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Warming effects on photosynthesis of subtropical tree species: a translocation experiment along an altitudinal gradient

机译:增温对亚热带树种光合作用的影响:沿高度梯度的易位实验

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Ongoing climate warming induced by human activities may have great impacts on trees, yet it remains unresolved how subtropical tree species respond to rising temperature in the field. Here, we used downward translocation to investigate the effects of climate warming on leaf photosynthesis of six common tree species in subtropical China. During the experimental period between 2012 and 2014, the mean average photosynthetic rates (Asat) under saturating light for Schima superba, Machilus breviflora, Pinus massoniana and Ardisia lindleyana in the warm site were7%, 19%, 20% and 29% higher than those in the control site. In contrast, seasonal Asat for Castanopsis hystrix in the warm site were lower compared to the control site. Changes in Asat in response to translocation were mainly associated with those in leaf stomatal conductance (gs) and photosynthetic capacity (RuBP carboxylation, RuBP regeneration capacity). Our results imply that climate warming could have potential impacts on species composition and community structure in subtropical forests.
机译:人类活动引起的持续的气候变暖可能对树木产生巨大影响,但尚未解决亚热带树木物种如何应对田间温度升高的问题。在这里,我们使用向下移位来研究气候变暖对亚热带中国六种常见树种叶片光合作用的影响。在2012年至2014年的实验期内,温暖地带上的荷叶木,短枝Machilus,马尾松和马鞭草在饱和光下的平均光合速率(Asat)分别比高温高7%,19%,20%和29%。在控制站点中。相反,温暖部位的锥栗的季节性Asat低于对照部位。 Asat响应易位的变化主要与叶片气孔导度(gs)和光合能力(RuBP羧化,RuBP再生能力)有关。我们的结果表明,气候变暖可能会对亚热带森林的物种组成和群落结构产生潜在影响。

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