Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. Their dispersal capacity is greatly influenced by interactions with the animal's digestive tract. Omnivorous birds adjust their digestive tract morphology to seasonally variable diets. We performed feeding trials in waterfowl to unravel how changing organ size, in combination with seed size, affects dispersal potential. We subjected captive mallards to mimics of summer (animal-based), winter (plant-based), and intermediate diets, and analyzed gut passage of seeds before and after the treatment (trials 1 and 2). To test the effect of gut morphology on seed digestion, we measured digestive organ size after euthanasia. Three hours before euthanasia...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
1. The consequences of plastic responses of the avian digestive tract for the potential of birds to...
Long distance dispersal may have important consequences for gene flow and community structure. The d...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Abstract Many plants and invertebrates rely on internal transport by animals for long-distance dispe...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Dispersal of plant seeds by ducks and other waterbirds is of great importance to the ecology of fres...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
1. The consequences of plastic responses of the avian digestive tract for the potential of birds to ...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
1. The consequences of plastic responses of the avian digestive tract for the potential of birds to...
Long distance dispersal may have important consequences for gene flow and community structure. The d...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Abstract Many plants and invertebrates rely on internal transport by animals for long-distance dispe...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Many plants and invertebrates rely on internal transport by animals for long-distance dispersal. The...
Dispersal of plant seeds by ducks and other waterbirds is of great importance to the ecology of fres...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
1. The consequences of plastic responses of the avian digestive tract for the potential of birds to ...
Plant populations in fragmented ecosystems rely largely on internal dispersal by animals. To unravel...
1. The consequences of plastic responses of the avian digestive tract for the potential of birds to...
Long distance dispersal may have important consequences for gene flow and community structure. The d...