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在遗传和树木年代学研究中,栓皮栎(L.)对不利环境条件的响应。

Response of Pedunculate Oak ( L.) to Adverse Environmental Conditions in Genetic and Dendrochronological Studies.

作者信息

Krutovsky Konstantin V, Popova Anna A, Yakovlev Igor A, Yanbaev Yulai A, Matveev Sergey M

机构信息

Department of Forest Genetics and Forest Tree Breeding, Georg-August University of Göttingen, 37077 Göttingen, Germany.

Center for Integrated Breeding Research, Georg-August University of Göttingen, 37075 Göttingen, Germany.

出版信息

Plants (Basel). 2025 Jan 2;14(1):109. doi: 10.3390/plants14010109.

Abstract

Pedunculate oak ( L.) is widely distributed across Europe and serves critical ecological, economic, and recreational functions. Investigating its responses to stressors such as drought, extreme temperatures, pests, and pathogens provides valuable insights into its capacity to adapt to climate change. Genetic and dendrochronological studies offer complementary perspectives on this adaptability. Tree-ring analysis (dendrochronology) reveals how has historically responded to environmental stressors, linking growth patterns to specific conditions such as drought or temperature extremes. By examining tree-ring width, density, and dynamics, researchers can identify periods of growth suppression or enhancement and predict forest responses to future climatic events. Genetic studies further complement this by uncovering adaptive genetic diversity and inheritance patterns. Identifying genetic markers associated with stress tolerance enables forest managers to prioritize the conservation of populations with higher adaptive potential. These insights can guide reforestation efforts and support the development of climate-resilient oak populations. By integrating genetic and dendrochronological data, researchers gain a holistic understanding of 's mechanisms of resilience. This knowledge is vital for adaptive forest management and sustainable planning in the face of environmental challenges, ultimately helping to ensure the long-term viability of oak populations and their ecosystems. The topics covered in this review are very broad. We tried to include the most relevant, important, and significant studies, but focused mainly on the relatively recent Eastern European studies because they include the most of the species' area. However, although more than 270 published works have been cited in this review, we have, of course, missed some published studies. We apologize in advance to authors of those relevant works that have not been cited.

摘要

欧洲栓皮栎(Quercus robur L.)广泛分布于欧洲,具有重要的生态、经济和休闲功能。研究其对干旱、极端温度、害虫和病原体等压力源的反应,有助于深入了解其适应气候变化的能力。遗传研究和树木年代学研究为这种适应性提供了互补的视角。树木年轮分析(树木年代学)揭示了栓皮栎在历史上如何应对环境压力源,将生长模式与干旱或极端温度等特定条件联系起来。通过检查树木年轮的宽度、密度和动态变化,研究人员可以确定生长受抑制或增强的时期,并预测森林对未来气候事件的反应。遗传研究通过揭示适应性遗传多样性和遗传模式进一步补充了这一点。识别与抗逆性相关的遗传标记,使森林管理者能够优先保护具有较高适应潜力的种群。这些见解可以指导重新造林工作,并支持培育适应气候变化的栎树种群。通过整合遗传和树木年代学数据,研究人员对栓皮栎的恢复机制有了全面的了解。面对环境挑战,这些知识对于适应性森林管理和可持续规划至关重要,最终有助于确保栎树种群及其生态系统的长期生存能力。本综述涵盖的主题非常广泛。我们试图纳入最相关、最重要和最有意义的研究,但主要集中在相对较新的东欧研究,因为这些研究涵盖了该物种分布区域的大部分。然而,尽管本综述引用了270多篇已发表的作品,但我们当然还是遗漏了一些已发表的研究。我们在此向那些未被引用的相关作品的作者表示歉意。

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