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    Competitive Strength Effect in the Climate Response of Scots Pine Radial Growth in South-Central Siberia Forest-Steppe

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    Author
    Babushkina, E.A.
    Vaganov, E.A.
    Belokopytova, L.V.
    Shishov, V.V.
    Grachev, A.M.
    Issue Date
    2015-07
    Keywords
    age trend
    climate response
    cluster analysis
    competitive strength
    forest-steppe zone
    Scots pine
    tree-ring width
    
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    Citation
    Elena A. Babushkina, Eugene A. Vaganov, Liliana V. Belokopytova, Vladimir V. Shishov, and Alexi M. Grachev "Competitive Strength Effect In the Climate Response of Scots Pine Radial Growth In South-Central Siberia Forest-Steppe," Tree-Ring Research 71(2), 106-117, (1 July 2015).
    Publisher
    Tree Ring Society
    Journal
    Tree-Ring Research
    URI
    http://hdl.handle.net/10150/656873
    DOI
    10.3959/1536-1098-71.2.106
    Additional Links
    http://www.treeringsociety.org
    Abstract
    This paper presents a method for classification of trees in groups depending on parameters of the age trend in tree-ring width. The method is tested on a sample containing 194 trees of Scots pine (Pinus sylvestris L.) growing in the forest-steppe zone of the South of Central Siberia. The climatic response of tree-ring width in such climatic conditions is complex. The influence of temperature in May-September is negative (moisture reducing). Warm-season precipitation serving as a source of moisture is a positive factor. Another positive factor is cold-season precipitation as frost protection. We determined the dependence of this response on the local conditions (soil, landscape and anthropogenic factors). The competitive strength of the trees influences both the sensitivity of individual trees to extreme climatic factors and the timing of growth processes. The latter implies the duration of the period of significant response to climate. It appears promising to take this influence into account in dendroclimatic reconstructions by using separate clusters of trees based on the competitive strength and having the maximum response to the reconstructed factor. Copyright © 2015 by The Tree-Ring Society.
    Type
    Article
    text
    Language
    en
    ISSN
    1536-1098
    EISSN
    2162-4585
    ae974a485f413a2113503eed53cd6c53
    10.3959/1536-1098-71.2.106
    Scopus Count
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    Tree-Ring Research, Volume 71, Issue 2 (Jul 2015)

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