Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province

Abstract Background Plasmodium ovale has two different subspecies: P. ovale curtisi and P. ovale wallikeri, which may be distinguished by the gene potra encoding P. ovale tryptophan-rich antigen. The sequence and size of potra gene was variable between the two P. ovale spp., and more fragment sizes...

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Published in:Malaria Journal
Main Authors: Ruimin Zhou, Ying Liu, Suhua Li, Yuling Zhao, Fang Huang, Chengyun Yang, Dan Qian, Deling Lu, Yan Deng, Hongwei Zhang, Bianli Xu
Format: Article in Journal/Newspaper
Language:English
Published: BMC 2018
Subjects:
Online Access:https://doi.org/10.1186/s12936-018-2261-1
https://doaj.org/article/2917e7df1f4b4514acddd5d07ad9719c
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author Ruimin Zhou
Ying Liu
Suhua Li
Yuling Zhao
Fang Huang
Chengyun Yang
Dan Qian
Deling Lu
Yan Deng
Hongwei Zhang
Bianli Xu
author_facet Ruimin Zhou
Ying Liu
Suhua Li
Yuling Zhao
Fang Huang
Chengyun Yang
Dan Qian
Deling Lu
Yan Deng
Hongwei Zhang
Bianli Xu
author_sort Ruimin Zhou
collection Directory of Open Access Journals: DOAJ Articles
container_issue 1
container_title Malaria Journal
container_volume 17
description Abstract Background Plasmodium ovale has two different subspecies: P. ovale curtisi and P. ovale wallikeri, which may be distinguished by the gene potra encoding P. ovale tryptophan-rich antigen. The sequence and size of potra gene was variable between the two P. ovale spp., and more fragment sizes were found compared to previous studies. Further information about the diversity of potra genes in these two P. ovale spp. will be needed. Methods A total of 110 dried blood samples were collected from the clinical patients infected with P. ovale, who all returned from Africa in Henan Province in 2011–2016. The fragments of potra were amplified by nested PCR. The sizes and species of potra gene were analysed after sequencing, and the difference between the isolates were analysed with the alignment of the amino acid sequences. The phylogenetic tree was constructed by neighbour-joining to determine the genetic relationship among all the isolates. The distribution of the isolates was analysed based on the origin country. Results Totally 67 samples infected with P. o. wallikeri, which included 8 genotypes of potra, while 43 samples infected with P. o. curtisi including 3 genotypes of potra. Combination with the previous studies, P. o. wallikeri had six sizes, 227, 245, 263, 281, 299 and 335 bp, and P. o. curtisi had four sizes, 299, 317, 335 and 353 bp, the fragment sizes of 299 and 335 bp were the overlaps between the two species. Six amino acid as one unit was firstly used to analyse the amino acid sequence of potra. Amino acid sequence alignment revealed that potra of P. o. wallikeri differed in two amino acid units, MANPIN and AITPIN, while potra of P. o. curtisi differed in amino acid units TINPIN and TITPIS. Combination with the previous studies, there were ten subtypes of potra exiting for P. o. wallikeri and four subtypes for P. o. curtisi. The phylogenetic tree showed that 11 isolates were divided into two clusters, P. o. wallikeri which was then divided into five sub-clusters, and P. o. curtisi which also formed ...
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spelling ftdoajarticles:oai:doaj.org/article:2917e7df1f4b4514acddd5d07ad9719c 2025-01-16T20:51:39+00:00 Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province Ruimin Zhou Ying Liu Suhua Li Yuling Zhao Fang Huang Chengyun Yang Dan Qian Deling Lu Yan Deng Hongwei Zhang Bianli Xu 2018-03-01T00:00:00Z https://doi.org/10.1186/s12936-018-2261-1 https://doaj.org/article/2917e7df1f4b4514acddd5d07ad9719c EN eng BMC http://link.springer.com/article/10.1186/s12936-018-2261-1 https://doaj.org/toc/1475-2875 doi:10.1186/s12936-018-2261-1 1475-2875 https://doaj.org/article/2917e7df1f4b4514acddd5d07ad9719c Malaria Journal, Vol 17, Iss 1, Pp 1-9 (2018) Plasmodium ovale curtisi Plasmodium ovale wallikeri Plasmodium ovale tryptophan-rich antigen (potra) Amino acid unit Subtype Arctic medicine. Tropical medicine RC955-962 Infectious and parasitic diseases RC109-216 article 2018 ftdoajarticles https://doi.org/10.1186/s12936-018-2261-1 2022-12-31T02:53:12Z Abstract Background Plasmodium ovale has two different subspecies: P. ovale curtisi and P. ovale wallikeri, which may be distinguished by the gene potra encoding P. ovale tryptophan-rich antigen. The sequence and size of potra gene was variable between the two P. ovale spp., and more fragment sizes were found compared to previous studies. Further information about the diversity of potra genes in these two P. ovale spp. will be needed. Methods A total of 110 dried blood samples were collected from the clinical patients infected with P. ovale, who all returned from Africa in Henan Province in 2011–2016. The fragments of potra were amplified by nested PCR. The sizes and species of potra gene were analysed after sequencing, and the difference between the isolates were analysed with the alignment of the amino acid sequences. The phylogenetic tree was constructed by neighbour-joining to determine the genetic relationship among all the isolates. The distribution of the isolates was analysed based on the origin country. Results Totally 67 samples infected with P. o. wallikeri, which included 8 genotypes of potra, while 43 samples infected with P. o. curtisi including 3 genotypes of potra. Combination with the previous studies, P. o. wallikeri had six sizes, 227, 245, 263, 281, 299 and 335 bp, and P. o. curtisi had four sizes, 299, 317, 335 and 353 bp, the fragment sizes of 299 and 335 bp were the overlaps between the two species. Six amino acid as one unit was firstly used to analyse the amino acid sequence of potra. Amino acid sequence alignment revealed that potra of P. o. wallikeri differed in two amino acid units, MANPIN and AITPIN, while potra of P. o. curtisi differed in amino acid units TINPIN and TITPIS. Combination with the previous studies, there were ten subtypes of potra exiting for P. o. wallikeri and four subtypes for P. o. curtisi. The phylogenetic tree showed that 11 isolates were divided into two clusters, P. o. wallikeri which was then divided into five sub-clusters, and P. o. curtisi which also formed ... Article in Journal/Newspaper Arctic Directory of Open Access Journals: DOAJ Articles Arctic Malaria Journal 17 1
spellingShingle Plasmodium ovale curtisi
Plasmodium ovale wallikeri
Plasmodium ovale tryptophan-rich antigen (potra)
Amino acid unit
Subtype
Arctic medicine. Tropical medicine
RC955-962
Infectious and parasitic diseases
RC109-216
Ruimin Zhou
Ying Liu
Suhua Li
Yuling Zhao
Fang Huang
Chengyun Yang
Dan Qian
Deling Lu
Yan Deng
Hongwei Zhang
Bianli Xu
Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province
title Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province
title_full Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province
title_fullStr Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province
title_full_unstemmed Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province
title_short Polymorphisms analysis of the Plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in Henan Province
title_sort polymorphisms analysis of the plasmodium ovale tryptophan-rich antigen gene (potra) from imported malaria cases in henan province
topic Plasmodium ovale curtisi
Plasmodium ovale wallikeri
Plasmodium ovale tryptophan-rich antigen (potra)
Amino acid unit
Subtype
Arctic medicine. Tropical medicine
RC955-962
Infectious and parasitic diseases
RC109-216
topic_facet Plasmodium ovale curtisi
Plasmodium ovale wallikeri
Plasmodium ovale tryptophan-rich antigen (potra)
Amino acid unit
Subtype
Arctic medicine. Tropical medicine
RC955-962
Infectious and parasitic diseases
RC109-216
url https://doi.org/10.1186/s12936-018-2261-1
https://doaj.org/article/2917e7df1f4b4514acddd5d07ad9719c