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Wiley InterScience

Ecology Letters

Ecology Letters

Volume 9 Issue 2, Pages 160 - 170

Published Online: 22 Nov 2005

Journal compilation © 2010 Blackwell Publishing Ltd/CNRS



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LETTER
Ecological resistance, seed density and their interactions determine patterns of invasion in a California coastal grassland
Meredith A. Thomsen 1*, Carla M. D'Antonio 2 , Kenwyn B. Suttle 1 and Wayne P. Sousa 1
  1 Department of Integrative Biology, University of California-Berkeley, Berkeley, CA 94720-3140, USA
  2 Department of Ecology, Evolution and Marine Biology, University of California-Santa Barbara, Santa Barbara, CA 93106-9610, USA
Correspondence to   * E-mail: mthomsen@berkeley.edu
Copyright 2005 Blackwell Publishing Ltd/CNRS
KEYWORDS
Climate • competition • exotic • invasibility • Mediterranean • propagule supply • water availability

ABSTRACT

Relatively little experimental evidence is available regarding how ecological resistance and propagule density interact in their effects on the establishment of invasive exotic species. We examined the independent and interactive effects of neighbour cover (biotic resistance), winter vs. spring water addition (abiotic resistance) and seed density on the invasion of the European perennial grass Holcus lanatus into a California coastal grassland dominated by exotic annual grasses. We found that decreased competition from resident exotic grasses had no effect. In contrast, increased late-season water availability eroded the abiotic resistance offered by naturally dry conditions, facilitating invasion. Finally, watering treatment and seed density interacted strongly in determining seedling survival: while seedling mortality was close to 100% in ambient and winter water addition plots, survivor numbers increased with seed density in spring-watered plots. Thus, decreased abiotic resistance can amplify the effect of increased propagule density on seedling establishment, thereby increasing the likelihood of invasion.


Editor, Jessica Gurevitch Manuscript received 13 June 2005 First decision made 25 July 2005 Second decision made 1 October 2005 Manuscript accepted 19 October 2005

DIGITAL OBJECT IDENTIFIER (DOI)
10.1111/j.1461-0248.2005.00857.x About DOI

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