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温带果树开花所需的低温和需冷量

Chilling and heat requirements for flowering in temperate fruit trees.

作者信息

Guo Liang, Dai Junhu, Ranjitkar Sailesh, Yu Haiying, Xu Jianchu, Luedeling Eike

出版信息

Int J Biometeorol. 2014 Aug;58(6):1195-206. doi: 10.1007/s00484-013-0714-3.

Abstract

Climate change has affected the rates of chilling and heat accumulation, which are vital for flowering and production, in temperate fruit trees, but few studies have been conducted in the cold-winter climates of East Asia. To evaluate tree responses to variation in chill and heat accumulation rates, partial least squares regression was used to correlate first flowering dates of chestnut (Castanea mollissima Blume) and jujube (Zizyphus jujube Mill.) in Beijing, China, with daily chill and heat accumulation between 1963 and 2008. The Dynamic Model and the Growing Degree Hour Model were used to convert daily records of minimum and maximum temperature into horticulturally meaningful metrics. Regression analyses identified the chilling and forcing periods for chestnut and jujube. The forcing periods started when half the chilling requirements were fulfilled. Over the past 50 years, heat accumulation during tree dormancy increased significantly, while chill accumulation remained relatively stable for both species. Heat accumulation was the main driver of bloom timing, with effects of variation in chill accumulation negligible in Beijing’s cold-winter climate. It does not seem likely that reductions in chill will have a major effect on the studied species in Beijing in the near future. Such problems are much more likely for trees grown in locations that are substantially warmer than their native habitats, such as temperate species in the subtropics and tropics.

摘要

气候变化已经影响了温带果树的需冷量和热量积累速率,而这对开花和产量至关重要,但在东亚寒冷冬季气候条件下开展的研究较少。为了评估树木对需冷量和热量积累速率变化的响应,利用偏最小二乘回归方法,将中国北京板栗(Castanea mollissima Blume)和枣(Zizyphus jujube Mill.)的初花期与1963年至2008年间的每日需冷量和热量积累进行关联。采用动态模型和生长度小时模型,将每日最低和最高温度记录转换为具有园艺意义的指标。回归分析确定了板栗和枣的需冷期和催芽期。催芽期在满足一半需冷量时开始。在过去50年里,树木休眠期的热量积累显著增加,而两个树种的需冷量积累相对稳定。热量积累是开花时间的主要驱动因素,在北京寒冷冬季气候条件下,需冷量积累变化的影响可忽略不计。近期内,需冷量减少似乎不太可能对北京的这些研究树种产生重大影响。对于生长在比其原生栖息地温暖得多的地方的树木,如亚热带和热带地区的温带树种,这类问题可能更为突出。

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