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Silver fir and Douglas fir are more tolerant to extreme droughts than Norway spruce in south-western Germany

机译:银杉和道格拉斯冷杉比德国西南部的挪威云杉更容易耐受极端干旱

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Improving our understanding of the potential of forest adaptation is an urgent task in the light of predicted climate change. Long-term alternatives for susceptible yet economically important tree species such as Norway spruce (Picea abies) are required, if the frequency and intensity of summer droughts will continue to increase. Although Silver fir (Abies alba) and Douglas fir (Pseudotsuga menziesii) have both been described as drought-tolerant species, our understanding of their growth responses to drought extremes is still limited. Here, we use a dendroecological approach to assess the resistance, resilience, and recovery of these important central Europe to conifer species the exceptional droughts in 1976 and 2003. A total of 270 trees per species were sampled in 18 managed mixed-species stands along an altitudinal gradient (400-1200 m a.s.l.) at the western slopes of the southern and central Black Forest in southwest Germany. While radial growth in all species responded similarly to the 1976 drought, Norway spruce was least resistant and resilient to the 2003 summer drought. Silver fir showed the overall highest resistance to drought, similarly to Douglas fir, which exhibited the widest growth rings. Silver fir trees from lower elevations were more drought prone than trees at higher elevations. Douglas fir and Norway spruce, however, revealed lower drought resilience at higher altitudes. Although the 1976 and 2003 drought extremes were quite different, Douglas fir maintained consistently the highest radial growth. Although our study did not examine population-level responses, it clearly indicates that Silver fir and Douglas fir are generally more resistant and resilient to previous drought extremes and are therefore suitable alternatives to Norway spruce; Silver fir more so at higher altitudes. Cultivating these species instead of Norway spruce will contribute to maintaining a high level of productivity across many Central European mountain forests under future climate change.
机译:提高我们对森林适应潜力的理解是鉴于预测气候变化的紧急任务。如果夏季干旱的频率和强度将继续增加,则需要长期易受影响且经济上重要的树种等挪威云杉(Picea Abies)等重要的树种。虽然Silver FIR(Abies Alba)和Douglas FIR(假醉岛脑膜)被描述为耐旱性物种,但我们对其生长对干旱极端的影响仍然有限。在这里,我们使用一种分型方法来评估这些重要的中欧的抵抗力,韧性和恢复到1976年和2003年的特殊干旱。每种物种中共有270棵树,18个管理的混合物种兼容在德国西南部的南部和中央黑森林的西斜坡的高度梯度(400-1200米ASL)。虽然所有物种的径向增长与1976年的干旱相似,但挪威云杉对2003年夏季干旱的抗药性最不抵抗和有弹性。 Silver FIR表明对干旱的总体抵抗力,类似于道格拉斯冷杉,这表现出最宽的增长环。来自较低海拔的银色杉木树比较高海拔俯卧期更易于树木。然而,道格拉斯冷杉和挪威云杉揭示了较高海拔的较低的干旱弹性。虽然1976年和2003年的极端干旱极其不同,但道格拉斯奥尔队保持始终如一的径向增长。虽然我们的研究没有审查人口级的反应,但它清楚地表明银杉和道格拉斯冷杉通常对以前的干旱极端更具抗性和有弹性,因此是挪威云杉的合适替代品;银色冷却更高的高度。培养这些物种而不是挪威云杉将有助于在未来的气候变化下维持许多中欧山区森林的高水平。

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