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Original Article

Prevalence and Molecular Characterization of Echinococcus granulosus Sensu Stricto in Northern Xinjiang, China
Baoping Guo, Zhuangzhi Zhang, Xueting Zheng, Yongzhong Guo, Gang Guo, Li Zhao, Ren Cai, Bingjie Wang, Mei Yang, Xi Shou, Wenbao Zhang, Bin Jia
Korean J Parasitol 2019;57(2):153-159.
Published online April 30, 2019
DOI: https://doi.org/10.3347/kjp.2019.57.2.153
Echinococcus granulosus is an important zoonotic parasite globally causing cystic echinococcosis (CE) in humans and animals. In this study, prevalence of CE and variation of cox1 gene sequence were analyzed with isolates E. granulosus collected from different areas in northern Xinjiang, China. The survey showed that 3.5% of sheep and 4.1% of cattle were infected with CE. Fragment of cox1 was amplified from all the positive sheep and cattle samples by PCR. In addition, 26 positive samples across the 4 areas were included. The isolates were all E. granulosus sensu stricto (s.s.) containing 15 haplotypes (Hap1-15), and clustered into 2 genotypes, G1 (90.1%, 91/101) and G3 (9.9%, 10/101). Hap1 was the most common haplotype (48.5%, 49/101). Hap9 were found in humans samples, indicating that sheep and cattle reservoir human CE. It is indicate that E. granulosus may impact on control of CE in livestock and humans in the region.

Citations

Citations to this article as recorded by  Crossref logo
  • Whole-genomic comparison reveals complex population dynamics and parasitic adaptation of Echinococcus granulosus sensu stricto
    Yao-Dong Wu, Zirui Ren, Li Li, Wen-Hui Li, Nian-Zhang Zhang, Yan-Tao Wu, Guo-Dong Dai, Wei-Gang Chen, Wen-Jie Mu, Shuai Wang, Jiandong Li, Qin Yu, Xue-Peng Cai, Xin Jin, Bao-Quan Fu, Daxi Wang, Wan-Zhong Jia, Hong-Bin Yan, Julian Parkhill, James Cotton
    mBio.2025;[Epub]     CrossRef
  • First report of Echinococcus granulosus genotype 1 in a wild boar (Sus scrofa) from China
    Baoping Guo, Cairen, Li Zhao, Kalibixiati Aimulajiang, Wenqiang Tang, Chuanchuan Wu, Maiweilidan Yimingjiang, Jianyong Wu, Rongsheng Mi, Hao Wen
    Parasitology Research.2024;[Epub]     CrossRef
  • Phylogeny and population structure of Echinococcus granulosus (sensu stricto) based on full-length cytb-nad2-atp6 mitochondrial genes – First report from Sialkot District of Pakistan
    Mughees Aizaz Alvi, Rana Muhammad Athar Ali, Li Li, Muhammad Saqib, Warda Qamar, Ali Hassan, Muzafar Ghafoor, Siddiq Ur Rahman, Muhammad Umar Zafar Khan, Bao-Quan Fu, Youyu Liu, Hong Yin, Hong-Bin Yan, Wan-Zhong Jia
    Molecular and Biochemical Parasitology.2023; 253: 111542.     CrossRef
  • Survey and Molecular Characterization of Echinococcus granulosus sensu stricto from Livestock and Humans in the Altai Region of Xinjiang, China
    Baoping Guo, Li Zhao, Lu Zhao, Rongsheng Mi, Xu Zhang, Bingjie Wang, Gang Guo, Yuan Ren, Wenjing Qi, Zhuangzhi Zhang
    Pathogens.2023; 12(1): 134.     CrossRef
  • Update on the genetic diversity and population structure of Echinococcus granulosus in Gansu Province, Tibet Autonomous Region, and Xinjiang Uygur Autonomous Region, Western China, inferred from mitochondrial cox1, nad1, and nad5 sequences
    Nigus Abebe Shumuye, Li Li, John Asekhaen Ohiolei, Sayed Ajmal Qurishi, Wen-Hui Li, Nian-Zhang Zhang, Yan-Tao Wu, Yao-Dong Wu, Sheng-Zhi Gao, Fu-Heng Zhang, Xue-Qi Tian, Wen-Jun Tian, Yong Fu, Xie-Zhong Wang, Yong-Hong Pan, Fang Zhan, Lin-Sheng Zhang, Min
    Parasitology Research.2023; 122(5): 1107.     CrossRef
  • Echinococcus granulosus sensu lato Genotypes in Different Hosts Worldwide: A Systematic Review
    Carlos Manterola, Armando Totomoch-Serra, Claudio Rojas, Ángela L. Riffo-Campos, Nayely García-Méndez
    Acta Parasitologica.2022; 67(1): 161.     CrossRef
  • Genetic diversity of Echinococcus granulosus sensu lato in China: Epidemiological studies and systematic review
    Rui‐Qi Hua, Xiao‐Di Du, Xue He, Xiao‐Bin Gu, Yue Xie, Ran He, Jing Xu, Xue‐Rong Peng, Guang‐You Yang
    Transboundary and Emerging Diseases.2022;[Epub]     CrossRef
  • Genetic structure and phylogeography of Echinococcus granulosus sensu stricto genotypes G1 and G3 in Pakistan and other regions of the world based on nad5 gene
    Naunain Mehmood, Hira Muqaddas, Muhammad Irfan Ullah, Urmas Saarma, Antonio Varcasia
    Infection, Genetics and Evolution.2022; 98: 105223.     CrossRef
  • Meta-analysis on the prevalence of bovine hydatid disease in China from 2000 to 2021
    Shijie Fan, Hailong Dong, Hongcai Ma, Bingyi Wang, Mujahid Iqbal, Minghao Zou, Ming Qi, Zhipeng Cao
    Microbial Pathogenesis.2022; 168: 105586.     CrossRef
  • A CT-based radiomics nomogram for the differentiation of pulmonary cystic echinococcosis from pulmonary abscess
    Yan Li, Yaohui Yu, Qian Liu, Haicheng Qi, Shan Li, Juan Xin, Yan Xing
    Parasitology Research.2022; 121(12): 3393.     CrossRef
  • Genetic diversity and haplotype analysis of yak and sheep echinococcal cysts isolates from the mitochondrial cox1 gene in parts of Tibet, China
    Shijie Fan, Xialing Zhao, Danqulamu, Bin Shi, Wenqiang Tang, Hailong Dong, Chenyang Xia
    Frontiers in Veterinary Science.2022;[Epub]     CrossRef
  • Genotyping and phylogenetic analysis of hydatid cysts isolated from livestock in Bushehr province, Iran
    Zahra Babaei, Reza Taherkhani, Afshin Barazesh, Marzieh Taherzadeh, Soleiman Khorami, Moradali Fouladvand
    Journal of Parasitic Diseases.2021; 45(1): 197.     CrossRef
  • Meta-Analysis of the Prevalence of Echinococcus in Sheep in China From 1983 to 2020
    Yang Gao, Wei Wang, Chuang Lyu, Xin-Yu Wei, Yu Chen, Quan Zhao, Zhi-Guang Ran, You-Qing Xia
    Frontiers in Cellular and Infection Microbiology.2021;[Epub]     CrossRef
  • Transcriptomic Features of Echinococcus granulosus Protoscolex during the Encystation Process
    Junjie Fan, Hongye Wu, Kai Li, Xunuo Liu, Qingqing Tan, Wenqiao Cao, Bo Liang, Bin Ye
    The Korean Journal of Parasitology.2020; 58(3): 287.     CrossRef
  • Tacrolimus, a rapamycin target protein inhibitor, exerts anti-cystic echinococcosis effects both in vitro and in vivo
    Muzhabaier Muhedier, Jintian Li, Hui Liu, Guizhi Ma, Kuerbannisha Amahong, Renyong Lin, Guodong Lü
    Acta Tropica.2020; 212: 105708.     CrossRef
  • 8,190 View
  • 125 Download
  • 21 Web of Science
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Brief Communications
Prevalence of Cystic Echinococcosis in Slaughtered Sheep as an Indicator to Assess Control Progress in Emin County, Xinjiang, China
Shijie Yang, Weiping Wu, Tian Tian, Jiangshan Zhao, Kang Chen, Qinyan Wang, Zheng Feng
Korean J Parasitol 2015;53(3):355-359.
Published online June 30, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.3.355
Hydatid disease imposing serious threat on human health and great loss in live?stock pastoralism remains a major public health problem in western China. To assess and monitor the effect of control program on transmission dynamics, we used the prevalence of cystic echinococcosis in slaughtered sheep at slaughterhouse as an indicator during the period of 2007 to 2013 in Emin County, Xinjiang Uygur Autonomous Region, China. The results showed a significant decline trend of prevalence in all age groups during the 7 years when the control program was implemented; particularly, the rate was reduced by 72% after first 3 years. Among the sheep slaughtered, the age distribution evidenced that the prevalence increased significantly as the sheep grew older. The baseline data indicated that the rate was 4.5% at the age <1, 6.7% at age 2~, and reached to the highest 17.9% at age ≥4 years. Earlier response to the intervention pressure was seen in the sheep at the younger age. Significant decline started from 2008 at the age <1, from 2009 at age of 1~, 2010 at 2~ to 3~, and the latest, in 2012 at age ≥4. This study demonstrated that the prevalence of cystic echinococcosis in slaughtered sheep may be used as an indicator to assess and monitor the transmission status during and after control program providing information for betterment of performance to sustain control strength.

Citations

Citations to this article as recorded by  Crossref logo
  • Epidemiological and genotypic assessment of cystic echinococcosis in ruminant populations of Northern Punjab, Pakistan: a neglected zoonotic disease
    Sakandar Khan, Jo Cable, Numair Masud, Frank Hailer, Muhammad Younus, Naveed Hussain, Muhammad Asif Idrees, Muhammad Imran Rashid, Haroon Akbar
    Parasitology Research.2025;[Epub]     CrossRef
  • Zoonotic threat of cystic echinococcosis in Tunisia: insights into livestock prevalence and identification of the G1 genotype
    Mohamed Hedi Abdelghani, Selim M’rad, Raja Chaâbane-Banaoues, Sayadi Taoufik, Mohamed Ali Charfedine, Lamia Zemzemi, Ines Kamoun, Hamouda Babba, Myriam Oudni-M’rad
    Frontiers in Veterinary Science.2025;[Epub]     CrossRef
  • Advances and prospective in diagnosis of hydatidosis in farm animals
    Faten A. M. Abo-Aziza
    Journal of Parasitic Diseases.2025; 49(4): 917.     CrossRef
  • Benefits of public awareness in mitigating cystic echinococcosis risk in Western China: A climate and socio-economic perspective
    Fang Yin, Wenrui Meng, Peiwei Fan, Yue Shi, Shuai Chen, Yongchun Liang, Jianyi Yao, Yeping Wang, Chuizhao Xue, Shuai Han, Mengmeng Hao, Qian Wang, Ze Meng, Jun Zhuo, Kai Sun, Yongqing Bai, Tingting Kang, Zhenyu Wang, Lei Liu, Dong Jiang, Liqun Fang, Canju
    PLOS Neglected Tropical Diseases.2025; 19(7): e0013182.     CrossRef
  • The role of cattle in the transmission of cystic echinococcosis in a highly endemic area of the Peruvian Andes
    J. Raúl Lucas, Miguel Cabrera, Néstor Falcón, Orlando Lucas, Alejandro Rodríguez, Daphne Ramos, Cesar Gavidia
    Veterinary Parasitology: Regional Studies and Reports.2024; 51: 101021.     CrossRef
  • Update on the genetic diversity and population structure of Echinococcus granulosus in Gansu Province, Tibet Autonomous Region, and Xinjiang Uygur Autonomous Region, Western China, inferred from mitochondrial cox1, nad1, and nad5 sequences
    Nigus Abebe Shumuye, Li Li, John Asekhaen Ohiolei, Sayed Ajmal Qurishi, Wen-Hui Li, Nian-Zhang Zhang, Yan-Tao Wu, Yao-Dong Wu, Sheng-Zhi Gao, Fu-Heng Zhang, Xue-Qi Tian, Wen-Jun Tian, Yong Fu, Xie-Zhong Wang, Yong-Hong Pan, Fang Zhan, Lin-Sheng Zhang, Min
    Parasitology Research.2023; 122(5): 1107.     CrossRef
  • Survey and Molecular Characterization of Echinococcus granulosus sensu stricto from Livestock and Humans in the Altai Region of Xinjiang, China
    Baoping Guo, Li Zhao, Lu Zhao, Rongsheng Mi, Xu Zhang, Bingjie Wang, Gang Guo, Yuan Ren, Wenjing Qi, Zhuangzhi Zhang
    Pathogens.2023; 12(1): 134.     CrossRef
  • EgSeverin and Eg14-3-3zeta from Echinococcus granulosus are potential antigens for serological diagnosis of echinococcosis in dogs and sheep
    Xiaoli Zhang, Chenxi Wei, Yajie Lv, Rongsheng Mi, Baoping Guo, Sajid Ur Rahman, Yehua Zhang, Long Cheng, Haiyan Jia, Yan Huang, Xiangan Han, Haiyan Gong, Zhaoguo Chen
    Microbial Pathogenesis.2023; 179: 106110.     CrossRef
  • Modeling and analysis of the transmission dynamics of cystic echinococcosis: Effects of increasing the number of sheep
    Yiwei He, Qianqian Cui, Zengyun Hu
    Mathematical Biosciences and Engineering.2023; 20(8): 14596.     CrossRef
  • Cystic Echinococcosis: An Impact Assessment of Prevention Programs in Endemic Developing Countries in Africa, Central Asia, and South America
    Elias Christofi, Hafiz Ishfaq Ahmad
    Journal of Zoological Systematics and Evolutionary Research.2022; 2022: 1.     CrossRef
  • An integrated approach to control Cystic Echinococcosis in southern Italy
    G. Cringoli, P. Pepe, A. Bosco, M.P. Maurelli, L. Baldi, P. Ciaramella, V. Musella, M.L. Buonanno, F. Capuano, F. Corrado, D. Ianniello, L.C. Alves, P. Sarnelli, L Rinaldi
    Veterinary Parasitology.2021; 290: 109347.     CrossRef
  • Advances in research on echinococcoses epidemiology in China
    Mei-Hua Fu, Xu Wang, Shuai Han, Ya-Yi Guan, Robert Bergquist, Wei-Ping Wu
    Acta Tropica.2021; 219: 105921.     CrossRef
  • Meta-Analysis of the Prevalence of Echinococcus in Sheep in China From 1983 to 2020
    Yang Gao, Wei Wang, Chuang Lyu, Xin-Yu Wei, Yu Chen, Quan Zhao, Zhi-Guang Ran, You-Qing Xia
    Frontiers in Cellular and Infection Microbiology.2021;[Epub]     CrossRef
  • Analysis of Factors Influencing Cystic Echinococcosis in Northwest Non-Qinghai Tibetan Plateau Regions of China
    Xiangman Zeng, Yayi Guan, Weiping Wu, Liying Wang, Huixia Cai, Qi Fang, Shicheng Yu, Canjun Zheng
    The American Journal of Tropical Medicine and Hygiene.2020; 102(3): 567.     CrossRef
  • Prevalence and Molecular Characterization of Echinococcus granulosus Sensu Stricto in Northern Xinjiang, China
    Baoping Guo, Zhuangzhi Zhang, Xueting Zheng, Yongzhong Guo, Gang Guo, Li Zhao, Ren Cai, Bingjie Wang, Mei Yang, Xi Shou, Wenbao Zhang, Bin Jia
    The Korean Journal of Parasitology.2019; 57(2): 153.     CrossRef
  • Control of cystic echinococcosis: Background and prospects
    Edmundo Larrieu, Cesar M. Gavidia, Marshall W. Lightowlers
    Zoonoses and Public Health.2019; 66(8): 889.     CrossRef
  • Economic Effect of Confiscation of Cattle Viscera Infected with Cystic Echinococcosis, Huancayo Province, Peru
    J. Raúl Lucas, Carmen A. Arias, Stephanie S. Balcázar-Nakamatsu, Alejandro P. Rodríguez, Karen A. Alroy, Cesar M. Gavidia
    Emerging Infectious Diseases.2019; 25(12): 2278.     CrossRef
  • CYSTIC HYDATIDOSIS IN KIDNEY OF SHEEP: PREVALENCE AND HISTOPATHOLOGICAL STUDY
    Muslimah, N. ALsulami, Nafisa Mohammd Batarfi
    Journal of Experimental Biology and Agricultural Sciences.2019; 7(5): 505.     CrossRef
  • Development of a colloidal gold immunochromatographic strip based on HSP70 for the rapid detection of Echinococcus granulosus in sheep
    Xunhui Zhuo, Yingchao Yu, Xueqiu Chen, Zhuangzhi Zhang, Yi Yang, Aifang Du
    Veterinary Parasitology.2017; 240: 34.     CrossRef
  • Novel Interventional Management of Hepatic Hydatid Cyst with Nanosecond Pulses on Experimental Mouse Model
    Xinhua Chen, Ruiqing Zhang, Tuerganaili Aji, Yingmei Shao, Yonggang Chen, Hao Wen
    Scientific Reports.2017;[Epub]     CrossRef
  • Improved experimental model of hepatic cystic hydatid disease resembling natural infection route with stable growing dynamics and immune reaction
    Rui-Qing Zhang, Xin-Hua Chen, Hao Wen
    World Journal of Gastroenterology.2017; 23(45): 7989.     CrossRef
  • Application of multiplex PCR for the simultaneous detection of Taenia spp. from domestic dogs in the north of Iran
    M.T. Rahimi, S. Sarvi, A. Daryani, M. Sharif, E. Ahmadpour, A. Shokri, A. Mizani
    Helminthologia.2016; 53(3): 285.     CrossRef
  • 9,489 View
  • 97 Download
  • 24 Web of Science
  • Crossref
Prevalence of Hydatid Cysts in Livestock Animals in Xinjiang, China
Meng Qingling, Wang Guanglei, Qiao Jun, Zhu Xinquan, Liu Tianli, Song Xuemei, Zhang Jinsheng, Wang Huisheng, Cai Kuojun, Chen Chuangfu
Korean J Parasitol 2014;52(3):331-334.
Published online June 26, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.3.331

Hydatid worms, hosted by humans and animals, impose serious human health risk and cause significant livestock production loss. To better understand the disease infection status in Xinjiang, China, we investigated the disease epidemics in 4 livestock animals, i.e., cattle, sheep (both sheep and goat), camels, and horses, slaughtered at the abattoirs in Urumqi, Yining, Tacheng, and Altay areas. The results showed that the animals were infected at different rates, in the order of sheep (9.8%), cattle (8.4%), camels (6.8%), and horses (4.3%). The infection rates were found to be different between the abattoirs in various regions even for the same animals. For sheep, the rates increased significantly as the animals grew older. It was 1.9% before 1 year of age and increased to 8.2% in the age of 1-2 years, and further increased to 12.3% when the animals were 3-4 years old, and reached 17.2% when they were 5-6 year old. Sheep older than 6 years had an infection rate of 19.5%. This study demonstrates that the 4 livestock animals in the pastoral areas in Xinjiang were infected by the parasites to various extend. This study is the first systematic investigation of the hydatid worms in various livestock animals in Xinjiang, China, which provides epidemiological information about the infection of hydatid worms in livestock, and is valuable in developing strategies for prevention and control of the hydatid disease.

Citations

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    Animals.2025; 15(11): 1617.     CrossRef
  • Prevalence of cystic echinococcosis among livestock in pastoral and agro-pastoral areas in Uganda
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    Pathogens.2023; 12(1): 134.     CrossRef
  • Effect and mechanism of reactive oxygen species-mediated NOD-like receptor family pyrin domain-containing 3 inflammasome activation in hepatic alveolar echinococcosis
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    Microbial Pathogenesis.2022; 168: 105586.     CrossRef
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  • Prevalence and Molecular Characterization of Echinococcus granulosus Sensu Stricto in Northern Xinjiang, China
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    The Korean Journal of Parasitology.2019; 57(1): 61.     CrossRef
  • Prevalence and monetary loss due to cystic Echinococcosis in slaughter house livestock: A case study of Migori County, Kenya
    Odero Joseph Kere, Erume Joseph, Banda Liveness Jessika, Kagira John Maina
    Parasite Epidemiology and Control.2019; 5: e00105.     CrossRef
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    Rui-Qing Zhang, Xin-Hua Chen, Hao Wen
    World Journal of Gastroenterology.2017; 23(45): 7989.     CrossRef
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  • Application of multiplex PCR for the simultaneous detection of Taenia spp. from domestic dogs in the north of Iran
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    Helminthologia.2016; 53(3): 285.     CrossRef
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