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Adaptation of lodgepole pine and interior spruce to climate: implications for reforestation in a warming world

机译:黑松和室内云杉适应气候:在变暖的世界中重新造林的意义

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摘要

We investigated adaptation to climate in populations of two widespread tree species across a range of contrasting environments in western Canada. In a series of common garden experiments, bud phenology, cold hardiness, and seedling growth traits were assessed for 254 populations in the interior spruce complex (Picea glauca, P. engelmannii, and their hybrids) and for 281 populations of lodgepole pine (Pinus contorta). Complex multitrait adaptations to different ecological regions such as boreal, montane, coastal, and arid environments accounted for 15–20% of the total variance. This population differentiation could be directly linked to climate variables through multivariate regression tree analysis. Our results suggest that adaptation to climate does not always correspond linearly to temperature gradients. For example, opposite trait values (e.g., early versus late budbreak) may be found in response to apparently similar cold environments (e.g., boreal and montane). Climate change adaptation strategies may therefore not always be possible through a simple shift of seed sources along environmental gradients. For the two species in this study, we identified a relatively small number of uniquely adapted populations (11 for interior spruce and nine for lodgepole pine) that may be used to manage adaptive variation under current and expected future climates.
机译:我们调查了加拿大西部一系列不同环境中两种广泛树种种群对气候的适应性。在一系列常见的花园实验中,评估了室内云杉复合体(Picea glauca,P.engelmannii及其杂种)中的254个种群和黑松(Pinus contorta)的281个种群的芽物候,耐寒性和幼苗生长性状。 )。对不同生态区域(如北方,山区,沿海和干旱环境)的复杂多特征适应占总方差的15%至20%。通过多元回归树分析,这种人口分化可以直接与气候变量联系起来。我们的结果表明,对气候的适应并不总是与温度梯度线性相关。例如,响应明显相似的寒冷环境(例如,北方和山地),可以发现相反的性状值(例如,早期与晚期芽爆发)。因此,通过沿环境梯度简单地改变种子来源,不一定总是能够适应气候变化。对于本研究中的两个物种,我们确定了相对少量的独特适应种群(内部云杉11个,寄宿松9个),可用于管理当前和预期未来气候下的适应性变化。

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