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A novel sunshine duration-based photothermal time model interprets the photosensitivity of flower maturity of pecan cultivars

机译:一种新的阳光持续时间的光热时间模型解释了山核桃栽培品种花成熟度的光敏性

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摘要

Although it is well-known and established that light plays important roles in plant development, up to now, there is no substantial improvements in how to deal with the light factor of spring phenology under natural condition. By monitoring the local meteorologic data and mature dates of two types (male and female) of flower from four pecan cultivars during 9 years, it was found that the complementary pattern of growing degree day and sunshine duration helped to maintain a threshold of driving force related to the maturity of pecan flower during 9 years. A novel photothermal time model based on the linear combination of growing degree day and sunshine duration was then proposed and validated to interpret the variance of mature dates of pecan cultivars. Comparative analysis showed that the new model had made extremely significant improvements to the traditional thermal time model. In addition, this model introduced the conversion coefficient K, which quantified the effect of light on the flowering drive, and revealed the differences of base temperature among cultivars. This was the first time that sunshine duration instead of photoperiod was adopted to develop into a verified model on spring phenological event of tree species. It will help to model the spring phenologies of other tree species more reasonably.
机译:虽然它是众所周知的并且建立光线在植物开发中发挥重要作用,但到目前为止,如何在自然条件下处理春季候选的光因子没有大量的改进。通过在9年内监测来自四种山核桃品种的局部气象数据和两种类型(男性和女性)花的成熟日期,发现度日生长和阳光持续时间的互补模式有助于维持相关的驱动力在9年内到山核桃花的成熟。提出并验证了基于生长度日生长日和阳光持续时间的线性组合的新型光热时间模型,解释了山核桃栽培成熟日期的差异。比较分析表明,新模型对传统的热时间模型产生了极大的改进。此外,该模型引入了转换系数k,该转换系数K量化了光对开花驱动器上的效果,并揭示了品种中基础温度的差异。这是第一次采用阳光持续时间而不是光周期,在树种春季职业事件中发展成验证模型。它将有助于更合理地模拟其他树种的春季卓越。

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