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Springtime in the city: exotic shrubs promote earlier greenup in urban forests

机译:城市的春天:异国情调的灌木促使城市森林更早地绿化

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Despite the widespread recognition that urban areas are frequently dominated by exotic and invasive plants, the consequences of these changes in community structure have not been explicitly considered as an explanation for the pattern of advanced leaf phenology, or early greenup, reported in many urban areas. As such, we evaluated two hypotheses that could account for advanced greenup in forests along an urban to rural gradient: advanced phenology within individual species or differences in woody plant community. We monitored the spring leafing phenology of Aesculus glabra (Ohio buckeye), Lonicera maackii (Amur honeysuckle), and Acer negundo (box elder) in 11 forests spanning an urban to rural gradient in central Ohio, USA. From February to April 2006, we monitored these species, recorded woody plant composition, and documented daily minimum and maximum temperatures at each site. We found a weak but general trend of advanced phenology within species in more urban landscapes. Monthly average minimum temperatures were higher with increasing urbanization while monthly average maximum temperatures were similar across the urban to rural gradient. We also found evidence for shifts in woody plant communities along the urbanization gradient, mainly driven by the abundance of L. maackii, an invasive exotic species, in the more urban forests. Because L. maackii leafs out weeks earlier than native woody species and is very abundant in urban forests, we suggest that the invasion of forests by this species can generate earlier greenup of urban forests.
机译:尽管人们普遍认识到城市地区经常以外来和入侵植物为主,但许多城市地区尚未报道将这些群落结构变化的后果明确解释为高级叶片物候或早期绿化模式的解释。因此,我们评估了两个假说,这些假说可以解释沿城市到农村的梯度森林中的高级绿化现象:单个物种内的高级物候学或木本植物群落的差异。我们在美国俄亥俄州中部从城市到乡村的11种森林中监测了欧洲七叶树(Ahculus buckeye),欧洲忍冬(Lonicera maackii)(金银花)和宏honey(Acer negundo)的春季落叶物候。从2006年2月到2006年4月,我们监测了这些物种,记录了木本植物的成分,并记录了每个站点的每日最低和最高温度。我们发现,在更多城市景观中,物种内部的高级物候现象是一个微弱但普遍的趋势。随着城市化程度的提高,月平均最低温度更高,而在城市到农村的梯度范围内,月平均最高温度相似。我们还发现有证据表明木本植物群落沿城市化梯度转移,这主要是由较城市森林中大量外来入侵物种马氏乳杆菌引起的。因为马氏乳杆菌比本地木本物种早出数周,并且在城市森林中非常丰富,所以我们建议该物种入侵森林可以使城市森林更早绿化。

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