Sub-lethal pesticide exposure facilitates the potential northward range shifts of ticks by increasing cold tolerance and overwintering survival
Oyen, K. J.; Barya, T.; Davies, B.; Didion, E. M.; Benoit, J. B.
Show abstract
Pesticides are a primary tool for the control of harmful insects or other organisms throughout the world. Although most organisms are likely to encounter pesticides in the environment, little is known about the effects of these chemicals on the physiology of off-target species. We measured the impact of sublethal pesticide exposure on the cold tolerance of two common tick species. We predicted that sublethal pesticide exposure would make ticks more sensitive to extreme temperatures. In contrast, we found that exposure to sublethal pesticides had the opposite effect, increasing survival at low temperatures. Sublethal pesticide exposure decreased the LT50 (lethal temperature at which 50% mortality is observed) of adult and nymphal D. variabilis from -16{degrees}C to -19{degrees}C and improved overwintering survival. Evaluation of previously available RNA-seq data between rapid cold hardening and pesticide exposure indicated potential transcriptional shifts associated with cross-tolerance between cold and pesticide exposure. To investigate the population-level impacts of this physiological shift in cold tolerance, we developed a novel approach for incorporating physiological survival data into spatially explicit species distribution models (SDMs). Using this approach, we demonstrate that pesticide-induced increases in cold tolerance may permit faster northward range shifts of D. variabilis. We also demonstrate that incorporating physiological data into SDMs moderates the estimated impacts of environmental change and may provide more accurate predictions of species responses to changing environments. Although our study is limited to ticks, other studies have shown the effects of pesticides on thermal tolerance traits in diverse species. The extensive use of pesticides may drive complex interactions between species and their environments, leading to altered thermal tolerance traits and establishment in new habitats.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Autumn larval cold tolerance does not predict the northern range limit of a widespread butterfly species 94%
- Using simulated temperature regimes to test growth and development of an invasive forest insect under climate change 94%
- Context-dependent effects of ivermectin residues on dung insects: Interactions with environmental stressors, size, and sex in a sepsid fly (Sepsis neocynipsea) 94%
Similar papers in this journal
Similar papers in this journal
- Quantifying Intraspecific Variation In Host Resistance And Tolerance To A Lethal Pathogen 93%
- Influence of delayed density and ultraviolet radiation on caterpillar baculovirus infection and mortality 93%
- Environmental persistence but not per capita transmission rates of a chytrid fungus determines infection prevalence 92%
Similar papers in this journal
- A neonicotinoid pesticide causes tissue-specific gene expression changes in bumble bees 93%
- Acute toxicity effects of pesticides on beneficial organisms - Dispelling myths for a more sustainable use of chemicals in agricultural environments 93%
- Sublethal pesticide exposure decreases mating and disrupts chemical signaling in a beneficial pollinator 91%
Similar papers in this journal
- Natural variation in the contribution of microbial density to inducible immune dynamics 91%
- History matters: thermal environment before, but not during wasp attack determines the efficiency of symbiont-mediated protection 90%
- Population genetics as a tool to elucidate pathogen reservoirs: Lessons from Pseudogymnoascus destructans, the causative agent of white-nose disease in bats 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.