Sterck F J, Schieving F, Lemmens A, Pons T L
Utrecht University, Plant Sciences, PO Box 80084, 3508 TB Utrecht, the Netherlands.
New Phytol. 2005 Jun;166(3):827-43. doi: 10.1111/j.1469-8137.2005.01342.x.
Here we present a functional-structural plant model that integrates the growth of metamers into a growing, three-dimensional tree structure, and study the effects of different constraints and strategies on tree performance in different canopies. The tree is a three-dimensional system of connected metamers, and growth is defined by the flush probability of metamers. Tree growth was simulated for different canopy light environments. The result suggest that: the constraints result in an exponential, logistic and decay phase; a mono-layered-leaf crown results from self-shading in a closed canopy; a strong apical control results in slender trees like tall stature species; the interaction between weak apical control and light response results in a crown architecture and performance known from short stature species in closed forest; correlated leaf traits explain interspecific differences in growth, survival and adult stature. The model successfully unravels the interaction effects of different constraints and strategies on tree growth in different canopy light environments.
在此,我们展示了一个功能-结构植物模型,该模型将节间的生长整合到一个不断生长的三维树木结构中,并研究了不同限制因素和策略对不同树冠层树木性能的影响。树木是由相连节间组成的三维系统,生长由节间的抽梢概率定义。针对不同的树冠光照环境模拟了树木生长。结果表明:这些限制因素导致了指数期、逻辑期和衰退期;在封闭树冠中,自遮荫导致单层叶树冠;较强的顶端控制导致树木细长,类似高身材物种;较弱的顶端控制与光响应之间的相互作用导致了封闭森林中矮身材物种所具有的树冠结构和性能;相关的叶片性状解释了种间在生长、存活和成年树体大小方面的差异。该模型成功揭示了不同限制因素和策略在不同树冠光照环境下对树木生长的相互作用效应。