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Microclimate moderates plant responses to macroclimate warming

机译:小气候减轻了植物对大气候变暖的反应

摘要

Recent global warming is acting across marine, freshwater, and terrestrial ecosystems to favor species adapted to warmer conditions and/or reduce the abundance of cold-adapted organisms (i.e., “thermophilization” of communities). Lack of community responses to increased temperature, however, has also been reported for several taxa and regions, suggesting that “climatic lags” may be frequent. Here we show that microclimatic effects brought about by forest canopy closure can buffer biotic responses to macroclimate warming, thus explaining an apparent climatic lag. Using data from 1,409 vegetation plots in European and North American temperate forests, each surveyed at least twice over an interval of 12–67 y, we document significant thermophilization of ground-layer plant communities. These changes reflect concurrent declines in species adapted to cooler conditions and increases in species adapted to warmer conditions. However, thermophilization, particularly the increase of warm-adapted species, is attenuated in forests whose canopies have become denser, probably reflecting cooler growing-season ground temperatures via increased shading. As standing stocks of trees have increased in many temperate forests in recent decades, local microclimatic effects may commonly be moderating the impacts of macroclimate warming on forest understories. Conversely, increases in harvesting woody biomass—e.g., for bioenergy—may open forest canopies and accelerate thermophilization of temperate forest biodiversity.
机译:最近的全球变暖正在海洋,淡水和陆地生态系统中起作用,以支持适应更暖条件和/或减少大量适应寒冷的生物(即社区的“热身”)的物种。然而,也有报道称,一些分类群和地区缺乏社区对温度升高的反应,这表明“气候滞后”可能是经常发生的。在这里,我们表明,森林冠层封闭带来的微气候影响可以缓冲生物对大气候变暖的响应,从而解释了明显的气候滞后。使用来自欧洲和北美温带森林的1,409个植被样地的数据,每个样地在12-67年的间隔内至少进行了两次调查,我们记录了地表植物群落的显着热化作用。这些变化反映了适应较凉条件的物种同时减少,而适应较热条件的物种同时增加。但是,在树冠变得更密的森林中,热化作用,特别是适应气候变化的物种的增加,被减弱了,这可能是由于阴影增加而导致生长季节的地温较低。近几十年来,随着许多温带森林树木的立木蓄积量增加,局部的小气候影响通常可能会减弱宏观气候变暖对森林底层林木的影响。相反,增加木材生物量的采伐(例如,用于生物能源)可能会打开林冠层并加速温带森林生物多样性的高温化。

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