Contrasting patterns of water use efficiency and annual radial growth among European beech forests along the Italian peninsula

Scientific Reports(2024)

引用 0|浏览0
暂无评分
摘要
Tree mortality and forest dieback episodes are increasing due to drought and heat stress. Nevertheless, a comprehensive understanding of mechanisms enabling trees to withstand and survive droughts remains lacking. Our study investigated basal area increment (BAI), and δ 13 C-derived intrinsic water-use-efficiency ( i WUE), to elucidate beech resilience across four healthy stands in Italy with varying climates and soil water availability. Additionally, fist-order autocorrelation (AR1) analysis was performed to detect early warning signals for potential tree dieback risks during extreme drought events. Results reveal a negative link between BAI and vapour pressure deficit (VPD), especially in southern latitudes. After the 2003 drought, BAI decreased at the northern site, with an increase in δ 13 C and i WUE, indicating conservative water-use. Conversely, the southern sites showed increased BAI and i WUE, likely influenced by rising CO 2 and improved water availability. In contrast, the central site sustained higher transpiration rates due to higher soil water holding capacity (SWHC). Despite varied responses, most sites exhibited reduced resilience to future extreme events, indicated by increased AR1. Temperature significantly affected beech i WUE and BAI in northern Italy, while VPD strongly influenced the southern latitudes. The observed increase in BAI and i WUE in southern regions might be attributed to an acclimation response.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要