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    • Journal of Range Management, Volume 53 (2000)
    • Journal of Range Management, Volume 53, Number 2 (March 2000)
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    A comparison of methods to determine plant successional stages

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    Author
    Winslow, S. R.
    Sowell, B. F.
    Issue Date
    2000-03-01
    Keywords
    seral stages
    ecological balance
    species diversity
    range condition
    ecological succession
    equations
    plant communities
    biomass
    Montana
    rangelands
    range condition
    seral stages
    plant communities
    succession
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    Citation
    Winslow, S. R., & Sowell, B. F. (2000). Technical note: A comparison of methods to determine plant successional stages. Journal of Range Management, 53(2), 194-198.
    Publisher
    Society for Range Management
    Journal
    Journal of Range Management
    URI
    http://hdl.handle.net/10150/643747
    DOI
    10.2307/4003282
    10.2458/azu_jrm_v53i2_winslow
    Additional Links
    https://rangelands.org/
    Abstract
    Twenty-six, 0.04 ha macroplots were sampled on 9 range sites in southwestern Montana to compare successional scores and condition classifications of range condition analysis and United States Forest Service (USFS) Ecodata and Ecopac (Strata) analysis methods. Range condition scores (0-100%) and range condition classes (poor, fair, good, excellent) were derived from the traditional Soil Conservation Service range condition analysis method, with the exception that only major decreaser and increaser graminoids and shrubs were individually clipped and bagged. Ecological status scores (1-100%) and ecological condition classes (low, mid, high, very high) were determined with United States Forest Service Ecodata methods. Range condition score means were greater (p < 0.02) than ecological status score means (48% vs 41%). Standing crop biomass affected differences (p < 0.001) between range condition scores and ecological status scores. Lower producing sites had greater range condition scores than ecological status scores and higher producing sites had greater ecological status scores than range condition scores. Range condition classes and ecological condition classes were not independent (p < 0.02). Differences between the 2 methods were attributable to the use of species composition by weight for the range condition analysis and the use of percent canopy cover by Ecodata methods. Rangeland managers trying to determine successional status should realize that range condition analysis and Ecodata methods produce similar condition classes but different condition scores.
    Type
    text
    Article
    Language
    en
    ISSN
    0022-409X
    ae974a485f413a2113503eed53cd6c53
    10.2307/4003282
    Scopus Count
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    Journal of Range Management, Volume 53, Number 2 (March 2000)

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