Literature DB >> 25148945

Multilocus typing of Cryptosporidium spp. and Giardia duodenalis from non-human primates in China.

Md Robiul Karim1, Sumei Zhang1, Fuchun Jian1, Jiacheng Li1, Chunxiang Zhou1, Longxian Zhang2, Mingfei Sun3, Guangyou Yang4, Fengcai Zou5, Haiju Dong1, Jian Li6, Farzana Islam Rume7, Meng Qi1, Rongjun Wang1, Changshen Ning1, Lihua Xiao8.   

Abstract

Non-human primates (NHPs) are commonly infected with Cryptosporidium spp. and Giardia duodenalis. However, molecular characterisation of these pathogens from NHPs remains scarce. In this study, 2,660 specimens from 26 NHP species in China were examined and characterised by PCR amplification of 18S rRNA, 70kDa heat shock protein (hsp70) and 60kDa glycoprotein (gp60) gene loci for Cryptosporidium; and 1,386 of the specimens by ssrRNA, triosephosphate isomerase (tpi) and glutamate dehydrogenase (gdh) gene loci for Giardia. Cryptosporidium was detected in 0.7% (19/2660) specimens of four NHP species including rhesus macaques (0.7%), cynomolgus monkeys (1.0%), slow lorises (10.0%) and Francois' leaf monkeys (6.7%), belonging to Cryptosporidium hominis (14/19) and Cryptosporidium muris (5/19). Two C. hominis gp60 subtypes, IbA12G3 and IiA17 were observed. Based on the tpi locus, G. duodenalis was identified in 2.2% (30/1,386) of specimens including 2.1% in rhesus macaques, 33.3% in Japanese macaques, 16.7% in Assam macaques, 0.7% in white-headed langurs, 1.6% in cynomolgus monkeys and 16.7% in olive baboons. Sequence analysis of the three targets indicated that all of the Giardia-positive specimens belonged to the zoonotic assemblage B. Highest sequence polymorphism was observed at the tpi locus, including 11 subtypes: three known and eight new ones. Phylogenetic analysis of the subtypes showed that most of them were close to the so-called subtype BIV. Intragenotypic variations at the gdh locus revealed six types of sequences (three known and three new), all of which belonged to so-called subtype BIV. Three specimens had co-infection with C. hominis (IbA12G3) and G. duodenalis (BIV). The presence of zoonotic genotypes and subtypes of Cryptosporidium spp. and G. duodenalis in NHPs suggests that these animals can potentially contribute to the transmission of human cryptosporidiosis and giardiasis.
Copyright © 2014 Australian Society for Parasitology Inc. All rights reserved.

Entities:  

Keywords:  China; Cryptosporidium; Giardia; Multilocus typing; Non-human primates

Mesh:

Substances:

Year:  2014        PMID: 25148945     DOI: 10.1016/j.ijpara.2014.07.006

Source DB:  PubMed          Journal:  Int J Parasitol        ISSN: 0020-7519            Impact factor:   3.981


  22 in total

1.  Prevalence and multilocus analysis of Giardia duodenalis in racehorses in China.

Authors:  Meng Qi; Xiangbo Ji; Ying Zhang; Zilin Wei; Bo Jing; Longxian Zhang; Xuhui Lin; Md Robiul Karim; Haiyan Wang; Mingfei Sun
Journal:  Parasitol Res       Date:  2020-01-09       Impact factor: 2.289

2.  High genetic diversity of Giardia duodenalis assemblage E in pre-weaned dairy calves in Shanghai, China, revealed by multilocus genotyping.

Authors:  Xiaolan Wang; Min Cai; Wen Jiang; Yuping Wang; Yue Jin; Na Li; Yaqiong Guo; Yaoyu Feng; Lihua Xiao
Journal:  Parasitol Res       Date:  2017-05-26       Impact factor: 2.289

3.  Environmental Transport of Emerging Human-Pathogenic Cryptosporidium Species and Subtypes through Combined Sewer Overflow and Wastewater.

Authors:  Chengchen Huang; Yue Hu; Lin Wang; Yuanfei Wang; Na Li; Yaqiong Guo; Yaoyu Feng; Lihua Xiao
Journal:  Appl Environ Microbiol       Date:  2017-08-01       Impact factor: 4.792

4.  Prevalence and multilocus genotyping of Giardia duodenalis in zoo animals in three cities in China.

Authors:  Yang Zou; Xiao-Dong Li; Yu-Meng Meng; Xiao-Long Wang; Hao-Ning Wang; Xing-Quan Zhu
Journal:  Parasitol Res       Date:  2022-06-08       Impact factor: 2.383

5.  Zoonotic assemblages of Giardia duodenalis in captive non-human primates from the largest zoo in Slovakia.

Authors:  K Mravcová; G Štrkolcová; R Mucha; M Goldová
Journal:  J Parasit Dis       Date:  2020-11-24

6.  Cryptosporidium spp., Giardia intestinalis, and Enterocytozoon bieneusi in Captive Non-Human Primates in Qinling Mountains.

Authors:  Shuai-Zhi Du; Guang-Hui Zhao; Jun-Feng Shao; Yan-Qin Fang; Ge-Ru Tian; Long-Xian Zhang; Rong-Jun Wang; Hai-Yan Wang; Meng Qi; San-Ke Yu
Journal:  Korean J Parasitol       Date:  2015-08-25       Impact factor: 1.341

7.  Emergence of Cryptosporidium hominis Monkey Genotype II and Novel Subtype Family Ik in the Squirrel Monkey (Saimiri sciureus) in China.

Authors:  Xuehan Liu; Na Xie; Wei Li; Ziyao Zhou; Zhijun Zhong; Liuhong Shen; Suizhong Cao; Xingming Yu; Yanchuan Hu; Weigang Chen; Gangneng Peng
Journal:  PLoS One       Date:  2015-10-28       Impact factor: 3.240

8.  Prevalence of Cryptosporidium spp., Enterocytozoon bieneusi, Encephalitozoon spp. and Giardia intestinalis in Wild, Semi-Wild and Captive Orangutans (Pongo abelii and Pongo pygmaeus) on Sumatra and Borneo, Indonesia.

Authors:  Anna Mynářová; Ivona Foitová; Martin Kváč; Dana Květoňová; Michael Rost; Helen Morrogh-Bernard; Wisnu Nurcahyo; Cathleen Nguyen; Supriyadi Supriyadi; Bohumil Sak
Journal:  PLoS One       Date:  2016-03-31       Impact factor: 3.240

9.  Occurrence and multilocus genotyping of Giardia intestinalis assemblage C and D in farmed raccoon dogs, Nyctereutes procyonoides, in China.

Authors:  Xiao-Xuan Zhang; Wen-Bin Zheng; Jian-Gang Ma; Qiu-Xia Yao; Yang Zou; Cai-Jia Bubu; Quan Zhao; Xing-Quan Zhu
Journal:  Parasit Vectors       Date:  2016-08-30       Impact factor: 3.876

10.  Cryptosporidium proliferans n. sp. (Apicomplexa: Cryptosporidiidae): Molecular and Biological Evidence of Cryptic Species within Gastric Cryptosporidium of Mammals.

Authors:  Martin Kváč; Nikola Havrdová; Lenka Hlásková; Tereza Daňková; Jiří Kanděra; Jana Ježková; Jiří Vítovec; Bohumil Sak; Ynes Ortega; Lihua Xiao; David Modrý; Jeba Rose Jennifer Jesudoss Chelladurai; Veronika Prantlová; John McEvoy
Journal:  PLoS One       Date:  2016-01-15       Impact factor: 3.240

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