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Dendroclimatic analysis of white pine (Pinus strobus L.) using long-term provenance test sites across eastern North America

机译:白松(Pinus strobus L.)的树状气候分析,使用北美东部的长期物源测试站点

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摘要

Background: The main objective of this study was to examine the climatic sensitivity of the radial growth response of 13 eastern white pine(Pinus strobus L.) provenances planted at seven test sites throughout the northern part of the species’ native distribution in eastern North America.Methods: The test sites(i.e., Wabeno, Wisconsin, USA; Manistique, Michigan, USA; Pine River, Michigan, USA; Newaygo,Michigan, USA; Turkey Point, Ontario, Canada; Ganaraska, Ontario, Canada; and Orono, Maine, USA) examined in this study were part of a range-wide white pine provenance trial established in the early 1960 s in the eastern United States and Canada. Principal components analysis(PCA) was used to examine the main modes of variation [first(PC1) and second(PC2) principal component axes] in the standardized radial growth indices of the provenances at each test site.The year scores for PC1 and PC2 were examined in relation to an array of test site climate variables using multiple regression analysis to examine the commonality of growth response across all provenances to the climate of each test site. Provenance loadings on PC1 and PC2 were correlated with geographic parameters(i.e., latitude, longitude,elevation) and a suite of biophysical parameters associated with provenance origin location.Results: The amount of variation in radial growth explained by PC1 and PC2 ranged from 43.4% to 89.6%. Dendroclimatic models revealed that white pine radial growth responses to climate were complex and differed among sites. The key dendroclimatic relationships observed included sensitivity to high temperature in winter and summer, cold temperature in the spring and fal(i.e., beginning and end of the growing season), summer moisture stress, potential sensitivity to storminduced damage in spring and fal, and both positive and negative effects of higher winter snowfal. Separation of the loadings of provenances on principal component axes was mainly associated with temperature-related bioclimatic parameters of provenance origin at 5 of the 7 test sites close to the climate influence of the Great Lakes(i.e., Wabeno,Manistique, Pine River, Newaygo, and Turkey Point). In contrast, differences in radial growth response to climate at the Ganaraska test site, were driven more by precipitation-related bioclimatic parameters of the provenance origin location while radial growth at the easternmost Orono test site was independent of bioclimate at the provenance origin location.Conclusions: Study results suggest that genetic adaptation to temperature and precipitation regime may significantly influence radial growth performance of white pine populations selected for use in assisted migration programs to better adapt white pine to a future climate.
机译:背景:本研究的主要目的是研究在北美东部物种分布的北部的七个测试点种植的13种东部白松(Pinus strobus L.)种源的径向生长响应的气候敏感性。方法:测试地点(例如,美国威斯康星州Wabeno;美国密歇根州马尼斯蒂克;美国密歇根州派恩河;美国密歇根州Newaygo;加拿大安大略省火鸡角;加拿大安大略省加纳拉斯加;以及奥罗诺,这项研究中检验的美国缅因州是1960年代初在美国东部和加拿大建立的范围广泛的白松种源试验的一部分。使用主成分分析(PCA)来检查每个测试地点出处的标准化径向生长指数中的主要变化模式[第一(PC1)和第二(PC2)主成分轴]。PC1和PC2的年份得分使用多元回归分析,对一系列测试地点的气候变量进行了检验,以检验每个测试地点气候的所有来源的生长响应的共性。 PC1和PC2上的来源负载与地理参数(即纬度,经度,海拔)以及与来源起源位置相关的一系列生物物理参数相关。结果:PC1和PC2解释的径向生长变化量为43.4%达到89.6%。树状气候模型显示,白松对气候的径向生长响应是复杂的,并且在站点之间存在差异。观察到的主要树状气候关系包括:冬季和夏季对高温的敏感性,春季和秋季的低温(即生长季节的开始和结束),夏季水分胁迫,春季和秋季对风暴诱发的损害的潜在敏感性,以及两者较高的冬季降雪量的正面和负面影响。在主要成分轴上分离物源的负荷主要与在靠近大湖的气候影响的7个测试点中的5个中的5个源点(即Wabeno,Manistique,Pine River,Newaygo,和火鸡角)。相比之下,在Ganaraska测试地点,径向增长对气候的响应差异更多地受到与起源起源地区的降水相关的生物气候参数的驱动,而在最东部的Orono测试地点的径向增长与起源地区的生物气候无关。 :研究结果表明,对温度和降水方式的遗传适应可能会显着影响选择用于辅助移民计划以更好地使白松适应未来气候的白松种群的径向生长性能。

著录项

  • 来源
    《森林生态系统:英文版》 |2018年第003期|P.221-235|共15页
  • 作者单位

    Division of Forestry and Natural Resources, West Virginia University;

    USDA Forest Service, Northern Research Station;

    Ontario Forest Research Institute;

    Division of Forestry and Natural Resources, West Virginia University;

    USDA Forest Service, Northern Research Station;

    Ontario Forest Research Institute;

    Division of Forestry and Natural Resources, West Virginia University;

    USDA Forest Service, Northern Research Station;

    Ontario Forest Research Institute;

    Division of Forestry and Natural Resources, West Virginia University;

    USDA Forest Service, Northern Research Station;

    Ontario Forest Research Institute;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 松;
  • 关键词

  • 入库时间 2022-08-19 04:25:11
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