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J Zhejiang Univ Sci B. 2013 Sep;14(9):829-36. doi: 10.1631/jzus.B1200363.
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本文引用的文献

1
Cloning and sequence analysis of chitin synthase gene fragments of Demodex mites.螨虫角鲨烯合酶基因片段的克隆与序列分析。
J Zhejiang Univ Sci B. 2012 Oct;13(10):763-8. doi: 10.1631/jzus.B1200155.
2
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.对螨虫的完整 rDNA 序列(18S、ITS1、5.8S、ITS2 和 28S rDNA)进行测序,并基于 18S 和 28S rDNA 对节肢动物进行系统发育分析。
Parasitol Res. 2012 Nov;111(5):2109-14. doi: 10.1007/s00436-012-3058-8. Epub 2012 Aug 18.
3
Molecular study on three morphotypes of Demodex mites (Acarina: Demodicidae) from dogs.三种犬毛囊蠕形螨形态型的分子研究(节肢动物门:蠕形螨科)。
Parasitol Res. 2012 Nov;111(5):2165-72. doi: 10.1007/s00436-012-3067-7. Epub 2012 Aug 16.
4
Phylogenetic relationships in Demodex mites (Acari: Demodicidae) based on mitochondrial 16S rDNA partial sequences.基于线粒体 16S rDNA 部分序列的 Demodex 螨(蜱螨目:Demodicidae)的系统发育关系。
Parasitol Res. 2012 Sep;111(3):1113-21. doi: 10.1007/s00436-012-2941-7. Epub 2012 May 13.
5
Complete sequence analysis of 18S rDNA based on genomic DNA extraction from individual Demodex mites (Acari: Demodicidae).基于从单个蠕形螨(节肢动物门:蠕形螨科)基因组 DNA 提取的 18S rDNA 进行完整序列分析。
Exp Parasitol. 2012 May;131(1):45-51. doi: 10.1016/j.exppara.2012.02.025. Epub 2012 Mar 6.
6
RAPD-SCAR marker and genetic relationship analysis of three Demodex species (Acari: Demodicidae).RAPD-SCAR 标记与三种蠕形螨(节肢动物门:蠕形螨科)的遗传关系分析。
Parasitol Res. 2012 Jun;110(6):2395-402. doi: 10.1007/s00436-011-2778-5. Epub 2011 Dec 29.
7
Morphobiometrical and molecular study of two populations of Demodex folliculorum from humans.毛囊蠕形螨两人群体的形态生物测量学和分子研究。
Parasitol Res. 2012 Jan;110(1):227-33. doi: 10.1007/s00436-011-2476-3. Epub 2011 Jun 7.
8
Influence of temperature and medium on viability of Demodex folliculorum and Demodex brevis (Acari: Demodicidae).温度和介质对毛囊蠕形螨和短毛蠕形螨(节肢动物:蠕形螨科)生存能力的影响。
Exp Appl Acarol. 2011 Aug;54(4):421-5. doi: 10.1007/s10493-011-9445-5. Epub 2011 Apr 11.
9
Development of a real-time PCR to detect Demodex canis DNA in different tissue samples.建立一种实时 PCR 检测不同组织样本中犬蠕形螨 DNA 的方法。
Parasitol Res. 2011 Feb;108(2):305-8. doi: 10.1007/s00436-010-2062-0. Epub 2010 Sep 24.
10
The effect of temperature on the viability of Demodex folliculorum and Demodex brevis.温度对毛囊蠕形螨和短毛蠕形螨生存能力的影响。
Parasitol Res. 2009 Nov;105(6):1623-8. doi: 10.1007/s00436-009-1603-x. Epub 2009 Sep 23.

基于线粒体 cox1 序列对来自中国和西班牙的毛囊蠕形螨(蜱螨目:蠕形螨科)分离株的鉴别。

Discrimination between Demodex folliculorum (Acari: Demodicidae) isolates from China and Spain based on mitochondrial cox1 sequences.

机构信息

Department of Immunology and Pathogen Biology, Xi'an Jiaotong University College of Medicine, Xi'an 710061, China; Department of Microbiology and Parasitology, Faculty of Pharmacy, University of Sevilla, Sevilla 41012, Spain.

出版信息

J Zhejiang Univ Sci B. 2013 Sep;14(9):829-36. doi: 10.1631/jzus.B1200363.

DOI:10.1631/jzus.B1200363
PMID:24009203
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3773554/
Abstract

For a long time, classification of Demodex mites has been based mainly on their hosts and phenotypic characteristics. A new subspecies of Demodex folliculorum has been proposed, but not confirmed. Here, cox1 partial sequences of nine isolates of three Demodex species from two geographical sources (China and Spain) were studied to conduct molecular identification of D. folliculorum. Sequencing showed that the mitochondrial cox1 fragments of five D. folliculorum isolates from the facial skin of Chinese individuals were 429 bp long and that their sequence identity was 97.4%. The average sequence divergence was 1.24% among the five Chinese isolates, 0.94% between the two geographical isolate groups (China (5) and Spain (1)), and 2.15% between the two facial tissue sources (facial skin (6) and eyelids (1)). The genetic distance and rate of third-position nucleotide transition/transversion were 0.0125, 2.7 (3/1) among the five Chinese isolates, 0.0094, 3.1 (3/1) between the two geographical isolate groups, and 0.0217, 4.4 (3/1) between the two facial tissue sources. Phylogenetic trees showed that D. folliculorum from the two geographical isolate groups did not form sister clades, while those from different facial tissue sources did. According to the molecular characteristics, it appears that subspecies differentiation might not have occurred and that D. folliculorum isolates from the two geographical sources are of the same population. However, population differentiation might be occurring between isolates from facial skin and eyelids.

摘要

长期以来,蠕形螨的分类主要基于其宿主和表型特征。已经提出了一种新的滤泡蠕形螨亚种,但尚未得到证实。在这里,我们研究了来自两个地理来源(中国和西班牙)的三种蠕形螨的九个分离物的 cox1 部分序列,以进行滤泡蠕形螨的分子鉴定。测序结果表明,来自中国个体面部皮肤的五个滤泡蠕形螨分离物的线粒体 cox1 片段长 429bp,其序列同一性为 97.4%。五个中国分离物之间的平均序列差异为 1.24%,两个地理分离物组(中国(5 个)和西班牙(1 个))之间的序列差异为 0.94%,两个面部组织来源(面部皮肤(6 个)和眼睑(1 个))之间的序列差异为 2.15%。五个中国分离物之间的遗传距离和第三位核苷酸转换/颠换率分别为 0.0125、2.7(3/1),两个地理分离物组之间分别为 0.0094、3.1(3/1),两个面部组织来源之间分别为 0.0217、4.4(3/1)。系统发育树表明,两个地理分离物组中的滤泡蠕形螨没有形成姐妹分支,而不同面部组织来源的则形成了姐妹分支。根据分子特征,似乎没有发生亚种分化,并且来自两个地理来源的滤泡蠕形螨分离物属于同一种群。然而,来自面部皮肤和眼睑的分离物之间可能正在发生种群分化。