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Joshi, N. K.

Publications and source records attributed to Joshi, N. K..

2 recordsLinked to original sources

Female Olfactory Sensitivity is Temporally Asynchronous with Male Courtship in a Butterfly

Signal efficacy is crucial to communicative behaviours. To be effective, a signal once broadcast must be capable of being received and interpreted by a receiver or receivers. In addition to maximizing the amount that a signal stimulates receptive organs, optimally the timing of when a signal is broadcast would synchronize with a receivers peak receptivity. Here, we investigated whether peak timing of male courtship, which includes release of a pheromone required for copulation to occur, is synchronized with female pheromone sensitivity in the butterfly Bicyclus anynana (Lepidoptera: Nymphalidae). To do this, we performed behavioural and electrophysiological assays at dawn, noon, and dusk. We also investigated the circadian rhythmicity of antennae gene expression by performing RNA-Sequencing on antennal tissues collected at dawn, noon and dusk. We found that although males court most often near dusk, females are more sensitive to odorants in the morning. Furthermore, antennae exhibited differential and diurnally rhythmic expression of odorant receptors and genes associated with learning and sexual receptivity, as well as gene ontology (GO) terms related to fatty acid metabolism and trehalose biosynthesis, supporting our circadian electrophysiological results. Previous literature indicates females form both positive and negative mate preference associations with male pheromones in the morning, regardless of whether males court females. Thus, this asynchrony may enable female B. anynana to learn mate preferences before they are courted by conspecific (or potentially heterospecific) males. SummaryMale Bicyclus anynana butterflies court more at dusk while females are more sensitive to odorants in the morning. Patterns of antenna gene expression also suggest circadian rhythmicity of odorant sensitivity.

animal behavior and cognition↗

Systemic pesticides in a solitary bee pollen food store affect larval development and increase pupal mortality

Solitary bees are often exposed to various pesticides applied for pest control on farmland while providing pollination services to food crops1. Increasing evidence suggests that sublethal toxicity of agricultural pesticides affects solitary bees differently than the social bees used to determine regulatory thresholds like honey bees and bumblebees2-4. Studies on solitary bees are challenging because of the difficulties in obtaining large numbers of eggs or young larvae for bioassays. Here we show the toxic and sublethal developmental effects of four widely used plant systemic pesticides on the Japanese orchard bee (Osmia cornifrons). Pollen food stores of this solitary bee were treated with different concentrations of three insecticides (acetamiprid, flonicamid, and sulfoxaflor) and a fungicide (dodine). Eggs were transplanted to the treated pollen and larvae were allowed to feed on the pollen stores after egg hatch. The effects of chronic ingestion of contaminated pollen were measured until adult eclosion. This year-long study revealed that chronic exposure to all tested pesticides delayed larval development and lowered larval and adult body weights. Additionally, exposure to the systemic fungicide resulted in abnormal larval defecation and increased mortality at the pupal stage, indicating potential risk to bees from fungicide exposure. These findings demonstrate potential threats to solitary bees from systemic insecticides and fungicides and will help making policy decisions for mitigating these effects.

ecology↗