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The Influence of Recent Climate Change on Tree Height Growth Differs with Species and Spatial Environment

机译:近期气候变化对不同树种和空间环境树高生长的影响

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摘要

Tree growth has been reported to increase in response to recent global climate change in controlled and semi-controlled experiments, but few studies have reported response of tree growth to increased temperature and atmospheric carbon dioxide (CO2) concentration in natural environments. This study addresses how recent global climate change has affected height growth of trembling aspen (Populus tremuloides Michx) and black spruce (Picea mariana Mill B.S.) in their natural environments. We sampled 145 stands dominated by aspen and 82 dominated by spruce over the entire range of their distributions in British Columbia, Canada. These stands were established naturally after fire between the 19th and 20th centuries. Height growth was quantified as total heights of sampled dominant and co-dominant trees at breast-height age of 50 years. We assessed the relationships between 50-year height growth and environmental factors at both spatial and temporal scales. We also tested whether the tree growth associated with global climate change differed with spatial environment (latitude, longitude and elevation). As expected, height growth of both species was positively related to temperature variables at the regional scale and with soil moisture and nutrient availability at the local scale. While height growth of trembling aspen was not significantly related to any of the temporal variables we examined, that of black spruce increased significantly with stand establishment date, the anomaly of the average maximum summer temperature between May-August, and atmospheric CO2 concentration, but not with the Palmer Drought Severity Index. Furthermore, the increase of spruce height growth associated with recent climate change was higher in the western than in eastern part of British Columbia. This study demonstrates that the response of height growth to recent climate change, i.e., increasing temperature and atmospheric CO2 concentration, did not only differ with tree species, but also their growing spatial environment.
机译:据报道,在受控和半受控的实验中,树木的生长响应最近的全球气候变化而增加,但是很少有研究报道树木的生长对自然环境中温度升高和大气中二氧化碳(CO2)浓度的响应。这项研究探讨了最近的全球气候变化如何在自然环境中影响颤抖的白杨(Populus tremuloides Michx)和黑云杉(Picea mariana Mill B.S.)的高度增长。在加拿大不列颠哥伦比亚省的整个分布范围内,我们对145个以白杨为主的林分和82个以云杉为主的林分进行了采样。这些林分是在19世纪和20世纪之间自然燃烧后建立的。高度增长量化为在50岁胸高年龄下采样的优势树和共优势树的总高度。我们在空间和时间尺度上评估了50年身高增长与环境因素之间的关系。我们还测试了与全球气候变化相关的树木生长是否随空间环境(纬度,经度和海拔)而不同。正如预期的那样,这两个物种的高度增长与区域尺度的温度变量以及局部尺度的土壤水分和养分供应量呈正相关。虽然颤抖的白杨的高度增长与我们研究的任何时间变量均无显着相关,但黑云杉的高度随林分建立日期,5月至8月之间的夏季平均最高温度和大气CO2浓度的异常而显着增加,但与大气CO2浓度无关。帕尔默干旱严重性指数。此外,与最近的气候变化相关的云杉高度增长的增加在不列颠哥伦比亚省的西部要高于东部。这项研究表明,身高增长对近期气候变化的响应,即温度和大气中CO2浓度的增加不仅与树种有所不同,而且与树木生长的空间环境也不同。

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