霍尔姆橡树(Quercus ilex L.)对地中海气候的木质部发生反应

Forests Pub Date : 2024-08-08 DOI:10.3390/f15081386
Iqra Liyaqat, A. Balzano, F. Niccoli, J. P. Kabala, M. Merela, G. Battipaglia
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引用次数: 0

摘要

栎树(Quercus ilex L.)是地中海盆地西部和中部的一种典型常绿栎树,由于热浪和干旱事件的严重程度和频率增加,栎树正面临衰退和枯死。研究木质部生成(木材形成过程)对于了解树木如何通过二次生长来应对环境条件和压力事件至关重要。本研究旨在描述栎树的木质部形成动态及其与长期干旱地区气象条件的关系。研究人员在维苏威国家公园(意大利南部)的一片栎树林中,于2019年和2020年的生长季节监测了栎树的逆生活动和木质部细胞的生成。结果表明,温度和太阳辐射在刺激木质部细胞生成方面起着重要作用。事实上,相关测试表明,温度和太阳辐射对生长和细胞发育有积极影响,而降水则对次生壁的形成有抑制作用。与2019年相比,2020年的细胞成熟期提前,这凸显了全球变暖趋势的影响。总体而言,所研究的树木表现出良好的健康状况、生长和对当地环境波动的适应能力。这项研究为了解这种地中海关键树种的年内生长动态及其对气候变异的适应策略提供了新的视角,这对气候变化背景下的森林管理至关重要。
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Xylogenesis Responses to a Mediterranean Climate in Holm Oak (Quercus ilex L.)
Quercus ilex L., an evergreen oak species typical of the western and central Mediterranean basin, is facing decline and dieback episodes due to the increase in the severity and frequency of heat waves and drought events. Studying xylogenesis (the wood formation process) is crucial for understanding how trees respond with their secondary growth to environmental conditions and stress events. This study aimed to characterize the wood formation dynamics of Quercus ilex and their relationship with the meteorological conditions in an area experiencing prolonged drought periods. Cambial activity and xylem cell production were monitored during the 2019 and 2020 growing seasons in a Q. ilex forest located at the Vesuvius National Park (southern Italy). The results highlighted the significant roles of temperature and solar radiation in stimulating xylogenesis. Indeed, the correlation tests revealed that temperature and solar radiation positively influenced growth and cell development, while precipitation had an inhibitory effect on secondary wall formation. The earlier cell maturation in 2020 compared to 2019 underscored the impact of global warming trends. Overall, the trees studied demonstrated good health, growth and adaptability to local environmental fluctuations. This research provides novel insights into the intra-annual growth dynamics of this key Mediterranean species and its adaptation strategies to climatic variability, which will be crucial for forest management in the context of climate change.
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