Thornley J H M
Centre for Ecology & Hydrology, Penicuik, Midlothian, UK.
Ann Bot. 2002 Apr;89(4):451-8. doi: 10.1093/aob/mcf071.
Analytical expressions for the contributions of sun and shade leaves to instantaneous canopy photosynthesis are derived. The analysis is based on four assumptions. First, that the canopy is closed in the sense that it is horizontally uniform. Secondly, that there is an exponential profile of light down the canopy with the same decay constant for light from different parts of the sky. Thirdly, that the leaf photosynthetic response to incident irradiance can be described by a three-parameter non-rectangular hyperbola (NRH). And lastly, that light acclimation at the leaf level occurs in only one parameter of the NRH, that describing the light-saturated photosynthetic rate, which is assumed to be proportional to the local averaged leaf irradiance. These assumptions have been extensively researched empirically and theoretically and their limitations are quite well understood. They have been widely used when appropriate. Combining these four assumptions permits the derivation of algebraic expressions for instantaneous canopy photosynthesis which are computationally efficient because they avoid the necessity for numerical integration down the canopy. These are valuable for modelling plant and crop ecosystems, for which canopy photosynthesis is the primary driver. Ignoring the sun/shade dichotomy can result in overestimates of canopy photosynthesis of up to 20 %, but using a rectangular hyperbola instead of a non-rectangular hyperbola to estimate canopy photosynthesis taking account of sun and shade leaves can lead to a similarly sized underestimate.
推导了太阳叶和遮荫叶对瞬时冠层光合作用贡献的解析表达式。该分析基于四个假设。第一,冠层在水平均匀的意义上是封闭的。第二,冠层内光强呈指数分布,来自天空不同部分的光具有相同的衰减常数。第三,叶片对入射辐照度的光合响应可用三参数非矩形双曲线(NRH)来描述。最后,叶片水平的光适应仅发生在NRH的一个参数中,即描述光饱和光合速率的参数,该参数假定与局部平均叶片辐照度成正比。这些假设已在经验和理论上进行了广泛研究,其局限性也相当清楚。在适当的时候它们已被广泛使用。结合这四个假设,可以推导出瞬时冠层光合作用的代数表达式,这些表达式计算效率高,因为它们避免了沿冠层进行数值积分的必要性。这些对于模拟植物和作物生态系统很有价值,冠层光合作用是其主要驱动力。忽略阳叶/阴叶的二分法可能导致冠层光合作用高估高达20%,但使用矩形双曲线而不是非矩形双曲线来估计考虑阳叶和阴叶的冠层光合作用可能会导致同样程度的低估。