Exotic success following disturbance explained by weak native resilience and ruderal exotic bias

Author:

Pearson Dean E.12ORCID,Ortega Yvette K.1,Eren Özkan3,Villarreal Diego4,Lekberg Ylva25,Hierro José46

Affiliation:

1. Rocky Mountain Research Station, United States Forest Service Missoula Montana USA

2. The University of Montana Missoula Montana USA

3. Biyoloji Bölümü, Fen Fakültesi Aydın Adnan Menderes Üniversitesi Aydın Turkey

4. Facultad de Ciencias Exactas y Naturales (FCEyN), UNLPam Santa Rosa Argentina

5. MPG Ranch Florence Montana USA

6. Instituto de Ciencias de la Tierra y Ambientales de La Pampa, Consejo Nacional de Investigaciones Científicas y Técnicas‐Universidad Nacional de La Pampa [INCITAP (CONICET‐UNLPam)] Santa Rosa Argentina

Abstract

Abstract Disturbance is a primary driver of exotic plant invasions, but why disturbance commonly favours exotics over natives is unresolved. To address this question, we conducted the first biogeographic study of disturbance across multiple plant species. We experimentally disturbed grasslands and added seeds of 34 plant species to plots in their native range and in two introduced ranges that differed in invasibility (susceptibility to invasion) to evaluate recruitment while examining potential influences of resource availability, native community recovery from disturbance (resilience) and life‐history traits in local species pools. Species pools in the native (donor) range were more strongly skewed towards ruderal taxa than species pools in the introduced ranges. This bias in the donor pool was exacerbated by introduction filters that further selected for ruderal traits, strongly skewing exotic species pools in the introduced ranges towards ruderals. Sown species, which reflected these trait patterns, benefited from disturbance universally, but their disturbance response was 10‐fold greater in the more invasible introduced range. This result was not explained by nutrient availability, which responded similar to disturbance across ranges. Nor was it driven by background propagule pressure, which was minimal. Rather, the exaggerated disturbance effect in the more invasible introduced range appeared to be driven by weak recovery of the native plant community that allowed ruderal‐biased exotics to proliferate. Overall, disturbance appeared to favoured exotics because they were much more likely than natives to be ruderal. However, this trait bias only corresponded with an invader advantage in the more invasible range where weak community resilience was linked to slow‐growing, stress‐tolerant natives that failed to rapidly recover space and resources. In contrast, in the less invasible introduced range, highly competitive native perennials quickly filled the disturbance gap, demonstrating high community resilience that appeared to limit invader recruitment. Synthesis: Biogeographic influences on local species pools can facilitate invader success following disturbance, but final invasion outcomes are conditioned by native community resilience.

Publisher

Wiley

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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