Multidimensional behavioral profiling uncovers centrifugal hyperactivity induced by the neonicotinoid dinotefuran in Drosophila melanogaster

larvae after 72 h of exposure to nominal dinotefuran concentrations of 0, 10, 50, and 100 μM. Kinematics, velocity distributions, trajectory geometry, spatial redistribution, inter-individual spacing, and principal component analysis (PCA) were integrated. Compared with control larvae, larvae exposed to 50 and 100 μM dinotefuran showed increases in mean linear velocity, respectively, spent a greater proportion of the recording time in the high-speed range, and explored a larger area. Although mean angular velocity did not differ significantly among groups, exposed larvae spent more time at low angular velocities and less time at medium-to-high angular velocities. Exposure increased trajectory straightness, radius of gyration, mean squared displacement, outward redistribution, and inter-individual spacing. PCA supported this multivariate response: PC1 and PC2 explained 52.1% and 16.6% of the variance, and the higher-concentration groups shifted toward higher PC1 scores associated with locomotor activity and spatial exploration. These findings show that dinotefuran alters multiple dimensions of larval behavior and support high-resolution behavioral profiling for assessing sublethal pesticide effects.

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Publication Details

Journal
Journal of Environmental Science and Health Part B
Published
2026-10-05
DOI
https://doi.org/10.1080/03601234.2026.2740562
Primary Topic
Insect and Pesticide Research
Type
article
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article

Multidimensional behavioral profiling uncovers centrifugal hyperactivity induced by the neonicotinoid dinotefuran in Drosophila melanogaster

Rui Wu, Jie Shen
Journal of Environmental Science and Health Part B
Insect and Pesticide Research
article

Multidimensional behavioral profiling uncovers centrifugal hyperactivity induced by the neonicotinoid dinotefuran in Drosophila melanogaster

Rui Wu, Jie Shen
article en

Abstract

larvae after 72 h of exposure to nominal dinotefuran concentrations of 0, 10, 50, and 100 μM. Kinematics, velocity distributions, trajectory geometry, spatial redistribution, inter-individual spacing, and principal component analysis (PCA) were integrated. Compared with control larvae, larvae exposed to 50 and 100 μM dinotefuran showed increases in mean linear velocity, respectively, spent a greater proportion of the recording time in the high-speed range, and explored a larger area. Although mean angular velocity did not differ significantly among groups, exposed larvae spent more time at low angular velocities and less time at medium-to-high angular velocities. Exposure increased trajectory straightness, radius of gyration, mean squared displacement, outward redistribution, and inter-individual spacing. PCA supported this multivariate response: PC1 and PC2 explained 52.1% and 16.6% of the variance, and the higher-concentration groups shifted toward higher PC1 scores associated with locomotor activity and spatial exploration. These findings show that dinotefuran alters multiple dimensions of larval behavior and support high-resolution behavioral profiling for assessing sublethal pesticide effects.

Journal of Environmental Science and Health Part B
Hangzhou Dianzi University (CN)
Openalex Percentile: Top 12%
Insect and Pesticide Research
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Multidimensional behavioral profiling uncovers centrifugal hyperactivity induced by the neonicotinoid dinotefuran in Drosophila melanogaster — Rui Wu, Jie Shen · Journal of Environmental Science and Health Part B (2026) | TGRS Research Map | TGRS