ShipleyKeddyGaudetEtAl1991

Référence

Shipley, B., Keddy, P.A., Gaudet, C. and Moore, D.R.J. (1991) A model of species density in shoreline vegetation. Ecology, 72(5):1658-1667.

Résumé

Presents a regression model of species density on a 0.25 m2 scale for the vegetation of freshwater shorelines in SW Quebec. Amount of aboveground biomass and the proportion of the vegetation composed of obligate perennial species together predicted 76% of the variation in species density. Competitive intensity, as reflected in biomass levels, and the time elapsed since the last disturbance event, as reflected in the proportion of the vegetation composed of obligate perennials, are probably important determinants of local variation in species density. -from Authors

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@ARTICLE { ShipleyKeddyGaudetEtAl1991,
    AUTHOR = { Shipley, B. and Keddy, P.A. and Gaudet, C. and Moore, D.R.J. },
    TITLE = { A model of species density in shoreline vegetation },
    JOURNAL = { Ecology },
    YEAR = { 1991 },
    VOLUME = { 72 },
    PAGES = { 1658-1667 },
    NUMBER = { 5 },
    NOTE = { 00129658 (ISSN) Cited By (since 1996): 41 Export Date: 26 April 2007 Source: Scopus Language of Original Document: English },
    ABSTRACT = { Presents a regression model of species density on a 0.25 m2 scale for the vegetation of freshwater shorelines in SW Quebec. Amount of aboveground biomass and the proportion of the vegetation composed of obligate perennial species together predicted 76% of the variation in species density. Competitive intensity, as reflected in biomass levels, and the time elapsed since the last disturbance event, as reflected in the proportion of the vegetation composed of obligate perennials, are probably important determinants of local variation in species density. -from Authors },
    KEYWORDS = { shoreline vegetation species density wetland Canada, Quebec },
    OWNER = { brugerolles },
    TIMESTAMP = { 2007.12.05 },
}

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