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- W2018176752 abstract "MEPS Marine Ecology Progress Series Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsTheme Sections MEPS 332:41-51 (2007) - doi:10.3354/meps332041 Differentiating successful and failed molluscan invaders in estuarine ecosystems A. Whitman Miller1,*, Gregory M. Ruiz1, Mark S. Minton1, Richard F. Ambrose2 1Smithsonian Environmental Research Center, PO Box 28, Edgewater, Maryland 21037, USA 2Environmental Science and Engineering Program, Box 951772, University of California, Los Angeles, California 90095, USA *Email: millerw@si.edu ABSTRACT: Despite mounting evidence of invasive species impacts on the environment and society, our ability to predict invasion establishment, spread, and impact are inadequate. Efforts to explain and predict invasion outcomes have been limited primarily to terrestrial and freshwater ecosystems. Invasions are also common in coastal marine ecosystems, yet to date predictive marine invasion models are absent. Here we present a model based on biological attributes associated with invasion success (establishment) of marine molluscs that compares successful and failed invasions from a group of 93 species introduced to San Francisco Bay (SFB) in association with commercial oyster transfers from eastern North America (ca. 1869 to 1940). A multiple logistic regression model correctly classified 83% of successful and 80% of failed invaders according to their source region abundance at the time of oyster transfers, tolerance of low salinity, and developmental mode. We tested the generality of the SFB invasion model by applying it to 3 coastal locations (2 in North America and 1 in Europe) that received oyster transfers from the same source and during the same time as SFB. The model correctly predicted 100, 75, and 86% of successful invaders in these locations, indicating that abundance, environmental tolerance (ability to withstand low salinity), and developmental mode not only explain patterns of invasion success in SFB, but more importantly, predict invasion success in geographically disparate marine ecosystems. Finally, we demonstrate that the proportion of marine molluscs that succeeded in the latter stages of invasion (i.e. that establish self-sustaining populations, spread and become pests) is much greater than has been previously predicted or shown for other animals and plants. KEY WORDS: Invasion · Bivalve · Gastropod · Mollusc · Marine · Oyster · Vector · Risk assessment Full text in pdf format Supplementary appendices: Appendix 1, Appendix 2 PreviousNextExport citation Mail this link - Contents Mailing Lists - RSS Facebook - Tweet - linkedIn Cited by Published in MEPS Vol. 332. Online publication date: March 05, 2007 Print ISSN: 0171-8630; Online ISSN: 1616-1599 Copyright © 2007 Inter-Research." @default.
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- W2018176752 title "Differentiating successful and failed molluscan invaders in estuarine ecosystems" @default.
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- W2018176752 cites W1715925757 @default.
- W2018176752 cites W1893686298 @default.
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- W2018176752 cites W1978471631 @default.
- W2018176752 cites W1992322523 @default.
- W2018176752 cites W1997610959 @default.
- W2018176752 cites W1999681720 @default.
- W2018176752 cites W2002316904 @default.
- W2018176752 cites W2012210740 @default.
- W2018176752 cites W2061754741 @default.
- W2018176752 cites W2062672172 @default.
- W2018176752 cites W2063075184 @default.
- W2018176752 cites W2078813896 @default.
- W2018176752 cites W2082230279 @default.
- W2018176752 cites W2097264683 @default.
- W2018176752 cites W2101280078 @default.
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- W2018176752 cites W2132145325 @default.
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- W2018176752 cites W2139935302 @default.
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- W2018176752 cites W2146437164 @default.
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- W2018176752 cites W2315990401 @default.
- W2018176752 cites W2332181064 @default.
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