Proceedings of the Royal Society B Biological Sciences · 2013 · 70 citations · 24 references
FitnessEntomologySocial InsectSocial ParasitismInvasive SpeciesInterspecific Behavioral InteractionToxicologyCognitive CapacityInvasive AntsAggressive InteractionsColony FitnessPublic HealthInsecticideInsect Social BehaviorNeurotoxic PesticideBehavioral SciencesAllergyNeuropharmacologyPest ManagementBiologyPesticide ResistanceEvolutionary BiologyPest ControlMedicineBiotic InteractionAnimal Behavior
Neurotoxic pesticides, such as neonicotinoids, negatively affect the cognitive capacity and fitness of non-target species, and could also modify interspecific interactions. We tested whether sublethal contamination with neonicotinoid could affect foraging, colony fitness and the outcome of behavioural interactions between a native (Monomorium antarcticum) and an invasive ant species (Linepithema humile). The foraging behaviour of both ants was not affected by neonicotinoid exposure. Colonies of the invasive species exposed to the neonicotinoid produced significantly fewer brood. In interspecific confrontations, individuals of the native species exposed to the neonicotinoid lowered their aggression towards the invasive species, although their survival probability was not affected. Exposed individuals of the invasive species interacting with non-exposed native ants displayed increased aggression and had their survival probability reduced. Non-exposed individuals of the invasive species were less aggressive but more likely to survive when interacting with exposed native ants. These results suggest that non-target exposure of invaders to neonicotinoids could either increase or decrease the probability of survival according to the exposure status of the native species. Given that, in any community, different species have different food preferences, and thus different exposure to pesticides, non-target exposure could potentially change the dynamics of communities and influence invasion success.
24
The Causes and Consequences of Ant Invasions
David A. Holway, Lori Lach, Andrew V. Suarez et al. · Annual Review of Ecology and Systematics · 2002 · 1.5K citations
Neonicotinoid Pesticide Reduces Bumble Bee Colony Growth and Queen Production
Penelope R. Whitehorn, Stephanie O’Connor, Felix Wäckers et al. · Science · 2012 · 1.3K citations
Ecological implications of behavioural syndromes
Andrew Sih, Julien Côté, Mara Evans et al. · Ecology Letters · 2012 · 879 citations
Spatial Ecology, Behavioral Sciences, Behavioral Plasticity +14
Pesticides and honey bee toxicity – USA
Reed M. Johnson, Marion D. Ellis, Christopher A. Mullin et al. · Apidologie · 2010 · 658 citations · Full text
Pesticide-residue Analysis, Environmental Health, Entomology +5