首页> 外文会议>IEEE International Conference on Functional-Structural Plant Growth Modeling, Simulation, Visualization and Applications >Accounting for within species variability in growth and structure of Picea sitchensis through analysis of architectural development
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Accounting for within species variability in growth and structure of Picea sitchensis through analysis of architectural development

机译:通过分析建筑开发,在Picea垄断的生长和结构中核算

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There is considerable variation in growth and structure between individuals of Sitka spruce (Picea sitchensis). Both genetic and environmental factors contribute to this variation and an explanation for their joint effects is given based upon the dynamics of their interaction in the production and utilization of photosynthate by the growing tree. Whole tree attributes, such as high individual biomass production, can be attained by trees with different structures. This can be understood by considering the effects of different architectural and physiological properties on photosynthate production and utilization. Definitions of architecture for tree species have typically focused on branch structure and its role in supporting foliage is implicit. For Sitka spruce the foliage supported by individual modules can vary between individuals, even for modules with the same apparent position in branch hierarchy. Foliage support should be considered explicitly in architectural models that will be used in analysis of the growth process.
机译:Sitka Spruce(Picea Sitchensis)的个体之间的生长和结构存在相当大的变化。遗传和环境因素的贡献涉及这种变化,并基于它们在生长树上的光合酸盐的相互作用的动态产生了对它们的关节效应的解释。整个树属性,如高单独的生物质生产,可以通过不同的结构获得。考虑到不同建筑和生理特性对光合素生产和利用的影响,可以理解这一点。树种结构的定义通常集中在分支结构上,其在支持叶子中的作用是隐含的。对于Sitka云杉,各个模块支持的叶子可以在个体之间变化,即使对于具有相同的分支层次结构的模块也是如此。应在建筑模型中明确地考虑叶子支持,这些模型将用于分析增长过程。

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