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Growth responses of three coexisting conifer species to climate variables across a range of climate conditions.

机译:三种共存的针叶树种在各种气候条件下对气候变量的生长响应。

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摘要

Tree ring analyses and an interpolated climate model (ClimateBC) were used to compare radial growth responses to climate variables among three coexisting, ecologically distinct conifer species, including interior spruce (Picea glauca x Picea Engelmannii), lodgepole pine (Pinus contorta var. latifolia) and subalpine fir (Abies lasiocarpa) across a range of climate conditions in western Canada, and altitudinal treelines in the Engelmann Spruce-Subalpine Fir forests in central British Columbia (BC). Ring-width chronologies were developed and correlated with site-specific climate data in the past 50 years from 1953-2002. June-July temperature appeared to be the dominant climate factor influencing radial growth of spruce across the sample sites, and the relationships changed from positive to negative as summer site temperature increased. Growth-climate relationships of lodgepole pine and subalpine fir varied within species. October-March temperatures appeared to be important for growth of lodgepole pine and subalpine fir at colder sites in BC. The Pacific Decadal Oscillation during October and March was also important for pine and fir at altitudinal treelines. Given the species- and site-specific growth responses to climate, future climate change will likely alter interactions among coexisting species, potentially leading to changes in species dominance, compositions and distribution of forest communities.--P.ii.
机译:使用树环分析和内插气候模型(ClimateBC)比较了三种共存的,生态学上不同的针叶树种(包括室内云杉(Picea glauca x Picea Engelmannii),黑毛松(Pinus contorta var。latifolia))对气候变量的径向增长响应。以及加拿大西部一系列气候条件下的亚高山冷杉(Abies lasiocarpa),以及不列颠哥伦比亚省中部的恩格尔曼云杉-亚高山冷杉森林的垂直树线。在1953年至2002年的过去50年中,开发了环宽年表并将其与特定地点的气候数据相关联。 6-7月的温度似乎是影响整个采样点云杉径向生长的主要气候因子,随着夏季站点温度的升高,关系从正向变为负。黑松和亚高山冷杉的生长-气候关系在物种内变化。十月至三月的温度对于卑诗省较冷地点的黑松和亚高山冷杉生长很重要。十月和三月期间的太平洋年代际涛动对于高海拔树线的松树和冷杉也很重要。鉴于特定物种和特定地点对气候的生长反应,未来的气候变化可能会改变共存物种之间的相互作用,从而可能导致物种优势度,森林群落组成和分布的变化。

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