively diverse with 92.3-96.63% identity values. B. bigemina isolates from Turkey were found in the same clade as the isolates from other countries in phylogenetic analysis. On the other hand, phylogenetic analysis based on T. annulata ITS sequences revealed significant differences in the genotypes of T. annulata isolates from Turkey. Additionally, the T. orientalis isolates from Turkish samples were classified as MPSP type 3 genotype. This is the first report of type 3 MPSP in Turkey. Moreover, AmMSP4 isolates from Turkey were found in the same clade as the isolates from other countries. This study provides important data for understanding the epidemiology of tick-borne diseases and it is expected to improve approach for diagnosis and control of tick-borne diseases in Turkey.
Parasitology International | 2016
Charoonluk Jirapattharasate; Paul Franck Adjou Moumouni; Shinuo Cao; Aiko Iguchi; Mingming Liu; Guanbo Wang; Mo Zhou; Patrick Vudriko; Tanasak Changbunjong; Sivapong Sungpradit; Parntep Ratanakorn; Walasinee Moonarmart; Poonyapat Sedwisai; Thekhawet Weluwanarak; Witsanu Wongsawang; Hiroshi Suzuki; Xuenan Xuan
Beef cattle production represents the largest cattle population in Thailand. Their productivity is constrained by tick-borne diseases such as babesiosis and theileriosis. In this study, we determined the prevalence of Babesia bigemina, Babesia bovis and Theileria orientalis using polymerase chain reaction (PCR). The genetic markers that were used for detection of the above parasites were sequenced to determine identities and similarity for Babesia spp. and genetic diversity of T. orientalis. Furthermore the risk factors for the occurrence of the above protozoan parasites in beef cattle from northern and northeastern parts of Thailand were assessed. A total of 329 blood samples were collected from beef cattle in 6 provinces. The study revealed that T. orientalis was the most prevalent (30.1%) parasite in beef cattle followed by B. bigemina (13.1%) and B. bovis (5.5%). Overall, 78.7% of the cattle screened were infected with at least one of the above parasites. Co-infection with Babesia spp. and T. orientalis was 30.1%. B. bigemina and T. orientalis were the most prevalent (15.1%) co-infection although triple infection with the three parasites was observed in 3.0% of the samples. Sequencing analysis revealed that B. bigemina RAP1 gene and B. bovis SBP2 gene were conserved among the parasites from different cattle samples. Phylogenetic analysis showed that the T. orientalis MPSP gene from parasites isolated from cattle in north and northeast Thailand was classified into types 5 and 7 as reported previously. Lack of tick control program was the universal risk factor of the occurrence of Babesia spp. and T. orientalis infection in beef cattle in northern and northeastern Thailand. We therefore recommend training of farmers on appropriate tick control strategies and further research on potential vectors for T. orientalis and elucidate the effect of co-infection with Babesia spp. on the pathogenicity of T. orientalis infection on beef in northern and northeastern Thailand.
Pesticide Biochemistry and Physiology | 2017
Patrick Vudriko; Rika Umemiya-Shirafuji; James Okwee-Acai; Dickson Stuart Tayebwa; Joseph K. Byaruhanga; Charoonluk Jirapattharasate; Mingming Liu; Paul Franck Adjou Moumouni; Kozo Fujisaki; Xuenan Xuan; Hiroshi Suzuki
We previously reported emergence of super synthetic pyrethroid (SP) resistant Rhipicephalus (Boophilus) decoloratus ticks in Uganda. This study investigated the genetic basis of phenotypic resistance against SP in R. (B.) decoloratus and sought to identify novel diagnostic mutations for rapid detection of SP resistance in the above tick species. Genomic DNA was extracted from pooled larvae of 20 tick populations (19 of known SP susceptibility and 1 unknown susceptibility). The voltage sensitive sodium channel (VSSC) domain II S4-5 linker (SP target) and partial carboxylesterase (SP metabolizing enzyme) genes were amplified by PCR, cloned and sequenced. The resultant sequences were analyzed to determine single nucleotide polymorphisms (SNPs) associated with phenotypic resistance in the various tick populations investigated. Novel SNPs that introduced Eco RI and Eco RII restriction sites in carboxylesterase gene were identified in silco and validated with restriction fragment length polymorphism (RFLP) against 18 tick populations of known SP susceptibility. The study identified a super knock down resistance (kdr) mutation T58C in R. (B.) decoloratus VSSC associated with stable SP resistance. We further identified multiple nonsynonymous mutations in carboxylesterase of SP resistant ticks; one of which conferred novel EcoRII (G195C) restriction site for PCR-RFLP detection of SP resistance. In conclusion, this study is the first to report super kdr mutation in sodium channel domain II and multiple mutations in carboxylesterase genes that may concurrently mediate stable resistance against synthetic pyrethroids in R. (B.) decoloratus ticks from Uganda. The Eco RII based PCR-RFLP is a useful tool for rapid detection of stable SP resistant R. (B.) decoloratus ticks.
Journal of Veterinary Medical Science | 2017
Weiqing Zheng; Mingming Liu; Paul Franck Adjou Moumouni; Xiaoqing Liu; Artemis Efstratiou; Zhanbin Liu; Yangqing Liu; Huiying Tao; Huanping Guo; Guanbo Wang; Yang Gao; Zifen Li; Aaron Edmund Ringo; Charoonluk Jirapattharasate; Haiying Chen; Xuenan Xuan
In this study, blood samples obtained from 162 dogs in Jiangxi, China, were employed in molecular screening of canine tick-borne pathogens by PCR and sequencing. Babesia spp. gene fragment was detected in 12 (7.41%) dogs. All samples were negative for Hepatozoon spp., Ehrlichia canis, Coxiella spp., Borrelia spp., Rickettsia spp. and Anaplasma platys. Species-specific PCR analysis further confirmed that 8 (4.94%) and 4 (2.47%) dogs were infected by Babesia canis vogeli and Babesia gibsoni, respectively. Based on our analyses, Babesia spp. infection in Jiangxi appeared not related to age, gender, breed, usage, activity and health status or tick infestation history of the dogs. This is the first molecular report of Babesia canis vogeli and Babesia gibsoni in dogs from Jiangxi, China.
Acta Parasitologica | 2017
Huanping Guo; Ferda Sevinc; Onur Ceylan; Mutlu Sevinc; Ege Ince; Yang Gao; Paul Franck Adjou Moumouni; Mingming Liu; Artemis Efstratiou; Guanbo Wang; Shinuo Cao; Mo Zhou; Charoonluk Jirapattharasate; Aaron Edmond Ringo; Weiqing Zheng; Xuenan Xuan
In the present study, a total of 192 blood samples were collected from pet dogs, kennel dogs and shepherd dogs in Konya district, Turkey, and tested by specific PCR for the presence of vector-borne pathogens. Several pathogens were identified, most of which can cause substantial morbidity in dogs. PCR results revealed that 54 (28.1%) dogs were infected with one or more pathogens. Positive results were obtained for Babesia spp. in 4 dogs (2.1%), Hepatozoon spp. in 8 dogs (4.2%) and Mycoplasma spp. in 46 dogs (24%). Three dogs (1.6%) were infected with two or three pathogens. The sequence analysis of the positive DNA samples revealed the presence of Babesia canis vogeli, Hepatozoon canis, Hepatozoon sp. MF, Mycoplasma haemocanis and Candidatus Mycoplasma haematoparvum. Ehrlichia canis and Anaplasma platys were not detected. Regardless of ownership status, vector-borne diseases were common in these dog populations. There was significant difference of pathogen prevalence among the different dog populations. Mycoplasma spp. was more frequent in the kennel dogs (31.9%) than in the pet (21.4%) and shepherd dogs (13.8%). Additionally, the frequency of Babesia spp. and Hepatozoon spp. was higher in the shepherd dogs which account for three quarters and half of the total number of Babesia spp. and Hepatozoon spp., respectively. To our knowledge, this is the first report of Mycoplasma infection in dogs in Turkey. The results of the present study provide a foundation for understanding the epidemiology of canine vector-borne diseases (CVBDs), and for strategies to control these diseases in Turkey.
Journal of Veterinary Medical Science | 2016
Mo Zhou; Shinuo Cao; Ferda Sevinc; Mutlu Sevinc; Onur Ceylan; Mingming Liu; Guanbo Wang; Paul Franck Adjou Moumouni; Charoonluk Jirapattharasate; Hiroshi Suzuki; Yoshifumi Nishikawa; Xuenan Xuan
Considering the scarce information on occurrences of Toxoplasma gondii and Neospora caninum in domestic animals from Turkey, the aim of this study was to investigate the seroprevalence of these parasite infections in cattle, horses, sheep, goats and dogs in Turkey. The specific antibodies against T. gondii and N. caninum were detected by iELISAs based on the recombinant TgSAG2 or NcSAG1 in a total of 2,039 serum samples from eleven provinces. The seroprevalence of T. gondii infections was 46.3%, 4.0%, 20.0%, 12.9% and 19.8%, that of N. caninum infections was 0.3%, 7.4%, 2.1%, 3.2% and 16.6% in the horses, cattle, sheep, goats and dogs, respectively. These results indicated that T. gondii and N. caninum infections are prevalent in Turkish domestic animals.
Ticks and Tick-borne Diseases | 2016
Paul Franck Adjou Moumouni; Mohamad Alaa Terkawi; Charoonluk Jirapattharasate; Shinuo Cao; Mingming Liu; Ryo Nakao; Rika Umemiya-Shirafuji; Naoaki Yokoyama; Chihiro Sugimoto; Kozo Fujisaki; Hiroshi Suzuki; Xuenan Xuan
Spotted fever group (SFG) rickettsiae are obligate intracellular, Gram-negative bacteria transmitted by ticks and causing febrile illness in humans. Despite the presence of suitable tick vectors, the occurrence of SFG rickettsiae has never been investigated in the Republic of Benin (West Africa). In the present study, 910 Amblyomma variegatum ticks collected from 8 different locations in North Eastern Benin were tested for SFG rickettsiae. The samples were first screened for the presence of rickettsial bacteria using 16S rDNA PCR and positive samples were subsequently characterized by ompA PCR. Randomly selected samples among those positive for both assays were subjected to sequencing of 16S rDNA and ompA genes for species identification. The 16S rDNA gene was amplified in 63.4% of the samples (585/910) and the SFG rickettsia-specific ompA gene was detected in 29.4% of the samples (267/910). The prevalence of SFG rickettsiae varied according to the location, and tick gender. Sequence analyses demonstrated the presence of Rickettsia africae and/or closely related species in Benin. These findings extend the geographic distribution of R. africae and spotted fever rickettsioses in Africa. Clinicians in Benin and those treating travellers should be aware of the possibility of SFG rickettsiae infection when they are treating patients with febrile illness.
Ticks and Tick-borne Diseases | 2016
Mingming Liu; Shinuo Cao; Mo Zhou; Guanbo Wang; Charoonluk Jirapattharasate; Paul Franck Adjou Moumouni; Aiko Iguchi; Patrick Vudriko; Hiroshi Suzuki; Takehisa Soma; Xuenan Xuan
Babesia gibsoni is a tick-borne apicomplexan parasite of dogs that often causes fever and hemolytic anemia. Previous reports have shown that the apical membrane antigen 1 (BgAMA1), the 50 kDa surface antigen (BgP50), the secreted antigen 1 (BgSA1), and the thrombospondin-related adhesive protein (BgTRAP) are promising diagnostic antigens and vaccine candidates against B. gibsoni. In the present study, we investigated the genetic polymorphisms and natural selection of these four genes of B. gibsoni isolated from dogs in southwest Japan. The prediction B-cell epitopes showed high antigenic score in the insert and indel regions of BgSA1 and BgTRAP. Sequence analyses have revealed that BgAMA1 had the highest nucleotide diversity, followed by BgP50, BgSA1 and BgTRAP. Meanwhile, the Tajimas D value test suggested balancing selection for BgAMA1 and BgP50. However, BgSA1 and BgTRAP have purifying selection making them potential vaccine candidate and diagnostic antigens since they are highly conserved. Our findings provide the genetic basis for designing and testing the efficacy of diagnostic antigens as well as vaccine candidates against B. gibsoni.
Ticks and Tick-borne Diseases | 2017
Paul Franck Adjou Moumouni; Gilbert Luc Aplogan; Hirotaka Katahira; Yang Gao; Huanping Guo; Artemis Efstratiou; Charoonluk Jirapattharasate; Guanbo Wang; Mingming Liu; Aaron Edmond Ringo; Rika Umemiya-Shirafuji; Hiroshi Suzuki; Xuenan Xuan
Babesiosis, theileriosis, anaplasmosis, and heartwater are tick-borne diseases (TBD) that threaten livestock production in sub-Saharan Africa including Benin. This country has been faced with an invasion of Rhipicephalus microplus, a major vector for babesiosis, theileriosis, and anaplasmosis over the last decade. Yet, data on TBD and the impact of the invasive ticks are lacking, making risk level evaluation and disease control arduous. In this study, epidemiological features of Babesia bovis, B. bigemina, Theileria spp., Anaplasma marginale and Ehrlichia ruminantium infections in Benin cattle were investigated in R. microplus-invaded and non-invaded areas. Detection of pathogens was based on species-specific PCR assays and resulting data were used to identify risk factors. Genetic diversity and phylogenies were then evaluated using several markers. Out of 207 samples examined, 170 (82.1%), 109 (52.7%), 42 (20.3%) 24 (11.6%) and 1 (0.5%) were positive for T. mutans, A. marginale, B. bigemina, B. bovis and E. ruminantium, respectively. Animal gender (for B. bovis), exposure to R. microplus (for B. bigemina and A. marginale), animal age (for B. bigemina and A. marginale) and cattle breed and/or antiprotozoal treatment (for T. mutants) significantly modulated pathogen occurrence. In addition, R. microplus exposure was significantly related to co-infection patterns and cases of clinical theileriosis and/or anaplasmosis were recorded among cattle highly exposed to the tick. In the genetic characterization, Theileria spp. and E. ruminantium sequences were conserved. Babesia spp. and A. marginale, however, showed high sequence polymorphisms that indicate the presence of several strains and may be linked to R. microplus invasion. Taken together, these results ascertain the endemicity of tick-borne infections in Benin and suggest that the characteristics of Babesia spp. and A. marginale infections in R. microplus-invaded and non-invaded areas are different.
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Obihiro University of Agriculture and Veterinary Medicine
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View shared research outputsObihiro University of Agriculture and Veterinary Medicine
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