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S. C. Verma

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Open access Jul 2026

Predatory potential and functional response of Neoseiulus longispinosus (Evans) against Panonychus ulmi (Koch) reared on different apple cultivars

The European red mite, Panonychus ulmi (Koch), has emerged as a major threat to apple production globally, exacerbated by widespread pesticide resistance. This study evaluated the predatory potential and functional response of the predatory mite Neoseiulus longispinosus (Evans) against stage-specific prey densities (3–5 protonymphs, 5–25 deutonymhs or 10–50 adults) of P. ulmi across seven commercially significant apple cultivars: Jeromine, Red Velox, Super Chief, Auvial Early Fuji, Gale Gala, Scarlet Spur II, and Royal Delicious. Laboratory experiments conducted at 25±0.5°C, 14L: 10D photoperiod and 70±5 per cent RH revealed that while larvae remained non-feeding, all other developmental stages exhibited significant predatory activity. The highest net prey-kill rate (C0) was recorded on the Super Chief cultivar (200.78±25.43 mites), while ‘Auvial Early Fuji’ supported the lowest (134.20±21.34 mites). Adult females demonstrated superior predatory efficiency compared to males, with a maximum consumption of 258.44 mites on ‘Super Chief’. Logistic regression confirmed a Type II functional response for all feeding stages across all cultivars, characterized by a declining proportion of prey consumed as initial prey density increased. Predatory performance improved with age; adult females on ‘Red Velox’ exhibited the highest attack rate (0.206 h-1) and the shortest handling time (0.841 h). These findings underscore the influence of host-plant cultivars on predator-prey dynamics and highlight the potential of N. longispinosus as a robust biological control agent for integrated pest management (IPM) programs in diverse apple orchards.

Nikita Chauhan, Prem Lal Sharma, S. C. Verma et al. · 0 citations

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