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芽突破对日间温度的响应比对夜间温度的响应更为强烈,在非对称实验变暖条件下。

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

机构信息

Département des Sciences Fondamentales, Université du Québec à Chicoutimi, 555 boulevard de l'Université, Chicoutimi, QC, G7H 2B1, Canada.

Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, 723 Xingke Road, Tianhe District, Guangzhou, 510650, China.

出版信息

Glob Chang Biol. 2017 Jan;23(1):446-454. doi: 10.1111/gcb.13360. Epub 2016 Jun 21.

Abstract

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 °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.

摘要

全球变暖存在日变化的非对称性,这导致气候会变得不那么寒冷,而不是更温暖。我们通过检验以下假说,研究了非对称实验性增温对植物物候的影响,该假说认为白天增温比夜间增温更能促进芽的萌发。在生长室内,我们对来自加拿大东部 20 个种源的云杉幼苗的芽萌发进行了每日监测,温度在 8 到 16°C 之间,这些幼苗分别经历了白天和夜间增温处理。芽的萌发提前得更多,完成物候阶段所需的时间也更短,这是白天增温的结果。幼苗对夜间增温有反应,但芽的萌发仍不如白天增温那样提前。当夜间增温与白天降温同时发生时,没有观察到任何的萌发提前。在不同种源间,处理的效果是一致的。我们在受控条件下的观测结果,实验证明了芽的萌发可以在夜间增温下提前,但提前的程度不如白天增温那么大。使用日时间尺度的预测模型可能会忽略非对称增温的不同影响,应重新校准更高的时间分辨率。

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