Literature DB >> 28969844

Cryptosporidium homai n. sp. (Apicomplexa: Cryptosporidiiae) from the guinea pig (Cavia porcellus).

Alireza Zahedi1, Zoey Durmic2, Alexander W Gofton1, Susan Kueh1, Jill Austen1, Malcolm Lawson3, Lauren Callahan3, John Jardine4, Una Ryan5.   

Abstract

The morphological, biological, and molecular characterisation of a new Cryptosporidium species from the guinea pig (Cavia porcellus) are described, and the species name Cryptosporidium homai n. sp. is proposed. Histological analysis conducted on a post-mortem sample from a guinea pig euthanised due to respiratory distress, identified developmental stages of C. homai n. sp. (trophozoites and meronts) along the intestinal epithelium. Molecular analysis at 18S rRNA (18S), actin and hsp70 loci was then conducted on faeces from an additional 7 guinea pigs positive for C. homai n. sp. At the 18S, actin and hsp70 loci, C. homai n. sp. exhibited genetic distances ranging from 3.1% to 14.3%, 14.4% to 24.5%, and 6.6% to 20.9% from other Cryptosporidium spp., respectively. At the 18S locus, C. homai n. sp. shared 99.1% similarity with a previously described Cryptosporidium genotype in guinea pigs from Brazil and it is likely that they are the same species, however this cannot be confirmed as actin and hsp70 sequences from the Brazilian guinea pig genotype are not available. Phylogenetic analysis of concatenated 18S, actin and hsp70 sequences showed that C. homai n. sp. exhibited 9.1% to 17.3% genetic distance from all other Cryptosporidium spp. This clearly supports the validity of C. homai n. sp. as a separate species.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Actin; Cryptosporidium homai; Guinea pig,18S; hsp70

Mesh:

Year:  2017        PMID: 28969844     DOI: 10.1016/j.vetpar.2017.08.014

Source DB:  PubMed          Journal:  Vet Parasitol        ISSN: 0304-4017            Impact factor:   2.738


  8 in total

1.  Detection and molecular characterization of Cryptosporidium spp. in pet hairless guinea pigs (Cavia Porcellus) from China.

Authors:  Chaochao Lv; Chen Li; Jingsong Wang; Weifeng Qian
Journal:  Parasitol Res       Date:  2022-07-20       Impact factor: 2.383

2.  Proteome-wide prediction and analysis of the Cryptosporidium parvum protein-protein interaction network through integrative methods.

Authors:  Panyu Ren; Xiaodi Yang; Tianpeng Wang; Yunpeng Hou; Ziding Zhang
Journal:  Comput Struct Biotechnol J       Date:  2022-05-13       Impact factor: 6.155

3.  First detection of Cryptosporidium DNA in blood and cerebrospinal fluid of HIV-infected patients.

Authors:  Jorge Néstor Velásquez; María Laura Pantano; Natalia Vittar; Mónica Gabriela Nigro; Olga Figueiras; Osvaldo Germán Astudillo; Javier Ricart; Daniela Della Paolera; Silvana Carnevale
Journal:  Parasitol Res       Date:  2018-02-06       Impact factor: 2.289

Review 4.  Endoparasites of Domesticated Animals That Originated in the Neo-Tropics (New World Tropics).

Authors:  Kegan Romelle Jones; Gary Wayne Garcia
Journal:  Vet Sci       Date:  2019-03-06

5.  Cryptosporidium myocastoris n. sp. (Apicomplexa: Cryptosporidiidae), the Species Adapted to the Nutria (Myocastor coypus).

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Journal:  Microorganisms       Date:  2021-04-12

Review 6.  Public health and ecological significance of rodents in Cryptosporidium infections.

Authors:  Kaihui Zhang; Yin Fu; Junqiang Li; Longxian Zhang
Journal:  One Health       Date:  2021-12-16

7.  Expression Profiles of mRNA and lncRNA in HCT-8 Cells Infected With Cryptosporidium parvum IId Subtype.

Authors:  Ting-Li Liu; Xian-Chen Fan; Yun-Hui Li; Ya-Jie Yuan; Yan-Ling Yin; Xue-Ting Wang; Long-Xian Zhang; Guang-Hui Zhao
Journal:  Front Microbiol       Date:  2018-06-27       Impact factor: 5.640

8.  Burdens of Ascaris spp. and Cryptosporidium spp. parasites in farm pigs in Ghana.

Authors:  John Asiedu Larbi; Seth Offei Addo; George Ofosu-Amoako; Uduakobong Christopher Offong; Efua Maclean Odurah; Samuel Kuranchie Akompong
Journal:  Vet Med Sci       Date:  2022-02-01
  8 in total

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