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基于叶绿素荧光诱导动力学曲线的光合参数反演算法研究

[Photosynthetic Parameters Inversion Algorithm Study Based on Chlorophyll Fluorescence Induction Kinetics Curve].

作者信息

Qiu Xiao-han, Zhang Yu-jun, Yin Gao-fang, Shi Chao-yi, Yu Xiao-ya, Zhao Nan-jing, Liu Wen-qing

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2015 Aug;35(8):2194-7.

Abstract

The fast chlorophyll fluorescence induction curve contains rich information of photosynthesis. It can reflect various information of vegetation, such as, the survival status, the pathological condition and the physiology trends under the stress state. Through the acquisition of algae fluorescence and induced optical signal, the fast phase of chlorophyll fluorescence kinetics curve was fitted. Based on least square fitting method, we introduced adaptive minimum error approaching method for fast multivariate nonlinear regression fitting toward chlorophyll fluorescence kinetics curve. We realized Fo (fixedfluorescent), Fm (maximum fluorescence yield), σPSII (PSII functional absorption cross section) details parameters inversion and the photosynthetic parameters inversion of Chlorella pyrenoidosa. And we also studied physiological variation of Chlorella pyrenoidosa under the stress of Cu(2+).

摘要

快速叶绿素荧光诱导曲线包含丰富的光合作用信息。它能反映植被的各种信息,如生存状态、病理状况以及胁迫状态下的生理趋势。通过采集藻类荧光和诱导光信号,对叶绿素荧光动力学曲线的快速相进行了拟合。基于最小二乘法拟合,引入自适应最小误差逼近法对叶绿素荧光动力学曲线进行快速多元非线性回归拟合。实现了小球藻Fo(固定荧光)、Fm(最大荧光产量)、σPSII(PSII功能吸收截面)等详细参数反演以及光合参数反演。并且还研究了小球藻在Cu(2+)胁迫下的生理变化。

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