Climate change affects phenology and distribution of plants and animals and causes a mismatch in plant-pollinator interactions. These changes are clearly manifested in extreme environments such as mountains or the beginning of the growing season. Vaccinium myrtillus is an important temperate and boreal species, inhabiting and often dominating such environments where changes due to global warming are already appearing. Flowers start to appear in April and May at the very beginning of the growing season. Without pollination, flower will almost never form a fruit. When comparing fruit set, it is possible to observe whether the flower has been pollinated and thus the quality of pollination in given conditions. Using experiments on the mountain ...
The flowering phenology of early-blooming plants is largely determined by snowmelt timing in high-la...
The flowering phenology of early-blooming plants is largely determined by snowmelt timing in high-la...
Vaccinium myrtillus and Vaccinium vitis-idaea are key species in boreal ecosystems due to their abun...
Climate change is altering the world's ecosystems through direct effects of climate warming and prec...
Climate change is shifting the seasonal timing of many biological events, and the possibility of non...
Background and aims – Large variation in annual berry production occurs in Vaccinium myrtillus L., a...
Phenotypic plasticity plays an important role in organisms’ adaptability to environmental change suc...
Climate change is likely to alter both flowering phenology and water availability for plants. Either...
Insect pollination is an important contribution to wild ecosystems in Norway and 80 % of plants seem...
Climate-warming is causing shifts in seasonal flowering periods and pollinator emergence dates (i.e....
With an estimated 87% of angiosperms depending on animal-mediated pollination, plant-pollinator mutu...
The timing of plant and animal life cycle events are changing in response to human-altered climates....
Floral nectar harbors a community of microbes that affect plant and pollinator fitness. Dynamic and ...
Phenology changes are a common response to global warming and the timing of phenological events is i...
The reproductive success of three co-flowering species of Vaccinium (V. myrtillus, V. vitis-idaea an...
The flowering phenology of early-blooming plants is largely determined by snowmelt timing in high-la...
The flowering phenology of early-blooming plants is largely determined by snowmelt timing in high-la...
Vaccinium myrtillus and Vaccinium vitis-idaea are key species in boreal ecosystems due to their abun...
Climate change is altering the world's ecosystems through direct effects of climate warming and prec...
Climate change is shifting the seasonal timing of many biological events, and the possibility of non...
Background and aims – Large variation in annual berry production occurs in Vaccinium myrtillus L., a...
Phenotypic plasticity plays an important role in organisms’ adaptability to environmental change suc...
Climate change is likely to alter both flowering phenology and water availability for plants. Either...
Insect pollination is an important contribution to wild ecosystems in Norway and 80 % of plants seem...
Climate-warming is causing shifts in seasonal flowering periods and pollinator emergence dates (i.e....
With an estimated 87% of angiosperms depending on animal-mediated pollination, plant-pollinator mutu...
The timing of plant and animal life cycle events are changing in response to human-altered climates....
Floral nectar harbors a community of microbes that affect plant and pollinator fitness. Dynamic and ...
Phenology changes are a common response to global warming and the timing of phenological events is i...
The reproductive success of three co-flowering species of Vaccinium (V. myrtillus, V. vitis-idaea an...
The flowering phenology of early-blooming plants is largely determined by snowmelt timing in high-la...
The flowering phenology of early-blooming plants is largely determined by snowmelt timing in high-la...
Vaccinium myrtillus and Vaccinium vitis-idaea are key species in boreal ecosystems due to their abun...