CHINESE JOURNAL OF PARASITOLOGY AND PARASITIC DISEASES >
Molecular epidemiological investigation of Babesia infection in ticks parasitized on domestic animals in Xinyang, Henan Province
Received date: 2023-04-03
Revised date: 2023-09-09
Online published: 2023-11-06
Supported by
Henan Province Medical Science and Technology Research Plan Joint Construction Project(LHGJ20210134);Henan Province Medical Science and Technology Research Plan Joint Construction Project(LHGJ20220157)
Objective To understand the infection of Babesia in ticks parasitized on domestic animals in Xinyang, Henan Province. Methods Tick specimens were collected from domestic animals in Guangshan County and Shangcheng County, Xinyang City, Henan Province, from June to August 2022. The tick species were identified by morphology and 16S rDNA. Genomic DNA was extracted from tick specimens, and nested-PCR was performed to amplify 18S rRNA gene sequence of Babesia. The PCR products were sequenced and aligned by BLAST, and phylogenetic trees were constructed by the neighbor-joining method. Using MEGA7.0 software for homology analysis. Results A total of 335 ticks were collected, including the species of 49 Haemaphysalis longicornis, 208 Rhipicephalus microplus, 1 H. flava, 34 R. annulatus, and 43 H. punctataa, identified by morphology and PCR amplification. The PCR amplification results showed that 2 out of 335 tick samples were amplified target bands of 400 bp, and the overall positive rate was 0.6%. The BLAST comparison analysis results showed that the 18S rRNA sequence amplified from one sample had a 99.26% similarity with the sequences of B. microti from the United States (MK609547), Thailand (MG199181), and China (KU204794) in GenBank. The 18S rRNA sequence amplified from another sample shares 100% similarity with the sequences of B. gibsoni from the United States (MH620203), India (MN161136), and China (KP666166) in GenBank. The phylogenetic tree analysis revealed that the B. microti positive sample was clustered on the same branch with B. microti from Russia (KX987864), China (KU204794) and Thailand (MG199179), showing a high homology. The B. gibsoni-positive samples were clustered on the same branch with B. gibsoni from China (FJ769386), USA (MH620203) and India (KF606884), showing a close relation. Conclusion The infections of B. microti and B. gibsoni were detected in ticks parasitized on domestic animals in Xinyang area of Henan Province, which may render risk of disease transmission to humans and domestic animals.
Key words: Tick; Babesia; Domestic animals; Molecular epidemiology; Xinyang; Henan Province
JI Penghui , JIANG Tiantian , HE Zhiquan , WANG Dan , YUE Sining , LI Suhua , YANG Chengyun , WANG Hao , ZHANG Hongwei , ZHOU Ruimin . Molecular epidemiological investigation of Babesia infection in ticks parasitized on domestic animals in Xinyang, Henan Province[J]. CHINESE JOURNAL OF PARASITOLOGY AND PARASITIC DISEASES, 2023 , 41(5) : 567 -572 . DOI: 10.12140/j.issn.1000-7423.2023.05.007
| [1] | Barreira JD, Rossi MI, Pires FA, et al. The effect of different strains Babesia bovis (Babes, 1888) on tick of Boophilus microplus (Canestrini, 1887)[J]. Rev Bras Parasitol Vet, 2006, 15(4): 138-142. |
| [2] | Bl?ckberg J, Lazarevic VL, Hunfeld KP, et al. Low-virulent Babesia venatorum infection masquerading as hemophagocytic syndrome[J]. Ann Hematol, 2018, 97(4): 731-733. |
| [3] | Bloch EM, Kasubi M, Levin A, et al. Babesia microti and malaria infection in Africa: a pilot serosurvey in Kilosa District, Tanzania[J]. Am J Trop Med Hyg, 2018, 99(1): 51-56. |
| [4] | O'Connell S, Lyons C, Abdou M, et al. Splenic dysfunction from celiac disease resulting in severe babesiosis[J]. Ticks Tick Borne Dis, 2017, 8(4): 537-539. |
| [5] | Morters MK, Archer J, Ma D, et al. Long-term follow-up of owned, free-roaming dogs in South Africa naturally exposed to Babesia rossi[J]. Int J Parasitol, 2020, 50(2): 103-110. |
| [6] | Skrabalo Z, Deanovic Z. Piroplasmosis in man: report of a case[J]. Doc Med Geogr Trop, 1957, 9(1): 11-16. |
| [7] | Lobo CA, Singh M, Rodriguez M. Human babesiosis: recent advances and future challenges[J]. Curr Opin Hematol, 2020, 27(6): 399-405. |
| [8] | Santos MA, Tierney LM, Manesh R. Babesiosis-associated warm autoimmune hemolytic Anemia[J]. J Gen Intern Med, 2020, 35(3): 928-929. |
| [9] | H?selbarth K, Tenter AM, Brade V, et al. First case of human babesiosis in Germany: clinical presentation and molecular characterisation of the pathogen[J]. Int J Med Microbiol, 2007, 297(3): 197-204. |
| [10] | Kukina IV, Guzeeva TM, Zelya OP, et al. Fatal human babesiosis caused by Babesia divergens in an asplenic host[J]. IDCases, 2018, 13: e00414. |
| [11] | Bondarenko AV, Torianyk II, Pokhil SI, et al. Seroprevalence of babesiosis in immunocompetent and immunocompromised individuals[J]. Pol Merkur Lekarski, 2021, 49(291): 193-197. |
| [12] | Young KM, Corrin T, Wilhelm B, et al. Zoonotic Babesia: a scoping review of the global evidence[J]. PLoS One, 2019, 14(12): e0226781. |
| [13] | Smith RP, Hunfeld KP, Krause PJ. Management strategies for human babesiosis[J]. Expert Rev Anti Infect Ther, 2020, 18(7): 625-636. |
| [14] | Madison-Antenucci S, Kramer LD, Gebhardt LL, et al. Emerging tick-borne diseases[J]. Clin Microbiol Rev, 2020, 33(2): e00083. |
| [15] | Zheng WQ, Umemiya-Shirafuji R, Zhang Q, et al. Porin expression profiles in Haemaphysalis longicornis infected with Babesia microti[J]. Front Physiol, 2020, 11: 502. |
| [16] | Xu BL, Liu LC, Huang XY, et al. Metagenomic analysis of fever, thrombocytopenia and leukopenia syndrome (FTLS) in Henan Province, China: discovery of a new bunyavirus[J]. PLoS Pathog, 2011, 7(11): e1002369. |
| [17] | Li SH, Zhao YL, Gao LJ, et al. Analysis of molecular epidemiology of babesiosis in patients having fever and thrombocytopenia in Xinyang City, Henan Province[J]. Chin J Parasitol Parasit Dis, 2019, 37(1): 66-69. (in Chinese) |
| (李素华, 赵玉玲, 高丽君, 等. 河南省信阳市发热伴血小板减少患者中巴贝虫感染的分子流行特征分析[J]. 中国寄生虫学与寄生虫病杂志, 2019, 37(1): 66-69.) | |
| [18] | Deng GP, Jiang ZJ. Economic insect fauna of China, fasc 39,Acari: Ixodidae[M]. Beijing: Science Press, Academia Sinica, 1991: 1-359. (in Chinese) |
| (邓国藩, 姜在阶. 中国经济昆虫志, 第39册, 蜱螨亚纲, 硬蜱科[M]. 北京: 科学出版社, 1991: 1-359.) | |
| [19] | Liu Q, Zhang Y, Fang Y, et al. Identification of Haemaphysalis longicornis, H. flava and H. campanulata based on molecular markers of 16S rDNA and COⅠ gene[J]. Int J Med Parasit Dis, 2015, 42(3): 146-151. (in Chinese) |
| (刘琴, 张仪, 方圆, 等. 基于16S rDNA和COⅠ基因的3种血蜱分子生物学鉴定[J]. 国际医学寄生虫病杂志, 2015, 42(3): 146-151.) | |
| [20] | Zhang CC, Zhang Y. Research progress on biological chracteristics of common tick species and tick-borne diseases in China[J]. Int J Med Parasit Dis, 2015, 42(3): 184-188. (in Chinese) |
| (张臣臣, 张仪. 我国常见蜱的生物学特性及其传播疾病研究进展[J]. 国际医学寄生虫病杂志, 2015, 42(3): 184-188.) | |
| [21] | Zhao Q, Gao LJ, Tang ZQ, et al. Investigation of species, temporal and spatial distribution of ticks in Henan Province, China[J]. Chin J Vector Biol Contr, 2015, 26(1): 75-77. (in Chinese) |
| (赵奇, 高丽君, 唐振强, 等. 河南省蜱种类和地理分布及季节消长调查[J]. 中国媒介生物学及控制杂志, 2015, 26(1): 75-77.) | |
| [22] | Gao LJ, Zhao Q, Li SH, et al. Investigation on the selectivity of Haemaphysalis longicornis for hosts in different geographic zoning of Henan[J]. Henan J Prev Med, 2018, 29(9): 671-672, 730. (in Chinese) |
| (高丽君, 赵奇, 李素华, 等. 河南省不同地理区划长角血蜱对宿主选择性的研究[J]. 河南预防医学杂志, 2018, 29(9): 671-672, 730.) | |
| [23] | Lu M, Tian JH, Pan XL, et al. Identification of Rickettsia spp., Anaplasma spp., and an Ehrlichia canis-like agent in Rhipicephalus microplus from southwest and south-central China[J]. Ticks Tick Borne Dis, 2022, 13(2): 101884. |
| [24] | Chen Z. Investigation of piroplasms in different hosts in Xinyang, Henan Province[D]. Beijing: Chinese Center for Disease Control and Prevention, 2014: 38-44. (in Chinese) |
| (陈卓. 河南省信阳地区不同宿主梨形虫感染研究[D]. 北京: 中国疾病预防控制中心, 2014: 38-44.) | |
| [25] | Fu TT, Bai XG, Tang F, et al. Investigation on vector tick and tick-borne pathogens in sheep in some regions of Shaanxi and Liaoning Province[J]. Chin J Vet Med, 2023, 59(6): 1-8. (in Chinese) |
| (付婷婷, 白新鸽, 汤芳, 等. 陕西和辽宁部分地区羊源媒介蜱类及其携带病原体调查[J]. 中国兽医杂志, 2023, 59(6): 1-8.) | |
| [26] | Zhang JW, Liu QB, Wang DM, et al. Epidemiological survey of ticks and tick-borne pathogens in pet dogs in south-eastern China[J]. Parasite, 2017, 24: 35. |
| [27] | Groves MG, Yap LF. Babesia gibsoni (Patton, 1910) from a dog in Kuala Lumpur[J]. Med J Malaya, 1968, 22(3): 229. |
| [28] | Kjemtrup AM, Kocan AA, Whitworth L, et al. There are at least three genetically distinct small piroplasms from dogs[J]. Int J Parasitol, 2000, 30: 1501-1505. |
| [29] | Muhlnickel CJ, Jefferies R, Morgan-Ryan UM, et al. Babesia gibsoni infection in three dogs in Victoria[J]. Aust Vet J, 2002, 80(10): 606-610. |
| [30] | Xu D, Zhang JL, Shi ZS, et al. Molecular detection of vector-borne agents in dogs from ten provinces of China[J]. Parasit Vectors, 2015, 8: 501. |
| [31] | He L, Miao XY, Hu JF, et al. First molecular detection of Babesia gibsoni in dogs from Wuhan, China[J]. Front Microbiol, 2017, 8: 1577. |
| [32] | Li J, Kelly P, Zhang JL, et al. Development of a pan-Babesia FRET-qPCR and a survey of livestock from five Caribbean Islands[J]. BMC Vet Res, 2015, 11: 246. |
| [33] | Solano-Gallego L, Baneth G. Babesiosis in dogs and cats: expanding parasitological and clinical spectra[J]. Vet Parasitol, 2011, 181(1): 48-60. |
| [34] | Zhou X, Wang H, Xue JB, et al. Epidemic and research progress of babesiosis[J]. Chin J Schisto Control, 2019, 31(1): 63-70. (in Chinese) |
| (周霞, 王慧, 薛靖波, 等. 国内外巴贝虫病流行现状与研究进展[J]. 中国血吸虫病防治杂志, 2019, 31(1): 63-70.) | |
| [35] | Huang SS, Zhang LL, Yao LN, et al. Human babesiosis in Southeast China: a case report[J]. Int J Infect Dis, 2018, 68: 36-38. |
| [36] | Ouyang R, Chen ZY, Lin YY, et al. Diagnosis and identification for human babesiosis in Fujian Province, China[J]. Chin J Zoonoses, 2018, 34(5): 492-494. (in Chinese) |
| (欧阳榕, 陈朱云, 林耀莹, 等. 福建省1例人巴贝虫病的诊断与鉴定[J]. 中国人兽共患病学报, 2018, 34(5): 492-494.) | |
| [37] | Jia N, Zheng YC, Jiang JF, et al. Human babesiosis caused by a Babesia crassa-like pathogen: a case series[J]. Clin Infect Dis, 2018, 67(7): 1110-1119. |
/
| 〈 |
|
〉 |