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生理水平上的光合作用-辐照度响应:一个机理模型

Photosynthesis-irradiance response at physiological level: a mechanistic model.

作者信息

Han B P

机构信息

Institute of Oceanography, Chinese Academy of Sciences, Qingdao, People's Republic of China.

出版信息

J Theor Biol. 2001 Nov 21;213(2):121-7. doi: 10.1006/jtbi.2001.2413.

Abstract

A mechanistic model is developed to present the photosynthetic response of phytoplankton to irradiance at the physiological level. The model is operated on photosynthetic units (PSU), and each PSU is assumed to have two states: reactive and activated. Light absorption that drives a reactive PSU into the activated state results from the effective absorption of the PSU. Transitions between the two states are asymmetrical in rate. A PSU in the reactive state becomes activated much faster than it recovers from the activated state to the reactive one. The turnover time for an activated PSU to transit into the reactive one is defined by the turnover time of the electron transport chain. The present model yields a photosynthesis-irradiance curve (PE-curve) in a hyperbola, which is described by three physiological parameters: effective cross-section (sigmaPSII), turnover time of electron transport chain (tau) and number of PSUs (N). The PE-curve has an initial slope of sigmaPSII x N, a half-saturated irradiance of 1/(tau sigmaPSII), and a maximal photosynthetic rate of N/tau at the saturated irradiance. The PE-curve from the present model is comparable to the empirical function based on the target theory described by the Poisson distribution.

摘要

建立了一个机理模型,以在生理水平上呈现浮游植物光合作用对辐照度的响应。该模型以光合单位(PSU)运行,并且假定每个PSU具有两种状态:反应态和激活态。驱动反应态PSU进入激活态的光吸收源于PSU的有效吸收。两种状态之间的转换速率是不对称的。处于反应态的PSU转变为激活态的速度比从激活态恢复到反应态的速度快得多。激活态PSU转变为反应态的周转时间由电子传递链的周转时间定义。本模型产生一条双曲线形式的光合作用-辐照度曲线(PE曲线),该曲线由三个生理参数描述:有效截面(sigmaPSII)、电子传递链的周转时间(tau)和PSU的数量(N)。PE曲线的初始斜率为sigmaPSII×N,半饱和辐照度为1/(tau sigmaPSII),在饱和辐照度下的最大光合速率为N/tau。本模型的PE曲线与基于泊松分布描述的靶标理论的经验函数相当。

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