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Propagule pressure governs establishment of an invasive herb
Affiliation:1. Aronia Coastal Zone Research Team, Åbo Akademi University and Novia University of Applied Sciences, Raseborgsvägen 9, 10600 Ekenäs, Finland;2. Section of Ecology, Department of Biology, University of Turku, 20014 Turku, Finland;1. Laboratorio de Recursos Forestales, CADIC-CONICET, Houssay 200 (9410) Ushuaia, Tierra del Fuego, Argentina;2. INTA-UNPA-CONICET, CC 332 (9400) Río Gallegos, Santa Cruz, Argentina;1. Group Function of Invertebrate and Plant Biodiversity in Agrosystems, Crop Research Institute, Drnovská 507, CZ-161 06 Praha 6, Ruzyně, Czech Republic;2. INRA, UMR1347 Agroécologie, 17 rue Sully, 21065 Dijon, France;1. Servicio de Cardiología, Hospital General Universitario de Santa Lucía, Cartagena, Murcia, España;2. Servicio de Medicina Intensiva, Hospital General Universitario de Santa Lucía, Cartagena, Murcia, España;3. Servicio de Medicina Intensiva, Hospital Universitario Virgen de la Arrixaca, El Palmar, Murcia, España
Abstract:The success of plant invasions may be limited by the availability of propagules and/or of suitable microsites, with microsite availability being affected by, for example, disturbance and interspecific competition. A mechanistic understanding of the contributions of propagule pressure and microsite limitation to plant invasions is therefore required to minimise future invasions. Here, we investigated the relative roles of propagule pressure, the availability of microsites, and their interaction on the establishment of an invasive herb, Lupinus polyphyllus, in two geographic regions representing different climate and growth conditions in Finland (a more productive southern region and a harsher central region). We carried out a field experiment in 14 L. polyphyllus populations, in which we manipulated both propagule pressure and disturbance. In a complementary greenhouse experiment, we manipulated propagule pressure and interspecific competition. Seedling establishment of L. polyphyllus was higher in the more productive southern region than in the harsher central region. The number of L. polyphyllus seedlings increased with increasing propagule pressure regardless of disturbance or interspecific competition. However, the number of L. polyphyllus seedlings per sown seed (relative establishment) tended to decrease with increasing propagule pressure, indicating that the positive effect of propagule pressure on early invasion is partially counteracted by density-dependent mortality at high seed densities. Our results highlight the dominant role of propagule pressure over disturbance and interspecific competition in the establishment of L. polyphyllus, suggesting that the early stage of invasion is limited by the availability of propagules rather than the availability of suitable microsites.
Keywords:Density dependence  Germination  Invasive species  Invasion success  Non-native species  Seed number
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