Universal growth modes of high-elevation conifers

In order to characterize the main growth modes of high-elevation conifers, such as typical variations inherent to annual tree growth records, we resolved eigen problems related to intra-record correlation coefficient matrices of several large sample sets for (A) very long-lived Chinese junipers and...

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Published in:Dendrochronologia
Main Authors: Datsenko, N. M., Sonechkin, D. M., Büntgen, U. (Ulf), Yang, B.
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:https://doi.org/10.1016/j.dendro.2016.02.004
http://hdl.handle.net/11104/0270401
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author Datsenko, N. M.
Sonechkin, D. M.
Büntgen, U. (Ulf)
Yang, B.
author_facet Datsenko, N. M.
Sonechkin, D. M.
Büntgen, U. (Ulf)
Yang, B.
author_sort Datsenko, N. M.
collection The Czech Academy of Sciences: Publication Activity (ASEP)
container_start_page 38
container_title Dendrochronologia
container_volume 38
description In order to characterize the main growth modes of high-elevation conifers, such as typical variations inherent to annual tree growth records, we resolved eigen problems related to intra-record correlation coefficient matrices of several large sample sets for (A) very long-lived Chinese junipers and (B) shorter-lived European pines and larches. Such modes allow for the identification of tree growth variations of different origins, i.e., resulting from climate and/or microenvironments as well as origins that are purely biological in nature. We determined that these modes are universal, namely, that they are identical for both ring width (RW) and maximum latewood density (MXD) records. Certain specific shapes found in these main modes were indicative of anomalous tree growth. Cross-correlations between identical modes related to RW and MXD data were determined to be nonessential. This suggests that RW and MXD data likely represent different aspects of tree growth response to varying climatic and environmental conditions. (C) 2016 Elsevier GmbH. All rights reserved.
format Article in Journal/Newspaper
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op_doi https://doi.org/10.1016/j.dendro.2016.02.004
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spelling ftczacademyscien:oai:asep.lib.cas.cz:CavUnEpca/0473235 2025-01-16T21:51:50+00:00 Universal growth modes of high-elevation conifers Datsenko, N. M. Sonechkin, D. M. Büntgen, U. (Ulf) Yang, B. 2016 https://doi.org/10.1016/j.dendro.2016.02.004 http://hdl.handle.net/11104/0270401 eng eng doi:10.1016/j.dendro.2016.02.004 urn:pissn: 1125-7865 urn:eissn: 1612-0051 http://hdl.handle.net/11104/0270401 tree-ring chronologies summer temperature-variations northeastern tibetan plateau climate signal fennoscandian summers annual precipitation density variability qinghai Growth modes Ring width and maximum latewood density Eigenvector analysis info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2016 ftczacademyscien https://doi.org/10.1016/j.dendro.2016.02.004 2024-01-09T17:38:31Z In order to characterize the main growth modes of high-elevation conifers, such as typical variations inherent to annual tree growth records, we resolved eigen problems related to intra-record correlation coefficient matrices of several large sample sets for (A) very long-lived Chinese junipers and (B) shorter-lived European pines and larches. Such modes allow for the identification of tree growth variations of different origins, i.e., resulting from climate and/or microenvironments as well as origins that are purely biological in nature. We determined that these modes are universal, namely, that they are identical for both ring width (RW) and maximum latewood density (MXD) records. Certain specific shapes found in these main modes were indicative of anomalous tree growth. Cross-correlations between identical modes related to RW and MXD data were determined to be nonessential. This suggests that RW and MXD data likely represent different aspects of tree growth response to varying climatic and environmental conditions. (C) 2016 Elsevier GmbH. All rights reserved. Article in Journal/Newspaper Fennoscandian The Czech Academy of Sciences: Publication Activity (ASEP) Dendrochronologia 38 38 50
spellingShingle tree-ring chronologies
summer temperature-variations
northeastern tibetan plateau
climate signal
fennoscandian summers
annual precipitation
density
variability
qinghai
Growth modes
Ring width and maximum latewood density
Eigenvector analysis
Datsenko, N. M.
Sonechkin, D. M.
Büntgen, U. (Ulf)
Yang, B.
Universal growth modes of high-elevation conifers
title Universal growth modes of high-elevation conifers
title_full Universal growth modes of high-elevation conifers
title_fullStr Universal growth modes of high-elevation conifers
title_full_unstemmed Universal growth modes of high-elevation conifers
title_short Universal growth modes of high-elevation conifers
title_sort universal growth modes of high-elevation conifers
topic tree-ring chronologies
summer temperature-variations
northeastern tibetan plateau
climate signal
fennoscandian summers
annual precipitation
density
variability
qinghai
Growth modes
Ring width and maximum latewood density
Eigenvector analysis
topic_facet tree-ring chronologies
summer temperature-variations
northeastern tibetan plateau
climate signal
fennoscandian summers
annual precipitation
density
variability
qinghai
Growth modes
Ring width and maximum latewood density
Eigenvector analysis
url https://doi.org/10.1016/j.dendro.2016.02.004
http://hdl.handle.net/11104/0270401