In vitro evaluation of the potential of mites of the family Macrochelidae (Acari: Mesostigmata) as macrobiological agents against the nematode Haemonchus contortus (Strongylida: Trichostrongylidae)

Vet Parasitol. 2024 Jun:328:110191. doi: 10.1016/j.vetpar.2024.110191. Epub 2024 Apr 28.

Abstract

Small ruminants (sheep and goats) constantly suffer from endoparasitoses caused by gastrointestinal nematodes. Among these, the species Haemonchus contortus (Rudolphi, 1803) is considered to be the one of greatest importance within sheep farming. This nematode is difficult to control due to its resistance to most commercial anthelmintics. The aim of the present study was to assess the potential of macrochelid mites as macrobiological agents for controlling endoparasitoses of sheep caused by the nematode, H. contortus. For this, novel in vitro methodology was used, in which assessments were made not only of the predatory ability but also the population growth of mite species (Macrocheles merdarius, Macrocheles robustulus and Holostaspella bifoliata) when offered larvae of the nematode, H. contortus. The predatory ability of the mites, M. merdarius and H. bifoliata were efficient regarding their predatory ability against H. contortus nematode larvae. The mite, M. merdarius exhibited the highest predation rate with mean distribution values for the treated group of 18656 ± 10091 and for the control group of 1178 ± 712 (P < 0.0001). The species, H. bifoliata presented the highest population growth rate, with a percentage acarid recovery rate of 263% in relation to the number added initially. The data from this in vitro predation experiment suggest that, M. merdarius and H. bifoliata showed promise as macrobiological agents for controlling gastrointestinal endoparasitoses of sheep caused by the nematode, H. contortus given that both species reduced the population of this helminth by more 70% and the number of mites recovered was three times greater than the number added.

Keywords: Biological control; Gastrointestinal nematodes; Holostaspella; Macrocheles; Predatory behavior; Sheep.

MeSH terms

  • Animals
  • Feces / parasitology
  • Female
  • Haemonchiasis* / prevention & control
  • Haemonchus
  • In Vitro Techniques
  • Larva
  • Mites* / physiology
  • Pest Control, Biological* / standards
  • Population Growth
  • Predatory Behavior
  • Sheep
  • Sheep Diseases* / parasitology
  • Sheep Diseases* / prevention & control
  • Species Specificity