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    • Journal of Range Management, Volume 48 (1995)
    • Journal of Range Management, Volume 48, Number 4 (July 1995)
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    Responses of downy brome to nitrogen and water

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    Author
    Link, S. O.
    Bolton, H.
    Thiede, M. E.
    Rickard, W. H.
    Issue Date
    1995-07-01
    Keywords
    germination
    nitrogen fertilizers
    leaf area index
    Bromus tectorum
    water-use efficiency
    old field soils
    leaf conductance
    photosynthesis
    gas exchange
    water
    limiting factors
    old fields
    Washington
    biomass
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    Citation
    Link, S. O., Bolton Jr, H., Thiede, M. E., & Rickard, W. H. (1995). Responses of downy brome to nitrogen and water. Journal of Range Management, 48(4), 290-297.
    Publisher
    Society for Range Management
    Journal
    Journal of Range Management
    URI
    http://hdl.handle.net/10150/644459
    DOI
    10.2307/4002480
    Additional Links
    https://rangelands.org/
    Abstract
    Downy brome (Bromus tectorum L.) is an alien grass that dominates disturbed ground in shrub-steppe ecosystems of the western United States. Responses of downy brome to added nitrogen and water were evaluated using intact soil cores obtained from an old field. Gas exchange data were gathered at the leaf and canopy scales. Stomatal conductance and net photosynthesis rates were greater at the leaf scale than at the canopy scale, decreased with time from germination, and were weakly affected by treatments. Water-use efficiency was weakly related to time from germination and treatments. Biomass was greater in the nitrogen-plus-water (7.4 g) treatment, compared with water (3.6 g), nitrogen (4.5 g), and control (3.3 g) treatments. The leaf-area index varied like biomass at the end of the experiment. Shoot nitrogen was the same in the nitrogen (2.5%) and nitrogen-plus-water (2.5%) treatments, nearly twice the level in the control (1.5%) and water (1.3%) treatments. Nitrogen-use efficiency was highest in the control (67) and water (80) treatments and lowest in the nitrogen (41) and nitrogen-plus-water (43) treatments. The most significant conclusion of this work is that gas exchange was strongly related to the time from germination and little affected by water and nitrogen while growth characters were strongly affected only when water and nitrogen were added together.
    Type
    text
    Article
    Language
    en
    ISSN
    0022-409X
    ae974a485f413a2113503eed53cd6c53
    10.2307/4002480
    Scopus Count
    Collections
    Journal of Range Management, Volume 48, Number 4 (July 1995)

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