首页> 外文会议>IEEE International Conference on Functional-Structural Plant Growth Modeling, Simulation, Visualization and Applications >Modelling temporal variation of parameters used in two photosynthesis models: Influence of fruit load and girdling in fruit bearing branches of apple trees
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Modelling temporal variation of parameters used in two photosynthesis models: Influence of fruit load and girdling in fruit bearing branches of apple trees

机译:两个光合作用模型中使用的参数的时间变化:果实载荷和颈部果实枝条的影响

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A large number of studies have found seasonal and temporal variability in leaf photosynthesis parameters in different crops. This variability depends upon the environment, the developmental stage of the plant and the presence or absence of sinks. Girdling removes the bark and phloem down to the youngest xylem all around the stem and prevents export of photoassimilates out of the stem. This technique is used to manipulate tree development and growth, as well as fruit growth, in a variety of fruit species. It has been shown to decrease net photosynthesis rate (Pn) in several tree species. Developing fruits and crop load have often been reported to influence individual leaf photosynthesis rate in tree crops. In the literature, numerous studies propose models to simulate photosynthesis. In this “preliminary” study, we have chosen to compare three models: The rectangular and non-rectangular hyperbola model by Thornley, as well as the model by Marshall and Biscoe. Ten-year old apple trees (Malus domestica L. (Borkh.), cv. `Elstar') were used to study and model the seasonal variation of photosynthetic parameters in leaves of long shoots and rosettes, as a function of global fruit load (at the branch level), with or without girdling, during the growing season of 2015. Three 6-years-old fruit bearing branches were selected in each tree and treated independently. Gas exchange measurements were carried out using a LI-6400XT portable photosynthesis system. For each fruit bearing branch, light response curves of Pn for 2 leaves of a rosette were measured at two different positions, proximal and distal. Our comparison of models indicates that the model of Marshall and Biscoe is the most accurate model for the simulation of photosynthesis rate in bearing branches of apple tree with time (season) and the three treatments applied.
机译:大量研究在不同作物中发现了叶片光合作用参数的季节性和时间变异性。这种可变性取决于环境,植物的发育阶段以及水槽的存在或不存在。 Girdling从茎周围的最小木耳中移除了树皮和韧皮,并防止了茎上的光学刺激。这种技术用于操纵树木开发和生长,以及各种水果种类的果实生长。已显示在几种树种中降低净光合速率(PN)。据报道,显影水果和作物负荷影响树木作物中的个体叶片光合速率。在文献中,许多研究提出了模拟光合作用的模型。在这个“初步”研究中,我们选择比较三种模型:桑德利的矩形和非矩形双曲线模型,以及Marshall和Biscoe的型号。十岁的苹果树(Malus Domestica L.(Borkh。),CV。“Elstar”)用于研究和模仿长芽和玫瑰花叶片中光合作用参数的季节变化,作为全球水果载荷(在2015年生长季节期间,在分支级别),有或没有Girdly。每棵树中选择三个6岁的果实轴承分支,并独立处理。使用Li-6400xt便携式光合系统进行气体交换测量。对于每个果实轴承分支,在两个不同的位置,近端和远端测量2个叶片的PN的光响应曲线。我们对模型的比较表明,Marshall和Biscoe的模型是模拟苹果树轴承的光合速率的最准确的模型,其三次苹果树轴承(季节)和应用的三种治疗方法。

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