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植物生长与发育建模

Modeling plant growth and development.

作者信息

Prusinkiewicz Przemyslaw

机构信息

Department of Computer Science, The University of Calgary, Alberta, Canada.

出版信息

Curr Opin Plant Biol. 2004 Feb;7(1):79-83. doi: 10.1016/j.pbi.2003.11.007.

Abstract

Computational plant models or 'virtual plants' are increasingly seen as a useful tool for comprehending complex relationships between gene function, plant physiology, plant development, and the resulting plant form. The theory of L-systems, which was introduced by Lindemayer in 1968, has led to a well-established methodology for simulating the branching architecture of plants. Many current architectural models provide insights into the mechanisms of plant development by incorporating physiological processes, such as the transport and allocation of carbon. Other models aim at elucidating the geometry of plant organs, including flower petals and apical meristems, and are beginning to address the relationship between patterns of gene expression and the resulting plant form.

摘要

计算植物模型或“虚拟植物”越来越被视为理解基因功能、植物生理学、植物发育以及由此产生的植物形态之间复杂关系的有用工具。1968年由林登迈尔提出的L系统理论,已经形成了一套成熟的模拟植物分支结构的方法。许多当前的结构模型通过纳入生理过程,如碳的运输和分配,来深入了解植物发育的机制。其他模型旨在阐明植物器官的几何形状,包括花瓣和顶端分生组织,并开始探讨基因表达模式与由此产生的植物形态之间的关系。

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