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    Assessing the Potential of Pinyon Pine for Climate Reconstructions in Eastern California

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    Author
    Wilding, T.
    Woodhouse, C.
    Issue Date
    2017-01
    Keywords
    bristlecone pine
    California
    climate
    paleoclimate
    Pinyon pine
    
    Metadata
    Show full item record
    Citation
    Wilding, T., & Woodhouse, C. (2017). Assessing the Potential of Pinyon Pine for Climate Reconstructions in Eastern California. Tree-Ring Research, 73(1), 11–23.
    Publisher
    Tree-Ring Society
    Journal
    Tree-Ring Research
    URI
    http://hdl.handle.net/10150/667364
    DOI
    10.3959/1536-1098-73.1.11
    Additional Links
    http://www.treeringsociety.org
    Abstract
    This paper documents a pilot study investigating the potential use of pinyon pine (Pinus monophylla Torr. & Frem) growing in the White Mountains of eastern California for climate reconstructions. The single-leaf pinyon pine from this study exhibit a significant and stable relationship with annual (August-July) precipitation over the instrumental record (r = 0.69). This relationship is stronger than that of the lower forest border bristlecone pine (Pinus longaeva) growing nearby. Spatially, the climate-growth relationship remains strong beyond this localized region, extending over Southern California. Although pinyon pine is not as long lived as the bristlecone pine, these results indicate that the strength of the climate-growth relationship makes this species valuable in developing climate reconstructions in the future. Additionally, the presence of persistent remnant wood at all sampling sites offers an opportunity to extend pinyon records further back in time. Furthermore, the close proximity of pinyon pine to bristlecone pine at these sites presents the possibility of developing multi-species reconstructions using both species. © 2017 by The Tree-Ring Society.
    Type
    Article
    text
    Language
    en
    ISSN
    1536-1098
    EISSN
    2162-4585
    ae974a485f413a2113503eed53cd6c53
    10.3959/1536-1098-73.1.11
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    Tree-Ring Research, Volume 73, Issue 1 (Jan 2017)

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