Abstract Flower temperature impacts pollinator choice in laboratory settings and the foraging behaviour of bees in natural populations. However, the direct effects of floral temperature on animal pollination in field conditions are difficult to isolate from other pollinator‐perceived traits that may affect flower temperature, such as shape and colour. We experimentally manipulated the temperature of model flowers while keeping insect‐perceived colour and floral shape constant by using infrared (IR) reflecting paint. We tested the efficacy of this method across an elevation gradient and evaluated the effect of flower temperature on pollinator visitation and behaviour in populations of Argentina anserina . The IR reflecting treatment was effective at reducing floral heat accumulation in alpine populations (>3000 m) but not at lower elevations (30°C), cooler flowers received more visits than warmer flowers. At high elevation, flies increased the time spent in warmer flowers when air temperatures were cool. However, flies foraged longer in cooler flowers when air temperatures were warm. Flower temperature impacted the likelihood of bee basking but not their visitation rate or foraging duration. By experimentally isolating floral temperature from other floral traits, we found direct effects of flower temperature on visitation and behaviour of wild pollinators, especially during periods of more extreme air temperatures. Thus, pollinators have the potential to exert selection on floral temperature and the traits that shape it. Our study also highlights that floral IR reflectance impacts floral temperature in a context‐dependent manner, calling for more investigations into this little‐studied axis of floral variation. Read the free Plain Language Summary for this article on the Journal blog.
Apland et al. (Thu,) studied this question.