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Limited prospects for future alpine treeline advance in the Canadian Rocky Mountains

机译:未来高山山脉的未来Alpine Treeline推进的有限前景

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Treeline advance has occurred throughout the twentieth century in mountainous regions around the world; however, local variation and temporal lags in responses to climate warming indicate that the upper limits of some treelines are not necessarily in climatic equilibrium. These observations suggest that factors other than climate are constraining tree establishment beyond existing treelines. Using a seed addition experiment, we tested the effects of seed availability, predation and microsite limitation on the establishment of two subalpine tree species (Picea engelmannii and Abies lasiocarpa) across four treelines in the Canadian Rocky Mountains. The effect of vegetation removal on seedling growth was also determined, and microclimate conditions were monitored. Establishment limitations observed in the field were placed in context with the effects of soil properties observed in a parallel experiment. The seed addition experiment revealed reduced establishment with increasing elevation, suggesting that although establishment within the treeline ecotone is at least partially seed limited, other constraints are more important beyond the current treeline. The effects of herbivory and microsite availability significantly reduced seedling establishment but were less influential beyond the treeline. Microclimate monitoring revealed that establishment was negatively related to growing season temperatures and positively related to the duration of winter snow cover, counter to the conventional expectation that establishment is limited by low temperatures. Overall, it appears that seedling establishment beyond treeline is predominantly constrained by a combination of high soil surface temperatures during the growing season, reduced winter snowpack and unfavourable soil properties. Our study supports the assertion that seedling establishment in alpine treeline ecotones is simultaneously limited by various climatic and nonclimatic drivers. Together, these factors may limit future treeline advance in the Canadian Rocky Mountains and should be considered when assessing the potential for treeline advance in alpine systems elsewhere
机译:在世界各地的二十世纪遍布世界各地的山区进步;然而,在对气候变暖的响应中的局部变化和时间滞后表明某些前肢的上限不一定在气候平衡中。这些观察结果表明,除了气候以外的因素是超越现有自身的树木建立。使用种子加成实验,我们测试了种子可用性,捕食和微理限制对在加拿大落矶山脉的四个行程中建立了两种亚高级树种(Picea Engelmannii和Anbies Lasiocarpa)的影响。还测定了植被去除对幼苗生长的影响,并监测微气候条件。将该领域观察到的建立限制置于平行实验中的土壤特性的影响。种子加成实验揭示了升高增加的成立,表明虽然树木植物内部的建立至少部分地是种子有限的,但其他限制超出了当前的树枝内更重要。草食病和微型可用性的影响显着降低了幼苗建立,但在三灵之外的影响力较小。微气候监测显示,建立与生长季节温度呈否定,与冬季雪覆盖的持续时间呈正常相关,常规期望通过低温限制。总体而言,似乎在生长季节期间的高土壤表面温度的组合,冬季积雪和不利的土壤性质的结合主要受到树脂表面温度的组合。我们的研究支持主张,即高山树脂果实中的幼苗建立同时受各种气候和非旋涡司机的限制。这些因素可能会限制加拿大落基山脉的未来三滨进步,应当考虑在评估其他地方的高山系统中的潜力

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