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Experimental warming alters spring phenology of certain plant functional groups in an early successional forest community.

机译:实验性变暖改变了早期演替森林群落中某些植物功能群的春季物候。

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Experimental study of the effects of projected climate change on plant phenology allows us to isolate effects of warming on life-history events such as leaf out. We simulated a 2 degrees C temperature increase and 20% precipitation increase in a recently harvested temperate deciduous forest community in central Pennsylvania, USA, and observed the leaf out phenology of all species in 2009 and 2010. Over 130 plant species were monitored weekly in study plots, but due to high variability in species composition among plots, species were grouped into five functional groups: short forbs, tall forbs, shrubs, small trees, and large trees. Tall forbs and large trees, which usually emerge in the late spring, advanced leaf out 14-18 days in response to warming. Short forbs, shrubs, and small trees emerge early in spring and did not alter their phenology in response to warming or increased precipitation treatments. Earlier leaf out of tall forbs and large trees coincided with almost 3 weeks of increased community-level leaf area index, indicating greater competition and a condensed spring green-up period. While phenology of large trees and tall forbs appears to be strongly influenced by temperature-based growth cues, our results suggest that photoperiod and chilling cues more strongly influence the leaf out of other functional groups. Reduced freeze events and warmer temperatures from predicted climate change will interact with nontemperature growth cues to have cascading consequences throughout the ecosystem
机译:对预计的气候变化对植物物候的影响进行的实验研究使我们能够分离出变暖对生活史事件(例如出叶)的影响。我们模拟了美国宾夕法尼亚州中部最近收获的温带落叶森林群落中2摄氏度的温度升高和20%的降水增加,并观察了2009年和2010年所有物种的叶片物候。在研究中,每周监测130多种植物地块,但由于地块之间物种组成的高度可变性,物种可分为五个功能组:短前缘,高前缘,灌木,小乔木和大乔木。通常在春季末期出现的高大的前叉和大树,随着变暖而提前14-18天出叶。短的前叉,灌木和小乔木在春季初出现,并且不会因变暖或增加的降雨处理而改变其物候。高大的前叉和大乔木中较早的叶​​子恰好与近三周的社区级叶子面积指数增加吻合,表明竞争加剧,春季绿化期缩短。虽然大树和高大的树的物候似乎受到基于温度的生长线索的强烈影响,但我们的结果表明,光周期和寒冷的线索更强烈地影响了其他功能组的叶片。减少的冰冻事件和可预测的气候变化带来的较高温度将与非温度增长线索相互作用,从而在整个生态系统中产生连锁反应

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