Literature DB >> 23949243

Molecular identification of four phenotypes of human Demodex mites (Acari: Demodicidae) based on mitochondrial 16S rDNA.

Ya-E Zhao1, Li Hu, Jun-Xian Ma.   

Abstract

Classification of Demodex mites has long depended on hosts and morphological characteristics. However, the fact that two species coexist in the same host and phenotype is easily influenced by environment causes difficulty and indeterminacy in traditional classification. Genotype, which directly reflects the molecular structure characteristics, is relatively stable. In this study, species identification of four phenotypes of human Demodex mites was conducted. Mites were morphologically classified into four phenotypes: long- and short-bodied Demodex folliculorum with finger-like terminus and Demodex brevis with finger- or cone-like terminus. The mitochondrial 16S ribosomal DNA (rDNA) fragment of individual mite was amplified, cloned, sequenced, and aligned. Sequence divergences, genetic distances, transition/transversion rates, and phylogenetic trees were analyzed. The results demonstrated that the 16S rDNA sequence of three phenotypes with finger-like terminus was 337 bp, and that of phenotype with cone-like terminus was 342 bp. The divergences, genetic distances, and transition/transversion rates among the three phenotypes with finger-like terminus were 0.0-2.7%, 0.000-0.029, and 5.0-7/0 (5/1-7/0), respectively, indicating an intraspecific variation. Yet, those between these three phenotypes and the one with cone-like terminus were 21.6-22.8%, 2.510-2.589, and 0.47-0.59 (22/47-27/46), respectively, suggesting an interspecific variation. The five phylogenetic trees showed that the three phenotypes with finger-like terminus clustered into one branch, while the phenotype with cone-like terminus clustered into another. In conclusion, terminus is a major morphological characteristic for the identification of human Demodex species. The three phenotypes with finger-like terminus belong to D. folliculorum, while the phenotype with cone-like terminus belongs to D. brevis. Molecular identification can verify and replenish morphological identification.

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Year:  2013        PMID: 23949243     DOI: 10.1007/s00436-013-3558-1

Source DB:  PubMed          Journal:  Parasitol Res        ISSN: 0932-0113            Impact factor:   2.289


  22 in total

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3.  A meta-analysis of association between acne vulgaris and Demodex infestation.

Authors:  Ya-E Zhao; Li Hu; Li-Ping Wu; Jun-Xian Ma
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4.  Molecular study on three morphotypes of Demodex mites (Acarina: Demodicidae) from dogs.

Authors:  Manuel de Rojas; Cristina Riazzo; Rocío Callejón; Diego Guevara; Cristina Cutillas
Journal:  Parasitol Res       Date:  2012-08-16       Impact factor: 2.289

5.  The CLUSTAL_X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools.

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6.  Sequencing for complete rDNA sequences (18S, ITS1, 5.8S, ITS2, and 28S rDNA) of Demodex and phylogenetic analysis of Acari based on 18S and 28S rDNA.

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Journal:  Parasitol Res       Date:  2012-08-18       Impact factor: 2.289

7.  Demodex folliculorum (Simon) and D. brevis akbulatova of man: redescription and reevaluation.

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Journal:  J Zhejiang Univ Sci B       Date:  2011-12       Impact factor: 3.066

9.  Influence of temperature and medium on viability of Demodex folliculorum and Demodex brevis (Acari: Demodicidae).

Authors:  Ya-E Zhao; Na Guo; Li-Ping Wu
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10.  The effect of temperature on the viability of Demodex folliculorum and Demodex brevis.

Authors:  Ya E Zhao; Na Guo; Li Ping Wu
Journal:  Parasitol Res       Date:  2009-09-23       Impact factor: 2.289

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  13 in total

1.  Phylogenetic analysis of Demodex caprae based on mitochondrial 16S rDNA sequence.

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Journal:  Parasitol Res       Date:  2013-09-01       Impact factor: 2.289

2.  Prevalence of ocular demodicosis among patients at Tertiary Care Center, Bangkok, Thailand.

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3.  De novo transcriptome sequencing and differential gene expression analysis of two parasitic human Demodex species.

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Journal:  Parasitol Res       Date:  2019-11-06       Impact factor: 2.289

4.  DNA barcoding for molecular identification of Demodex based on mitochondrial genes.

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Journal:  Parasitol Res       Date:  2017-10-14       Impact factor: 2.289

5.  Molecular identification and phylogenetic study of Demodex caprae.

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Journal:  Parasitol Res       Date:  2014-08-19       Impact factor: 2.289

6.  Cryptic diversity within grass-associated Abacarus species complex (Acariformes: Eriophyidae), with the description of a new species, Abacarus plumiger n. sp.

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7.  Population identification of Sarcoptes hominis and Sarcoptes canis in China using DNA sequences.

Authors:  YaE Zhao; ZhiGuo Cao; Juan Cheng; Li Hu; JunXian Ma; YuanJun Yang; XiaoPeng Wang; JiHui Zeng; TianPing Wang
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8.  De novo transcriptome sequencing and functional annotation of Demodex canis.

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9.  Complete mitochondrial genomes of the human follicle mites Demodex brevis and D. folliculorum: novel gene arrangement, truncated tRNA genes, and ancient divergence between species.

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Review 10.  Cryptic speciation in the Acari: a function of species lifestyles or our ability to separate species?

Authors:  Anna Skoracka; Sara Magalhães; Brian G Rector; Lechosław Kuczyński
Journal:  Exp Appl Acarol       Date:  2015-07-26       Impact factor: 2.132

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