利用ClimaTree工具分析全球气候变化及其对果树物候的影响:以突尼斯条件下的Anna苹果树为例

E. Bairam, A. Sahli, H. Sahli
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引用次数: 2

摘要

果树的发育取决于气候条件,而温度制度则取决于物候阶段。本研究旨在(1)开发一个软件“Climatree®”来预测果树物候阶段的发生,(2)分析近二十年来冷热积累的趋势,(3)估计真实天气条件下的休养完成、开花和成熟日期。本文重点研究了早熟苹果品种“安娜”打破休眠所需的低温条件以及开花和果实成熟所需的高温条件,并分析了全球变暖对这些物候阶段时间的影响。利用气候数据库对气候变化假设的有效性进行了检验。结果表明,秋冬季冷积累呈线性减少,春季热积累呈线性增加。在所有研究地点都观察到这一点。这可能证实了过去几年地中海地区的气候变暖。通过4种简单情景(历史最高最低日气温理论分别升高0.5、1.0、1.5和2°C),提出了预测气候变暖对果树物候的理论影响。为此,选择了早熟苹果品种“安娜”作为案例。根据该品种的冷热需求,软件模拟结果表明,发芽日期延迟,开花和成熟时间缩短。
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Analysing global climatic change and its impact on fruit tree phenology using ClimaTree tool: Example of Anna apple tree under Tunisian conditions
Fruit trees development depends on climatic conditions, and the temperature regime on phenological phases. This study aims at (i) developing a software “Climatree®” to predict the occurrence of the phenological stages of tree fruits, (ii) analyzing the trend of chilling and heat accumulation during the last twenty years, (iii) estimating rest completion, flowering and ripening dates under real weather conditions. In particular, we focus on the study of an early apple cultivar “Anna”, for its chilling requirements for breaking dormancy and heat requirements for flowering and fruit maturing, and (iv) analyzing the effects of global warming on the timing of these phenological stages. The validity of the climate change hypothesis was tested using a climate database. Results pointed out a linear decrease in chilling accumulation during autumn and winter, and a linear increase in heat accumulation during spring. This was observed for all the studied sites. This might confirm the climatic warming in the Mediterranean area during the past years. The theoretical impact of the predicted climate warming on fruit trees phenology is also proposed by using four simple scenarios (theorical increase of both daily maximum-minimum historical temperatures by 0.5, 1.0, 1.5 and 2°C, respectively). For this purpose, the case of an early budbreak apple cultivar “Anna” was chosen. Based on the cultivar's chilling and heat requirements, the software simulations indicated a delay in the bud burst date, and a shortening in time of flowering and ripening.
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