Search Results - (Author, Cooperation:J. Storkey)

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  1. 1
    J. Storkey ; A. J. Macdonald ; P. R. Poulton ; T. Scott ; I. H. Kohler ; H. Schnyder ; K. W. Goulding ; M. J. Crawley
    Nature Publishing Group (NPG)
    Published 2015
    Staff View
    Publication Date:
    2015-12-04
    Publisher:
    Nature Publishing Group (NPG)
    Print ISSN:
    0028-0836
    Electronic ISSN:
    1476-4687
    Topics:
    Biology
    Chemistry and Pharmacology
    Medicine
    Natural Sciences in General
    Physics
    Keywords:
    Air Pollution/*adverse effects/analysis ; Atmosphere/chemistry ; *Biodiversity ; Biomass ; *Environmental Restoration and Remediation ; Fabaceae/drug effects/metabolism ; Fertilizers/adverse effects/analysis ; *Grassland ; Great Britain ; Hydrogen-Ion Concentration ; Nitrogen/*adverse effects/analysis ; Parks, Recreational ; Poaceae/*classification/*drug effects/metabolism
    Published by:
    Latest Papers from Table of Contents or Articles in Press
  2. 2
    STORKEY, J

    Oxford, UK : Blackwell Science Ltd
    Published 2005
    Staff View
    ISSN:
    1365-3180
    Source:
    Blackwell Publishing Journal Backfiles 1879-2005
    Topics:
    Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes:
    Information on the response of assimilation rate to environmental factors is lacking for many less competitive weed species that need to be considered in the context of increasing farm biodiversity. A pot experiment was sown to parameterize gross assimilation rate at light saturation and initial light use efficiency for 14 common UK annual weeds and winter wheat at four leaf temperatures. Field experiments were also sown to measure inter-specific differences in specific leaf area (SLA), leaf nitrogen content and assimilation rates in the field at near-optimum temperatures. A generic relationship describing the response of assimilation rate to temperature and light using SLA and leaf nitrogen content as conversion factors successfully predicted inter-specific differences in assimilation rates in the field. This relationship could be incorporated into weed–crop competition models to predict the productivity and competitive impact of weed mixtures, including species outside the current data set. Assimilation rates at light saturation in the field were determined largely by SLA. This trait was variable between species and within a species across the growing season and needs to be well described in mechanistic competition models to accurately calculate instantaneous assimilation rates.
    Type of Medium:
    Electronic Resource
    URL:
    Articles: DFG German National Licenses