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首页> 外文期刊>Tree Physiology >The joint influence of photoperiod and temperature during growth cessation and development of dormancy in white spruce (Picea glauca)
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The joint influence of photoperiod and temperature during growth cessation and development of dormancy in white spruce (Picea glauca)

机译:白云杉(Picea glauca)停止生长和休眠发育过程中光周期和温度的共同影响

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摘要

Timely responses to environmental cues enable the synchronization of phenological life-history transitions essential for the health and survival of north-temperate and boreal tree species. While photoperiodic cues will remain persistent under climate change, temperature cues may vary, contributing to possible asynchrony in signals influencing developmental and physiological transitions essential to forest health. Understanding the relative contribution of photoperiod and temperature as determinants of the transition from active growth to dormancy is important for informing adaptive forest management decisions that consider future climates. Using a combination of photoperiod (long = 20 h or short = 8 h day lengths) and temperature (warm = 22 degrees C/16 degrees C and cool = 8 degrees C/4 degrees C dayight, respectively) treatments, we used microscopy, physiology and modeling to comprehensively examine hallmark traits of the growth-dormancy transition-including bud formation, growth cessation, cold hardiness and gas exchange-within two provenances of white spruce [Picea glauca (Moench) Voss] spanning a broad latitude in Alberta, Canada. Following exposure to experimental treatments, seedlings were transferred to favorable conditions, and the depth of dormancy was assessed by determining the timing and ability of spruce seedlings to resume growth. Short photoperiods promoted bud development and growth cessation, whereas longer photoperiods extended the growing season through the induction of lammas growth. In contrast, cool temperatures under both photoperiodic conditions delayed bud development. Photoperiod strongly predicted the development of cold hardiness, whereas temperature predicted photosynthetic rates associated with active growth. White spruce was capable of attaining endodormancy, but its release was environmentally determined. Dormancy depth varied substantially across experimental treatments suggesting that environmental cues experienced within one season could affect growth in the following season, which is particularly important for a determinate species such as white spruce. The joint influence of these environmental cues points toward the importance of including local constant photoperiod and shifting temperature cues into predictive models that consider how climate change may affect northern forests.
机译:对环境线索的及时响应可以使物候生命历史过渡同步,这对于北温带和北方树种的健康与生存至关重要。尽管光周期信号在气候变化下仍将保持不变,但温度信号可能会有所不同,从而导致影响森林健康所必需的发育和生理转变的信号可能存在​​异步性。了解光周期和温度的相对贡献是决定从活跃生长过渡到休眠的重要因素,这对于告知考虑未来气候的适应性森林管理决策至关重要。结合使用光周期(长= 20小时或短= 8小时的白天)和温度(分别是白天= 22摄氏度/ 16摄氏度和白天/夜间凉爽= 8摄氏度/ 4摄氏度)的治疗方法,显微镜,生理学和模型学可以全面检查生长-休眠转变的标志性特征,包括芽形成,生长停止,耐寒性和气体交换,以及两个云杉白云杉[Picea glauca(Moench)Voss]分布在艾伯塔省的广阔纬度,加拿大。接受实验处理后,将幼苗转移到有利条件下,并通过确定云杉幼苗恢复生长的时间和能力来评估休眠深度。较短的光周期促进了芽的发育和生长的停止,而较长的光周期通过诱导羔羊的生长延长了生长期。相反,两种光周期条件下的凉爽温度都会延迟芽的发育。光周期强烈预测了抗寒性的发展,而温度预测了与活跃生长相关的光合速率。白云杉能够达到异味,但其释放取决于环境。休眠深度在不同的实验处理方法之间变化很大,这表明一个季节内遇到的环境提示可能会影响下一季节的生长,这对于确定的物种(如白云杉)尤其重要。这些环境线索的共同影响表明了将局部恒定的光周期和温度线索转变纳入考虑气候变化如何影响北部森林的预测模型的重要性。

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