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Patterns of Forest Decline and Regeneration Across Scots Pine Populations

机译:苏格兰松树种群的森林衰退和更新模式

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To predict future changes in forest ecosystems, it is crucial to understand the complex processes involved in decline of tree species populations and to evaluate the implications for potential vegetation shifts. Here, we study patterns of decline (canopy defoliation and mortality of adults) of four Scots pine populations at the southern edge of its distribution and characterized by different combinations of climate dryness and intensity of past management. General linear and structural equation modeling were used to assess how biotic, abiotic, and management components interacted to explain the spatial variability of Scots pine decline across and within populations. Regeneration patterns of Scots pine and co-occurring oak species were analyzed to assess potential vegetation shifts. Decline trends were related to climatic dryness at the regional scale, but, ultimately, within-population forest structure, local site conditions, and past human legacies could be the main underlying drivers of Scots pine decline. Overall, Scots pine regeneration was negatively related to decline both within and between populations, whereas oak species responded to decline idiosyncratically across populations. Taken together, our results suggest that (1) patterns of decline are the result of processes acting at the plot level that modulate forest responses to local environmental stress and (2) decline of adult Scots pine trees seems not to be compensated by self-recruitment so that the future dynamics of these forest ecosystems are uncertain.
机译:为了预测森林生态系统的未来变化,至关重要的是要了解树木物种数量下降所涉及的复杂过程,并评估其对潜在植被转移的影响。在这里,我们研究了分布在其南部边缘的四个苏格兰松树种群的下降模式(冠层落叶和成年人的死亡率),其特征是气候干燥和过去管理强度的不同组合。通用线性和结构方程模型用于评估生物,非生物和管理成分之间的相互作用,以解释苏格兰松在种群之间和种群内的空间变异性。分析了苏格兰松树和共生橡树种的更新模式,以评估潜在的植被转移。下降趋势与区域范围内的气候干燥有关,但最终,人口内部森林结构,当地立地条件和过去的人类遗产可能是苏格兰松树下降的主要潜在驱动力。总体而言,苏格兰松树的再生与种群内部和种群之间的下降呈负相关,而橡树物种对种群之间的下降具有独特的响应。综上所述,我们的研究结果表明,(1)下降的模式是在样地水平上调节森林对局部环境压力的响应的过程的结果;(2)苏格兰松树成年树的下降似乎无法通过自我招募来弥补因此这些森林生态系统的未来动态是不确定的。

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