Aug 2026· Pest Management Science· 0 citations· 32 references
Medicine
TL;DR
The findings highlight the rapid evolution of pyrethroid resistance and underscore the need for integrated pest management, including molecular monitoring and careful insecticide rotation, to sustain control of M. persicae in Czechia.
Abstract
Background
The green peach aphid, Myzus persicae, is a major pest and virus vector in central European agriculture. Following the neonicotinoid seed treatment ban and under climate warming, its populations have increased, raising concerns about insecticide resistance.
Results
This study assessed the phenotypic resistance and underlying target-site mutations in Czech populations of M. persicae from oilseed rape between 2022 and 2024. Bioassays with cypermethrin, pirimicarb, and acetamiprid revealed extreme and increasing pyrethroid resistance, whereas susceptibility to pirimicarb and acetamiprid remained high or improved compared to earlier periods. Molecular screening of 140 field-collected aphids identified four sodium channel mutations (L1014F, M918L, M918T, L932F) and the ace2 mutation S431F. Survival under insecticide selection strongly highlighted the functional role of specific mutations: the M918L mutation was the most prevalent among cypermethrin survivors (68.75%), confirming it as the primary mechanism of pyrethroid target-site resistance in these populations. Conversely, the S431F mutation reached complete fixation (100%) in pirimicarb survivors, serving as a definitive marker for carbamate resistance and indicating a high risk of rapid resistance development upon intensive use. Significant negative correlations between M918L and L1014F/L932F suggest divergent resistance lineages.
Aedes albopictus is a major global vector of arboviruses. Pyriproxyfen, an insect growth regulator, is increasingly used for mosquito control, but the potential for resistance and cross-resistance with pyrethroids poses a serious threat. Through 13 generations of laboratory selection, we established a highly pyriproxyf...
Xue-Xue Kong, Dan Wang, Jing-Zhu Zhou et al.· PLoS ONE· 0 citations
BACKGROUND In 2023, soybean growers in Eaton County, Michigan, reported repeated failures to control common ragweed (Ambrosia artemisiifolia L.) with (PPO)-inhibiting herbicides, sulfentrazone and fomesafen, in non-genetically modified soybeans. This study aimed to investigate resistance levels and mechanisms of resist...
S. Álvarez-Rodríguez, Michael Ozolins, Aimone Porri et al.· bioRxiv· 0 citations
In this study, pyridaben LC values, resistance ratios, detoxification enzyme activities, synergism tests, and the H92R target-site mutation were investigated in T. urticae populations collected from apple orchards, providing important insights into the biochemical and molecular mechanisms underlying pyridaben resistanc...
Gizem Berber-Tortop, H. Tosun, C. Ikten et al.· Experimental & applied acaro...· 0 citations
Background The German cockroach is a major urban pest and a persistent public health threat, largely due to its ability to rapidly develop resistance to commonly used insecticides. Fipronil, a phenylpyrazole insecticide widely incorporated into bait formulations, is increasingly compromised by resistance in field popul...
Shahin Saeedi, Hassan Akrami, K. Azizi et al.· Parasite Epidemiology and Co...· 0 citations
BACKGROUND
The South American tomato pinworm, Phthorimaea absoluta, has developed resistance to diamide insecticides mainly through target-site mutations in the ryanodine receptor (RyR), including I4746M, G4903E, and G4903V. Recently, a novel mutation, I4746K, has been identified in field populations of P. absoluta, bu...
Abdullah Emre Atış, Kübra Gündüz, Alize Yılmazlar et al.· Pest Management Science· 0 citations
Docking showed flupyrimin bound NlCYP6FL4 with highest affinity with highest affinity via hydrogen bonds and hydrophobic interactions, which reveals P450 functional differentiation, aiding resistance management.
Kai Wang, Shanlei Wang, Qing Qu et al.· Phytoparasitica· 0 citations
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