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Forest resilience to drought varies across biomes

生物群落 常绿 地中海气候 归一化差异植被指数 温带气候 温带森林 温带雨林 每年落叶的 气候变化 地理 生态学 温带落叶林 干旱 抗性(生态学) 农林复合经营 环境科学 生态系统 生物
作者
Antonio Gazol,J. Julio Camarero,Sergio M. Vicente‐Serrano,Raúl Sánchez‐Salguero,Emília Gutiérrez,Martı́n De Luı́s,Gabriel Sangüesa‐Barreda,Klemen Novak,Vicente Rozas,Pedro A. Tíscar,Juan Carlos Linares,Natalia Martín‐Hernández,Edurne Martínez del Castillo,Montse Ribas,Ignacio García‐González,Fernando Silla,Álvaro Camisón,Mar Génova,José Miguel Olano,Luis Alberto Longares Aladrén
出处
期刊:Global Change Biology [Wiley]
卷期号:24 (5): 2143-2158 被引量:353
标识
DOI:10.1111/gcb.14082
摘要

Abstract Forecasted increase drought frequency and severity may drive worldwide declines in forest productivity. Species‐level responses to a drier world are likely to be influenced by their functional traits. Here, we analyse forest resilience to drought using an extensive network of tree‐ring width data and satellite imagery. We compiled proxies of forest growth and productivity ( TRW i, absolutely dated ring‐width indices; NDVI , Normalized Difference Vegetation Index) for 11 tree species and 502 forests in Spain corresponding to Mediterranean, temperate, and continental biomes. Four different components of forest resilience to drought were calculated based on TRW i and NDVI data before, during, and after four major droughts (1986, 1994–1995, 1999, and 2005), and pointed out that TRW i data were more sensitive metrics of forest resilience to drought than NDVI data. Resilience was related to both drought severity and forest composition. Evergreen gymnosperms dominating semi‐arid Mediterranean forests showed the lowest resistance to drought, but higher recovery than deciduous angiosperms dominating humid temperate forests. Moreover, semi‐arid gymnosperm forests presented a negative temporal trend in the resistance to drought, but this pattern was absent in continental and temperate forests. Although gymnosperms in dry Mediterranean forests showed a faster recovery after drought, their recovery potential could be constrained if droughts become more frequent. Conversely, angiosperms and gymnosperms inhabiting temperate and continental sites might have problems to recover after more intense droughts since they resist drought but are less able to recover afterwards.
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