TY - JOUR
T1 - Darwin's wind hypothesis: Does it work for plant dispersal in fragmented habitats?
AU - Riba, Miquel
AU - Mayol, Maria
AU - Giles, Barbara E.
AU - Ronce, Ophélie
AU - Imbert, Eric
AU - Van Der Velde, Marco
AU - Chauvet, Stéphanie
AU - Ericson, Lars
AU - Bijlsma, R.
AU - Vosman, Ben
AU - Smulders, M. J.M.
AU - Olivieri, Isabelle
PY - 2009/8/1
Y1 - 2009/8/1
N2 - Using the wind-dispersed plant Mycelis muralis, we examined how landscape fragmentation affects variation in seed traits contributing to dispersal. • Inverse terminal velocity () of field-collected achenes was used as a proxy for individual seed dispersal ability. We related this measure to different metrics of landscape connectivity, at two spatial scales: in a detailed analysis of eight landscapes in Spain and along a latitudinal gradient using 29 landscapes across three European regions. • In the highly patchy Spanish landscapes, seed increased significantly with increasing connectivity. A common garden experiment suggested that differences in may be in part genetically based. The was also found to increase with landscape occupancy, a coarser measure of connectivity, on a much broader (European) scale. Finally, was found to increase along a south-north latitudinal gradient. • Our results for M. muralis are consistent with 'Darwin's wind dispersal hypothesis' that high cost of dispersal may select for lower dispersal ability in fragmented landscapes, as well as with the 'leading edge hypothesis' that most recently colonized populations harbour more dispersive phenotypes. © New Phytologist (2009).
AB - Using the wind-dispersed plant Mycelis muralis, we examined how landscape fragmentation affects variation in seed traits contributing to dispersal. • Inverse terminal velocity () of field-collected achenes was used as a proxy for individual seed dispersal ability. We related this measure to different metrics of landscape connectivity, at two spatial scales: in a detailed analysis of eight landscapes in Spain and along a latitudinal gradient using 29 landscapes across three European regions. • In the highly patchy Spanish landscapes, seed increased significantly with increasing connectivity. A common garden experiment suggested that differences in may be in part genetically based. The was also found to increase with landscape occupancy, a coarser measure of connectivity, on a much broader (European) scale. Finally, was found to increase along a south-north latitudinal gradient. • Our results for M. muralis are consistent with 'Darwin's wind dispersal hypothesis' that high cost of dispersal may select for lower dispersal ability in fragmented landscapes, as well as with the 'leading edge hypothesis' that most recently colonized populations harbour more dispersive phenotypes. © New Phytologist (2009).
KW - Common garden
KW - Evolution of dispersal
KW - Fragmentation
KW - Latitudinal gradient
KW - Leading edge hypothesis
KW - Phenotypic variation
U2 - 10.1111/j.1469-8137.2009.02948.x
DO - 10.1111/j.1469-8137.2009.02948.x
M3 - Article
SN - 0028-646X
VL - 183
SP - 667
EP - 677
JO - New Phytologist
JF - New Phytologist
ER -