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February 8, 2026Parasite0 citationsOpen Access

Glossina from the Republic of the Congo: species identification by MALDI-TOF MS and research of associated micro-organisms

IBIrina Babakana BembaZAZaina AmiratPPPhilippe Parola

Key Points

  • The aim is to assess the effectiveness of MALDI-TOF MS for identifying Glossina species and detecting their infection status.
  • Collected 265 tsetse flies for morphological classification.
  • Classified flies into two groups: Glossina palpalis and Glossina fuscipes.
  • Generated MALDI-TOF MS spectra from different body parts for species identification.
  • Conducted blind testing to validate morphological identification.
  • Performed molecular screening for Trypanosoma congolense DNA.
  • High-quality spectra obtained, with 98.0% accuracy for wings of G. p. palpalis.
  • Blind testing matched 89.5% of G. p. palpalis spectra with morphological identification.
  • MALDI-TOF MS showed 95.2% match for G. f. quanzensis.
  • Molecular analysis detected T. congolense DNA in 9 specimens.
  • MALDI-TOF MS could not differentiate between infected and uninfected flies.

Abstract

Human African trypanosomiasis (HAT) and Animal African trypanosomiasis (AAT), transmitted by Glossina species, remain major health and economic burdens in Africa. Accurate vector identification is essential for effective control strategies. However, current identification methods of Glossina species based on morphological and/or molecular techniques have several limitations that often hinder reliable species-level classification. This study assessed matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) as an alternative or complementary approach to morphological and molecular methods for Glossina species identification and explored its ability to detect infection status. A total of 265 tsetse flies were collected and morphologically classified into the Glossina palpalis group ( n = 200) and the Glossina fuscipes group ( n = 65), later confirmed by molecular analysis as Glossina palpalis palpalis and Glossina fuscipes quanzensis , respectively. Spectra were generated from wings, legs, and thoraxes to identify the most suitable body parts. For G. p. palpalis , high-quality spectra were obtained from wings (98.0%), legs (96.5%), and thoraxes (93.5%); for G. f. quanzensis , corresponding values were 89.2%, 87.7%, and 72.3%. Blind testing showed that 89.5% of spectra for G. p. palpalis and 95.2% for G. f. quanzensis matched morphological identification, with 87.0% and 94.6%, respectively, reaching relevant score thresholds. Molecular screening detected Trypanosoma congolense DNA in nine specimens, but MALDI-TOF MS spectra could not distinguish infected from uninfected flies. These findings demonstrate that MALDI-TOF MS is a rapid, reliable tool for Glossina species identification, particularly using wings and legs, but is unsuitable for infection status determination.

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Cite This Study

Bemba et al. (2026) studied this question.

synapsesocial.com/papers/698828010fc35cd7a88471fdhttps://doi.org/10.1051/parasite/2026007
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