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Autofluorescence microscopy for paired-matched morphological and molecular identification of individual chigger mites (Acari: Trombiculidae), the vectors of scrub typhus

Kumlert Rawadee, Chaisiri Kittipong, Anantatat Tippawan, Stekolnikov Alexandr A., Morand Serge, Prasartvit Anchana, Makepeace Benjamin L., Sungvornyothin Sungsit, Paris Daniel H.. 2018. Autofluorescence microscopy for paired-matched morphological and molecular identification of individual chigger mites (Acari: Trombiculidae), the vectors of scrub typhus. PloS One, 13 (3):e0193163, 19 p.

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Quartile : Q2, Sujet : MULTIDISCIPLINARY SCIENCES

Liste HCERES des revues (en SHS) : oui

Thème(s) HCERES des revues (en SHS) : Psychologie-éthologie-ergonomie; Staps

Résumé : Background: Conventional gold standard characterization of chigger mites involves chemical preparation procedures (i.e. specimen clearing) for visualization of morphological features, which however contributes to destruction of the arthropod host DNA and any endosymbiont or pathogen DNA harbored within the specimen. Methodology/Principal findings: In this study, a novel work flow based on autofluorescence microscopy was developed to enable identification of trombiculid mites to the species level on the basis of morphological traits without any special preparation, while preserving the mite DNA for subsequent genotyping. A panel of 16 specifically selected fluorescence microscopy images of mite features from available identification keys served for complete chigger morphological identification to the species level, and was paired with corresponding genotype data. We evaluated and validated this method for paired chigger morphological and genotypic ID using the mitochondrial cytochrome c oxidase subunit I gene (coi) in 113 chigger specimens representing 12 species and 7 genera (Leptotrombidium, Ascoschoengastia, Gahrliepia, Walchia, Blankaartia, Schoengastia and Schoutedenichia) from the Lao People's Democratic Republic (Lao PDR) to the species level (complete characterization), and 153 chiggers from 5 genera (Leptotrombidium, Ascoschoengastia, Helenicula, Schoengastiella and Walchia) from Thailand, Cambodia and Lao PDR to the genus level. A phylogenetic tree constructed from 77 coi gene sequences (approximately 640 bp length, n = 52 new coi sequences and n = 25 downloaded from GenBank), demonstrated clear grouping of assigned morphotypes at the genus levels, although evidence of both genetic polymorphism and morphological plasticity was found. Conclusions/Significance: With this new methodology, we provided the largest collection of characterized coi gene sequences for trombiculid mites to date, and almost doubled the number of available characterized coi gene sequences with a single study. The ability to provide paired phenotypic-genotypic data is of central importance for future characterization of mites and dissecting the molecular epidemiology of mites transmitting diseases like scrub typhus.

Mots-clés Agrovoc : maladie des animaux, vecteur de maladie

Classification Agris : L73 - Maladies des animaux
L72 - Organismes nuisibles des animaux
U30 - Méthodes de recherche

Champ stratégique Cirad : Axe 4 (2014-2018) - Santé des animaux et des plantes

Auteurs et affiliations

  • Kumlert Rawadee, Mahidol University (THA)
  • Chaisiri Kittipong, Mahidol University (THA)
  • Anantatat Tippawan, Mahidol University (THA)
  • Stekolnikov Alexandr A., Zoological Institute of Russian (RUS)
  • Morand Serge, CNRS (THA) ORCID: 0000-0003-3986-7659
  • Prasartvit Anchana, Ministry of Public Health (Thaïlande) (THA)
  • Makepeace Benjamin L., University of Liverpool (GBR)
  • Sungvornyothin Sungsit, Mahidol University (THA)
  • Paris Daniel H., University of Basel (CHE) - auteur correspondant

Source : Cirad-Agritrop (https://agritrop.cirad.fr/587539/)

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