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Bud break responds more strongly to daytime than night-time temperature under asymmetric experimental warming

机译:在不对称实验变暖下,破芽对白天温度的反应比对夜间温度的反应更强烈

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摘要

Global warming is diurnally asymmetric, leading to a less cold, rather than warmer, climate. We investigated the effects of asymmetric experimental warming on plant phenology by testing the hypothesis that daytime warming is more effective in advancing bud break than night-time warming. Bud break was monitored daily in Picea mariana seedlings belonging to 20 provenances from Eastern Canada and subjected to daytime and night-time warming in growth chambers at temperatures varying between 8 and 16 degrees C. The higher advancements of bud break and shorter times required to complete the phenological phases occurred with daytime warming. Seedlings responded to night-time warming, but still with less advancement of bud break than under daytime warming. No advancement was observed when night-time warming was associated with a daytime cooling. The effect of the treatments was uniform across provenances. Our observations realized under controlled conditions allowed to experimentally demonstrate that bud break can advance under night-time warming, but to a lesser extent than under daytime warming. Prediction models using daily timescales could neglect the diverging influence of asymmetric warming and should be recalibrated for higher temporal resolutions.
机译:全球变暖是昼夜不对称的,导致气候不那么冷,而不是更暖。我们研究了不对称实验增温对植物物候的影响,检验了白天增温比夜间增温更有效地促进发芽的假设。每天监测来自加拿大东部的20个种源的云杉幼苗的发芽情况,并在8至16摄氏度的温度下在生长室中进行白天和夜间加热。随着白天变暖,发芽期的提前性和完成物候阶段所需的时间更短。幼苗对夜间变暖有反应,但与白天变暖相比,幼苗的发芽速度仍然较小。当夜间变暖与白天降温相关时,没有观察到任何进展。不同来源的处理效果是一致的。我们在受控条件下实现的观察结果允许实验证明,在夜间变暖下,发芽可以提前,但程度低于白天变暖。使用每日时间尺度的预测模型可能会忽略不对称变暖的发散影响,应重新校准以获得更高的时间分辨率。

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