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"Wei Hu"

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"Wei Hu"

Brief Communications
Complete Mitochondrial Genome of a Tongue Worm Armillifer agkistrodontis
Jian Li, Fu-Nan He, Hong-Xiang Zheng, Rui-Xiang Zhang, Yi-Jing Ren, Wei Hu
Korean J Parasitol 2016;54(6):813-817.
Published online December 31, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.6.813
Armillifer agkistrodontis (Ichthyostraca: Pantastomida) is a parasitic pathogen, only reported in China, which can cause a zoonotic disease, pentastomiasis. A complete mitochondrial (mt) genome was 16,521 bp comprising 13 protein-coding genes (PCGs), 22 tRNA genes, 2 rRNA genes, and 1 non-coding region (NCR). A phylogenetic tree drawn with the concatenated amino acid sequences of the 6 conserved PCGs (atp6, cox1-3, and nad2) showed that A. agkistrodontis and Armillifer armillatus constituted a clade Pentastomida which was a sister group of the Branchiura. The complete mt genome sequence of A. agkistrodontis provides important genetic markers for both phylogenetic and epidemiological studies of pentastomids.

Citations

Citations to this article as recorded by  Crossref logo
  • New information on adults pentastomids (Crustacea: Pentastomida) found in ophidians from Argentina: Insights from 28S rDNA and COI mtDNA
    Martin Miguel Montes, Exequiel Oscar Furlan, Jorge Adrian Barneche, Clara Vercellini, Tomas Acuña Gonzalez, Marina Ibañez Shimabukuro, Vanesa Arzamendia
    Systematic Parasitology.2025;[Epub]     CrossRef
  • First complete mitochondrial genome of Armillifer moniliformis (Pentastomida: Porocephalida) isolated from a human case in Northern Thailand: comparative and phylogenetic analyses
    Thanapat Pataradool, Padet Siriyasatien, Woraporn Sukhumavasi, Saruda Tiwananthagorn, Chusana Suankratay, Kanok Preativatanyou
    Parasitology Research.2025;[Epub]     CrossRef
  • Linguatula serrata in an imported dog in Germany: Single-case or emerging disease?
    Maxi Berberich, Thomas Grochow, Nadine Roßner, Ronald Schmäschke, Zaida Rentería-Solís
    Veterinary Parasitology: Regional Studies and Reports.2022; 30: 100717.     CrossRef
  • The complete mitochondrial genome of the pentastomid Linguatula arctica (Pentastomida) from reindeer (Rangifer tarandus) in Northern Norway
    José Horacio Grau, Jason A. Dunlop, Martin Meixner, Dennis Tappe, Bjørn Gjerde
    Mitochondrial DNA Part B.2020; 5(3): 3438.     CrossRef
  • Detection of a Larva of Armillifer armillatus in a Potto (Perodicticus potto) from the Republic of the Congo
    Thomas Lemarcis, Cédric Benjamin Chesnais, Sébastien David Serge Pion, Michel Boussinesq, Sabrina Locatelli
    Journal of Parasitology.2020;[Epub]     CrossRef
  • The complete mitochondrial genome of Linguatula serrata (tongue worm) isolated from a dog and phylogenetic analysis
    Tanian Naude, Sameer Pant, Mousa Tavassoli, Subir Sarker, Seyed Ali Ghorashi
    Mitochondrial DNA Part B.2018; 3(1): 357.     CrossRef
  • The complete mitochondrial genome of the pentastomid Armillifer grandis (Pentastomida) from the Democratic Republic of Congo
    José Horacio Grau, Jason A. Dunlop, Martin Meixner, Dennis Tappe
    Mitochondrial DNA Part B.2017; 2(1): 287.     CrossRef
  • Current Understanding of Ecdysozoa and its Internal Phylogenetic Relationships
    Gonzalo Giribet, Gregory D. Edgecombe
    Integrative and Comparative Biology.2017; 57(3): 455.     CrossRef
  • 9,946 View
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  • 9 Web of Science
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High Genetic Variability of Schistosoma haematobium in Mali and Nigeria
Charles Ezeh, Mingbo Yin, Hongyan Li, Ting Zhang, Bin Xu, Moussa Sacko, Zheng Feng, Wei Hu
Korean J Parasitol 2015;53(1):129-134.
Published online February 27, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.1.129

Schistosoma haematobium is one of the most prevalent parasitic flatworms, infecting over 112 million people in Africa. However, little is known about the genetic diversity of natural S. haematobium populations from the human host because of the inaccessible location of adult worms in the host. We used 4 microsatellite loci to genotype individually pooled S. haematobium eggs directly from each patient sampled at 4 endemic locations in Africa. We found that the average allele number of individuals from Mali was significantly higher than that from Nigeria. In addition, no significant difference in allelic composition was detected among the populations within Nigeria; however, the allelic composition was significantly different between Mali and Nigeria populations. This study demonstrated a high level of genetic variability of S. haematobium in the populations from Mali and Nigeria, the 2 major African endemic countries, suggesting that geographical population differentiation may occur in the regions.

Citations

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  • Evidence of high genetic diversity among parasite populations in a schistosomiasis hotspot
    Yvonne Aryeetey Ashong, Emmanuel Odartei Armah, Jewelna Akorli, Frank Twum Aboagye, Isaac Owusu-Frimpong, Linda Batsa Debrah, Rhoda Lims Diyie, Samuel Armoo, Alexander Yaw Debrah, Mike Yaw Osei-Atweneboana, Clinton J. Jones, Marcello Otake Sato
    Microbiology Spectrum.2025;[Epub]     CrossRef
  • Geographical Influence on Morphometric Variability of Genetically “Pure” Schistosoma haematobium Eggs from Sub-Saharan Migrants in Spain
    Marta Reguera-Gómez, Maria Adela Valero, Patricio Artigas, Alejandra De Elías-Escribano, Maria Cecilia Fantozzi, Maria Pilar Luzón-García, Joaquín Salas-Coronas, Jérôme Boissier, Santiago Mas-Coma, Maria Dolores Bargues
    Tropical Medicine and Infectious Disease.2023; 8(3): 144.     CrossRef
  • Genetic Diversity of Schistosoma haematobium in Sub-Saharan Africa: A Systematic Review
    Rabecca Tembo, Panji Nkhoma, Mildred Zulu, Florence Mwaba, John Yabe, Hikabasa Halwiindi, Moses Kamwela, King S Nalubamba, Chummy S Sikasunge, Andrew M Phri
    University of Zambia Journal of Agricultural and Biomedical Sciences.2022;[Epub]     CrossRef
  • Membrane Technology for Rapid Point-of-Care Diagnostics for Parasitic Neglected Tropical Diseases
    Madeleine J. Rogers, Donald P. McManus, Stephen Muhi, Catherine A. Gordon
    Clinical Microbiology Reviews.2021;[Epub]     CrossRef
  • Detection of Schistosoma DNA in genital specimens and urine: A comparison between five female African study populations originating from S. haematobium and/or S. mansoni endemic areas
    P. Pillay, J.A. Downs, J.M. Changalucha, E.A.T. Brienen, C.E. Ramarokoto, P.D.C. Leutscher, B.J. Vennervald, M. Taylor, E.F. Kjetland, L. Van Lieshout
    Acta Tropica.2020; 204: 105363.     CrossRef
  • RETRACTED: Diversity and Compatibility of Human Schistosomes and Their Intermediate Snail Hosts
    Benjamin Sanogo, Dongjuan Yuan, Xin Zeng, Yanhua Zhang, Zhongdao Wu
    Trends in Parasitology.2018; 34(6): 493.     CrossRef
  • Geographic strain differentiation of Schistosoma japonicum in the Philippines using microsatellite markers
    Kharleezelle J. Moendeg, Jose Ma M. Angeles, Ryo Nakao, Lydia R. Leonardo, Ian Kendrich C. Fontanilla, Yasuyuki Goto, Masashi Kirinoki, Elena A. Villacorte, Pilarita T. Rivera, Noboru Inoue, Yuichi Chigusa, Shin-ichiro Kawazu, Aaron R. Jex
    PLOS Neglected Tropical Diseases.2017; 11(7): e0005749.     CrossRef
  • Genetic Diversity of <i>Schistosoma haematobium</i> Eggs Isolated from Human Urine in Sudan
    Juan-Hua Quan, In-Wook Choi, Hassan Ahmed Hassan Ahmed Ismail, Abdoelohab Saed Mohamed, Hoo-Gn Jeong, Jin-Su Lee, Sung-Tae Hong, Tai-Soon Yong, Guang-Ho Cha, Young-Ha Lee
    The Korean Journal of Parasitology.2015; 53(3): 271.     CrossRef
  • 11,726 View
  • 125 Download
  • 9 Web of Science
  • Crossref
Occurrence and Molecular Identification of Giardia duodenalis from Stray Cats in Guangzhou, Southern China
Guochao Zheng, Wei Hu, Yuanjia Liu, Qin Luo, Liping Tan, Guoqing Li
Korean J Parasitol 2015;53(1):119-124.
Published online February 27, 2015
DOI: https://doi.org/10.3347/kjp.2015.53.1.119

The
objective
of this study was to genetically characterize isolates of Giardia duodenalis and to determine if zoonotic potential of G. duodenalis could be found in stray cats from urban and suburban environments in Guangzhou, China. Among 102 fresh fecal samples of stray cats, 30 samples were collected in Baiyun district (urban) and 72 in Conghua district (suburban). G. duodenalis specimens were examined using light microscopy, then the positive specimens were subjected to PCR amplification and subsequent sequencing at 4 loci such as glutamate dehydrogenase (gdh), triose phosphate isomerase (tpi), β-giardin (bg), and small subunit ribosomal RNA (18S rRNA) genes. The phylogenetic trees were constructed using obtained sequences by MEGA5.2 software. Results show that 9.8% (10/102) feline fecal samples were found to be positive by microscopy, 10% (3/30) in Baiyun district and 9.7% (7/72) in Conghua district. Among the 10 positive samples, 9 were single infection (8 isolates, assemblage A; 1 isolate, assemblage F) and 1 sample was mixed infection with assemblages A and C. Based on tpi, gdh, and bg genes, all sequences of assemblage A showed complete homology with AI except for 1 isolate (CHC83). These findings not only confirmed the occurrence of G. duodenalis in stray cats, but also showed that zoonotic assemblage A was found for the first time in stray cats living in urban and suburban environments in China.

Citations

Citations to this article as recorded by  Crossref logo
  • Global prevalence of Giardia infection in nonhuman mammalian hosts: A systematic review and meta-analysis of five million animals
    Kareem Hatam-Nahavandi, Ehsan Ahmadpour, Milad Badri, Aida Vafae Eslahi, Davood Anvari, David Carmena, Lihua Xiao, Aysegul Taylan Ozkan
    PLOS Neglected Tropical Diseases.2025; 19(4): e0013021.     CrossRef
  • Molecular characterization of Cryptosporidium spp. and Giardia duodenalis in pet cats in Henan Province, central China
    Liangliang Li, Yuzhen Sui, Xinmiao Li, Pengtao Song, Guizhen Chen, Hu Liu, Shoujun Zuo, Jinjie Guo, Qiong Wang, Qiyuan Sun, Hongyu Dai, Junqiang Li, Tao Zhang, Fang Liu, Longxian Zhang, Haiju Dong
    Acta Tropica.2024; 254: 107188.     CrossRef
  • Cryptosporidium and Giardia in cats and dogs: What is the real zoonotic risk?
    Amanda D. Barbosa, Siobhon Egan, Yaoyu Feng, Lihua Xiao, Una Ryan
    Current Research in Parasitology & Vector-Borne Diseases.2023; 4: 100158.     CrossRef
  • Genetic characterization of Cryptosporidium spp. and Giardia duodenalis in dogs and cats in Guangdong, China
    Jiayu Li, Xiaoyu Dan, Kexin Zhu, Na Li, Yaqiong Guo, Zezhong Zheng, Yaoyu Feng, Lihua Xiao
    Parasites & Vectors.2019;[Epub]     CrossRef
  • Giardia in a selected population of dogs and cats in Germany – diagnostics, coinfections and assemblages
    M.F. Sommer, P. Rupp, M. Pietsch, A. Kaspar, P. Beelitz
    Veterinary Parasitology.2018; 249: 49.     CrossRef
  • Prevalence and risk factors of Giardia duodenalis in domestic rabbbits (Oryctolagus cuniculus) in Jilin and Liaoning province, northeastern China
    Jing Jiang, Jian-Gang Ma, Nian-Zhang Zhang, Peng Xu, Guangyu Hou, Quan Zhao, Xiao-Xuan Zhang
    Journal of Infection and Public Health.2018; 11(5): 723.     CrossRef
  • Development of T m -shift genotyping method for detection of cat-derived Giardia lamblia
    Weida Pan, Yeqi Fu, Auwalu Yusuf Abdullahi, Mingwei Wang, Xianli Shi, Fang Yang, Xingang Yu, Xinxin Yan, Pan Zhang, Jianxiong Hang, Guoqing Li
    Parasitology Research.2017; 116(4): 1151.     CrossRef
  • Giardia duodenalis Infections in Humans and Other Animals in China
    Junqiang Li, Haiyan Wang, Rongjun Wang, Longxian Zhang
    Frontiers in Microbiology.2017;[Epub]     CrossRef
  • Genotypes of Cryptosporidium spp., Enterocytozoon bieneusi and Giardia duodenalis in dogs and cats in Shanghai, China
    Hailing Xu, Yue Jin, Wenxian Wu, Pei Li, Lin Wang, Na Li, Yaoyu Feng, Lihua Xiao
    Parasites & Vectors.2016;[Epub]     CrossRef
  • A Multiplex PCR for Simultaneous Detection of Three Zoonotic ParasitesAncylostoma ceylanicum,A. caninum,andGiardia lambliaAssemblage A
    Wei Hu, Sheng Wu, Xingang Yu, Auwalu Yusuf Abullahi, Meiran Song, Liping Tan, Zhen Wang, Biao Jiang, Guoqing Li
    BioMed Research International.2015; 2015: 1.     CrossRef
  • 11,528 View
  • 117 Download
  • 12 Web of Science
  • Crossref
Genotyping of Giardia duodenalis Isolates from Dogs in Guangdong, China Based on Multi-Locus Sequence
Guochao Zheng, Muhamd Alsarakibi, Yuanjia Liu, Wei Hu, Qin Luo, Liping Tan, Guoqing Li
Korean J Parasitol 2014;52(3):299-304.
Published online June 26, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.3.299

This study aimed to identify the assemblages (or subassemblages) of Giardia duodenalis by using normal or nested PCR based on 4 genetic loci: glutamate dehydrogenase (gdh), triose phosphate isomerase (tpi), β-giardin (bg), and small subunit ribosomal DNA (18S rRNA) genes. For this work, a total of 216 dogs' fecal samples were collected in Guangdong, China. The phylogenetic trees were constructed with MEGA5.2 by using the neighbor-joining method. Results showed that 9.7% (21/216) samples were found to be positive; moreover, 10 samples were single infection (7 isolates assemblage A, 2 isolates assemblage C, and 1 isolate assemblage D) and 11 samples were mixed infections where assemblage A was predominant, which was potentially zoonotic. These findings showed that most of the dogs in Guangdong were infected or mixed-infected with assemblage A, and multi-locus sequence typing could be the best selection for the genotype analysis of dog-derived Giardia isolates.

Citations

Citations to this article as recorded by  Crossref logo
  • Global prevalence of Giardia infection in nonhuman mammalian hosts: A systematic review and meta-analysis of five million animals
    Kareem Hatam-Nahavandi, Ehsan Ahmadpour, Milad Badri, Aida Vafae Eslahi, Davood Anvari, David Carmena, Lihua Xiao, Aysegul Taylan Ozkan
    PLOS Neglected Tropical Diseases.2025; 19(4): e0013021.     CrossRef
  • Prevalence and molecular characterization of Cryptosporidium spp. and Giardia duodenalis in humans and dogs from Fujian Province, Southeast China
    Si-Ang Li, Yu-Ling Lin, Yun-Peng Bai, Fuli Wen, Li-Yuan Huang, Wen-Yuan Miao, Dong-Hui Zhou
    Food and Waterborne Parasitology.2025; 40: e00278.     CrossRef
  • Molecular Detection of Giardia Duodenalis Sub-Assemblages among Human Diarrheal Patients in Northwestern Iran
    Firoozeh Naseri, Shahram Khademvatan, Khosrow Hazrati Tappeh, Sama Mahmoodzadeh, Elena A. Silivanova, Shamal Abdullah Al-Muffti, Saber Gholizadeh
    Health Science Monitor.2025; 4(3): 212.     CrossRef
  • Cryptosporidium and Giardia in cats and dogs: What is the real zoonotic risk?
    Amanda D. Barbosa, Siobhon Egan, Yaoyu Feng, Lihua Xiao, Una Ryan
    Current Research in Parasitology & Vector-Borne Diseases.2023; 4: 100158.     CrossRef
  • Dogs as a source for the spreading of enteric parasites including zoonotic ones in Giza Province, Egypt
    Marwa M. Khalifa, Ehab A. Fouad, Nancy O. Kamel, Hend M. Auda, Mohamed M. El-Bahy, Reem M. Ramadan
    Research in Veterinary Science.2023; 161: 122.     CrossRef
  • Epizootiology and biological characteristics of echinococcosis in agricultural animals, dogs, wild carnivores, and rodents in the Western region of the Republic of Kazakhstan
    Abirova Ilana, Baitlesov Erbulat Upievich, Kereyev Abzal Kenesovich, Mamanova Saltanat Bekbosynovna, Zakirova Faruza Bakitzhanovna, Murzabaev Kenzhebek Esmagambetovich, Sengaliyev Yerbol Maratovich, Satybaev Berik Garipullievich, Abdrakhmanov Rinat Gabdul
    Veterinary World.2023; : 2277.     CrossRef
  • Global prevalence of Giardia duodenalis in cattle: A systematic review and meta-analysis
    Ali Taghipour, Mitra Sharbatkhori, Farideh Tohidi, Mohammad R. Ghanbari, Panagiotis Karanis, Meysam Olfatifar, Hamidreza Majidiani, Sasan Khazaei, Saeed Bahadory, Ehsan Javanmard
    Preventive Veterinary Medicine.2022; 203: 105632.     CrossRef
  • Molecular characterization of Cryptosporidium spp. and Giardia duodenalis in pet dogs in Xinjiang, China
    Yangwenna Cao, Chen Fang, Jinhua Deng, Fuchang Yu, Dingyun Ma, Liwen Chuai, Tian Wang, Meng Qi, Junqiang Li
    Parasitology Research.2022; 121(5): 1429.     CrossRef
  • Infection rate and genetic diversity of Giardia duodenalis assemblage C in Iranian stray dogs, targeting the glutamate dehydrogenase gene
    Asghar Fazaeli, Mohammad Hasan Kohansal, Adel Spotin, Ali Haniloo, Abbasali Nourian, Alireza Khiabani, Abolghasem Siyadatpanah, Roghayeh Norouzi, Veeranoot Nissapatorn
    Veterinary World.2021; 14(2): 419.     CrossRef
  • Development of HRM real-time PCR for assemblage characterization of Giardia lamblia
    Zahra Bahramdoost, Hamed Mirjalali, Parvin Yavari, Ali Haghighi
    Acta Tropica.2021; 224: 106109.     CrossRef
  • Zoonotic giardiasis: an update
    Weilong Cai, Una Ryan, Lihua Xiao, Yaoyu Feng
    Parasitology Research.2021; 120(12): 4199.     CrossRef
  • Multilocus genotyping of Giardia duodenalis from pigs in Korea
    Haeseung Lee, ByeongYeal Jung, Jun-Sik Lim, Min-Goo Seo, Seung-Hun Lee, Kwang-Ho Choi, Mi-Hye Hwang, Tae-Hwan Kim, Oh-Deog Kwon, Dongmi Kwak
    Parasitology International.2020; 78: 102154.     CrossRef
  • Occurrence and genotypes of Cryptosporidium spp., Giardia duodenalis, and Blastocystis sp. in household, shelter, breeding, and pet market dogs in Guangzhou, southern China
    Shenquan Liao, Xuhui Lin, Yongxiang Sun, Nanshan Qi, Minna Lv, Caiyan Wu, Juan Li, Junjing Hu, Linzeng Yu, Haiming Cai, Wenwan Xiao, Mingfei Sun, Guoqing Li
    Scientific Reports.2020;[Epub]     CrossRef
  • Successful extraction and PCR amplification of Giardia DNA from formalin-fixed stool samples
    Mellesia F. Lee, John F. Lindo, Herbert Auer, Julia Walochnik
    Experimental Parasitology.2019; 198: 26.     CrossRef
  • Comparative cost-effectiveness of immunoassays and FLOTAC for diagnosing Giardia spp. infection in dogs
    Paola Pepe, Davide Ianniello, Leucio Camara Alves, Maria Elena Morgoglione, Maria Paola Maurelli, Antonio Bosco, Giuseppe Cringoli, Laura Rinaldi
    Parasites & Vectors.2019;[Epub]     CrossRef
  • Multilocus genotyping and risk factor analysis of Giardia duodenalis in dogs in Korea
    Ha-Young Kim, Haeseung Lee, Seung-Hun Lee, Min-Goo Seo, Seonju Yi, Jong Wan Kim, Chung Hyun Kim, Yu-Ran Lee, ByungJae So, Oh-Deog Kwon, Dongmi Kwak
    Acta Tropica.2019; 199: 105113.     CrossRef
  • Genetic characterization of Cryptosporidium spp. and Giardia duodenalis in dogs and cats in Guangdong, China
    Jiayu Li, Xiaoyu Dan, Kexin Zhu, Na Li, Yaqiong Guo, Zezhong Zheng, Yaoyu Feng, Lihua Xiao
    Parasites & Vectors.2019;[Epub]     CrossRef
  • Prevalence and genotypes of Giardia lamblia from stray dogs and cats in Guangdong, China
    Weida Pan, Mingwei Wang, Auwalu Yusuf Abdullahi, Yeqi Fu, Xinxin Yan, Fang Yang, Xianli Shi, Pan Zhang, Jianxiong Hang, Guoqing Li
    Veterinary Parasitology: Regional Studies and Reports.2018; 13: 30.     CrossRef
  • Molecular epidemiology and multilocus sequence analysis of potentially zoonotic Giardia spp. from humans and dogs in Jamaica
    Mellesia F. Lee, Paul Cadogan, Sarah Eytle, Sonia Copeland, Julia Walochnik, John F. Lindo
    Parasitology Research.2017; 116(1): 409.     CrossRef
  • Multilocus sequence analysis of Giardia spp. isolated from patients with diarrhea in Austria
    Mellesia F. Lee, Herbert Auer, John F. Lindo, Julia Walochnik
    Parasitology Research.2017; 116(2): 477.     CrossRef
  • Giardia duodenalis Infections in Humans and Other Animals in China
    Junqiang Li, Haiyan Wang, Rongjun Wang, Longxian Zhang
    Frontiers in Microbiology.2017;[Epub]     CrossRef
  • Molecular detection of giardiasis among children at Cairo University Pediatrics Hospitals
    Marwa A. Ghieth, Magd A. Kotb, Enas Y. Abu-Sarea, Ayman A. El-Badry
    Journal of Parasitic Diseases.2016; 40(4): 1470.     CrossRef
  • Infection rate and genetic diversity of Giardia duodenalis in pet and stray dogs in Henan Province, China
    Meng Qi, Haiju Dong, Rongjun Wang, Junqiang Li, Jinfeng Zhao, Longxian Zhang, Jianxun Luo
    Parasitology International.2016; 65(2): 159.     CrossRef
  • Multilocus genotyping of Giardia duodenalis and Enterocytozoon bieneusi in dairy and native beef (Qinchuan) calves in Shaanxi province, northwestern China
    X. T. Wang, R. J. Wang, G. J. Ren, Z. Q. Yu, L. X. Zhang, S. Y. Zhang, H. Lu, X. Q. Peng, G. H. Zhao
    Parasitology Research.2016; 115(3): 1355.     CrossRef
  • PCR-RFLP method to detect zoonotic and host-specific Giardia duodenalis assemblages in dog fecal samples
    Liping Tan, Sheng Wu, Auwalu Yusuf Abdullahi, Xinggang Yu, Wei Hu, Meiran Song, Xianli Shi, Guoqing Li
    Parasitology Research.2016; 115(5): 2045.     CrossRef
  • Genotypes of Cryptosporidium spp., Enterocytozoon bieneusi and Giardia duodenalis in dogs and cats in Shanghai, China
    Hailing Xu, Yue Jin, Wenxian Wu, Pei Li, Lin Wang, Na Li, Yaoyu Feng, Lihua Xiao
    Parasites & Vectors.2016;[Epub]     CrossRef
  • Prevalence and genetic characteristics of Cryptosporidium, Enterocytozoon bieneusi and Giardia duodenalis in cats and dogs in Heilongjiang province, China
    Wei Li, Yijing Li, Mingxin Song, Yixin Lu, Jinping Yang, Wei Tao, Yanxue Jiang, Qiang Wan, Siwen Zhang, Lihua Xiao
    Veterinary Parasitology.2015; 208(3-4): 125.     CrossRef
  • Prevalence and molecular characterization of Giardia duodenalis isolates from dairy cattle in northeast China
    Gang Liu, Yan Su, Mengjiao Zhou, Jixue Zhao, Tianyu Zhang, Waqas Ahmad, Huijun Lu, Ning Jiang, Qijun Chen, Mei Xiang, Jigang Yin
    Experimental Parasitology.2015; 154: 20.     CrossRef
  • Prevalence of Zoonotic Giardia duodenalis Assemblage B and First Identification of Assemblage E in Rabbit Fecal Samples Isolates from Central China
    Meng Qi, Jianwei Xi, Junqiang Li, Haiyan Wang, Changshen Ning, Longxian Zhang
    Journal of Eukaryotic Microbiology.2015; 62(6): 810.     CrossRef
  • Development of a rapid HRM genotyping method for detection of dog-derived Giardia lamblia
    Liping Tan, Xingang Yu, Auwalu Yusuf Abdullahi, Sheng Wu, Guochao Zheng, Wei Hu, Meiran Song, Zhen Wang, Biao Jiang, Guoqing Li
    Parasitology Research.2015; 114(11): 4081.     CrossRef
  • A Multiplex PCR for Simultaneous Detection of Three Zoonotic ParasitesAncylostoma ceylanicum,A. caninum,andGiardia lambliaAssemblage A
    Wei Hu, Sheng Wu, Xingang Yu, Auwalu Yusuf Abullahi, Meiran Song, Liping Tan, Zhen Wang, Biao Jiang, Guoqing Li
    BioMed Research International.2015; 2015: 1.     CrossRef
  • 11,308 View
  • 123 Download
  • 32 Web of Science
  • Crossref