6533b86cfe1ef96bd12c8b5f

RESEARCH PRODUCT

Population Persistence and Offspring Fitness in the Rare Bellflower Campanula Cervicaria in Relation to Population Size and Habitat Quality

Päivi M. TikkaVeli SaariMarkku KuitunenSusanna SyrjäsuoAntti LammiAnna-kaija EistoJukka Suhonen

subject

0106 biological sciences2. Zero hungerPopulation fragmentationeducation.field_of_studyExtinctionEcologyEcologyPopulation sizeRare speciesPopulationSmall population size15. Life on landBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesHabitatCampanula cervicariaeducationEcology Evolution Behavior and Systematics010606 plant biology & botanyNature and Landscape Conservation

description

Data from several animal species and a few plant species indicate that small populations face an elevated risk of extinction. Plants are still underrepresented in these studies concerning the relation between population size and persistence. We studied the effect of population size on persistence among natural popu- lations of the rare bellflower Campanula cervicaria in Finland. We monitored 52 bellflower populations for 8 years and found that the mean population size decreased from 24 to 14 during this period. Small popula- tions with # 5 individuals were more prone to losing all fertile plants than were larger ones. Reduction in population size was nevertheless unrelated to the degree of population isolation, measured as the distance to the nearest known population. To test the hypothesis that offspring fitness is lower in small populations, we germinated bellflower seeds from different-sized populations in a laboratory and found that seed germina- tion ability was independent of population size. The seedlings raised from seeds of small populations grew faster than those taken from larger populations. Population size was negatively related to the amount of shade in the habitats. In conclusion, decreasing population sizes of C. cervicaria seemed not to be caused by lowered germination ability or growth rate in small populations; rather, population size reductions ap- peared to be due to closing of vegetation in the habitats.

http://hdl.handle.net/1975/175