This work elucidates a multi-modal action mechanism of O. basilicum EO against H. longicornis through contact toxicity, fumigation, reproductive suppression, and enzyme inhibition, showing potential for addressing the critical challenge of acaricide resistance in animal production systems.
Abstract
Haemaphysalis longicornis is an important ectoparasite infesting livestock, particularly cattle and sheep, causing significant economic losses and serving as a vector for multiple zoonotic pathogens. The widespread development of acaricide resistance necessitates the exploration of alternative control strategies with novel mechanisms of action. The essential oil (EO) of Ocimum basilicum L. demonstrates potential as a multi-target botanical acaricide against the hard tick Haemaphysalis longicornis. GC-MS analysis identified eugenol (47.75%) as the major constituent. Bioassays revealed significant, dose-dependent contact toxicity against larvae (LC₅₀ = 18.47 mg/mL), nymphs (LC₅₀ = 34.93 mg/mL), and adults (LC₅₀ = 27.75 mg/mL). Purified eugenol exhibited 1.3–1.9-fold greater potency than the whole EO. The EO also showed strong fumigant activity and significantly suppressed fecundity by inhibiting oviposition and reducing egg hatchability. Mechanistic studies indicated that the acaricidal effect may be associated with the inhibition of key metabolic and neurological enzymes, including acetylcholinesterase (AChE), carboxylesterase (CarE), and glutathione S-transferase (GST). Furthermore, a 2:8 (hexythiazox: oil) formulation exhibited significant synergism against nymphs (Co-toxicity coefficient = 128.35), enabling a reduction in synthetic acaricide dosage. This work elucidates a multi-modal action mechanism of O. basilicum EO against H. longicornis through contact toxicity, fumigation, reproductive suppression, and enzyme inhibition. The synergistic interaction with hexythiazox provides a sustainable, plant-based strategy for controlling tick infestations in livestock, showing potential for addressing the critical challenge of acaricide resistance in animal production systems.
The increasing resistance of the cattle tick (Rhipicephalus microplus) to synthetic acaricides necessitates the search for effective bioproducts. This study investigated the bioactive potential of Myracrodruon urundeuva leaves, integrating traditional bioassays, histological analyses, and computational modeling to eluc...
Viviane de Oliveira Vasconcelos, Marta Cristina Pereira da Silva, Eduarda Victória Alves Paulino de Azevedo et al.· Experimental parasitology· 0 citations
The global occurrence of Spodoptera exigua (Hübner) (Lepidoptera: Noctuidae) intensifies reliance on synthetic insecticides, causing resistance and ecological risks. This study investigates rosemary (Rosmarinus officinalis L.) essential oil (REO) as a sustainable alternative, examining its effects on S. exigua behavior...
Bing Hu, Jiang Cun, Chao Liu et al.· Journal of entomological sci...· 0 citations
Rhipicephalus microplus is a cattle ectoparasite responsible for economic losses in livestock systems. The present study aimed to evaluate the essential oil (EO) of Piper hemmendorffii and its major constituent, limonene, for their activity against R. microplus larvae. The EO of P. hemmendorffii and its major compound,...
A. A. Pereira, Vladimir Fazito Do Vale, Caio Márcio de Oliveira Monteiro et al.· Pathogens· 0 citations
Gastrointestinal nematodes (GINs), particularly Haemonchus contortus and Trichostrongylus colubriformis, threaten sheep health and welfare globally, while anthelmintic resistance drives the need for sustainable alternatives. Essential oils (EOs) from Citrus species, rich in bioactive terpenes, represent a promising opt...
Roberto Bava, F. Castagna, Carmine Lupia et al.· Veterinary parasitology· 0 citations