首页> 外文会议>2016 IEEE International Conference on Functional-Structural Plant Growth Modeling, Simulation, Visualization and Applications >Phyllochron, leaf expansion and life span in adult Coffea Arabica L. plants: Impact of axis order, growth intensity period and emitted leaf position
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Phyllochron, leaf expansion and life span in adult Coffea Arabica L. plants: Impact of axis order, growth intensity period and emitted leaf position

机译:阿拉伯咖啡成熟植物的叶轮同步,叶扩展和寿命:轴序,生长强度期和叶位置的影响

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Phyllochron is a morphogenetic characteristic defined as a time interval between the appearance of two successive leaves. In adult Arabica coffee plants (Coffea Arabica L.), the greatest part of the annual vegetative growth occurs in the warm, rainy season, while the smaller part of annual growth happens during the cool, dry season. We aimed to estimate the phyllochron, leaf expansion duration and life span in adult Arabica coffee plants depending on growth intensity periods, axis order and position of emitted leaves. Four-year-old plants were codified following the VPlants methodology in dynamic multiscale-tree-graphs. The leaf growth parameters were estimated on five axis orders. To integrate the effect of temperature on leaf growth parameters, they were expressed as functions of accumulated thermal time (growing degree-days - GDD). The demands in GDD for phyllochron were roughly 30 to 40% higher during the reduced compared to the active growth period. The lowest GDD of phyllochron was observed on the 2nd order axes, and the highest on the 5th order ones. The similar requirement in GDD for leaf expansion and life span was noted in leaves on 1st and 2nd order axes, while leaves born on 3rd to 5th axis orders showed higher GDD requirements. Leaves born on 2nd order axes finished their expansion more rapidly during the reduced than during the active growth period, indicating the occurrence of acclimation to temperatures over the same tree. The leaf emission duration and life span over the axes ranks followed binomial distributions. The results suggest that the phyllochron changed within the branching hierarchy and is seasonally modified by the environment. In future studies, longer period and apex mortality rate will be considered to improve the understanding of complex orchestration in structural development of Arabica coffee plants in 3D architectural dynamics modeling.
机译:Phyllochron是一个形态发生特征,定义为两个连续叶片出现之间的时间间隔。在成年的阿拉比卡咖啡植物(Coffea Araba L.)中,植物生长的大部分时间都在温暖,雨季,而年增长的一小部分则在凉爽,干燥季节。我们旨在根据成长期的强度,轴序和散发叶片的位置来估计成年阿拉比卡咖啡植物的叶轮同步,叶片扩张持续时间和寿命。根据VPlants方法在动态多尺度树图中对四岁的植物进行了编码。叶片生长参数按五个轴阶估算。为了整合温度对叶片生长参数的影响,将它们表示为累积热时间(生长天数-GDD)的函数。与活跃生长时期相比,在减产期间,GDD对叶脉同步的需求大约高出30%至40%。在第二级轴上观察到最低的叶绿素GDD,在第五级轴上观察到最高的GDD。 GDD对叶片扩展和寿命的要求在第1和第2轴的叶片上都已注意到,而在第3到第5轴轴上出生的叶片显示了更高的GDD需求。在二阶轴上出生的叶片在减缩期间比在活跃的生长期间更快地完成了扩张,这表明在同一棵树上出现了温度适应。叶片上的叶片发射持续时间和寿命跨越二项式分布。结果表明,叶序在分支层次内发生变化,并受环境的季节性影响。在未来的研究中,将考虑使用更长的时期和最高的死亡率来增进对3D建筑动力学建模中阿拉伯咖啡工厂结构开发中复杂编排的理解。

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