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叶片叶绿素浓度的原位测量:光学/绝对关系分析

In situ measurement of leaf chlorophyll concentration: analysis of the optical/absolute relationship.

作者信息

Parry Christopher, Blonquist J Mark, Bugbee Bruce

机构信息

Department of Plants, Soils, and Climate, Utah State University, Logan, UT, 84322, USA.

出版信息

Plant Cell Environ. 2014 Nov;37(11):2508-20. doi: 10.1111/pce.12324. Epub 2014 May 6.

Abstract

In situ optical meters are widely used to estimate leaf chlorophyll concentration, but non-uniform chlorophyll distribution causes optical measurements to vary widely among species for the same chlorophyll concentration. Over 30 studies have sought to quantify the in situ/in vitro (optical/absolute) relationship, but neither chlorophyll extraction nor measurement techniques for in vitro analysis have been consistent among studies. Here we: (1) review standard procedures for measurement of chlorophyll; (2) estimate the error associated with non-standard procedures; and (3) implement the most accurate methods to provide equations for conversion of optical to absolute chlorophyll for 22 species grown in multiple environments. Tests of five Minolta (model SPAD-502) and 25 Opti-Sciences (model CCM-200) meters, manufactured from 1992 to 2013, indicate that differences among replicate models are less than 5%. We thus developed equations for converting between units from these meter types. There was no significant effect of environment on the optical/absolute chlorophyll relationship. We derive the theoretical relationship between optical transmission ratios and absolute chlorophyll concentration and show how non-uniform distribution among species causes a variable, non-linear response. These results link in situ optical measurements with in vitro chlorophyll concentration and provide insight to strategies for radiation capture among diverse species.

摘要

原位光学测量仪被广泛用于估算叶片叶绿素浓度,但叶绿素分布不均会导致在相同叶绿素浓度下,不同物种间的光学测量结果差异很大。超过30项研究试图量化原位/体外(光学/绝对)关系,但各研究中用于体外分析的叶绿素提取和测量技术都不一致。在此,我们:(1)回顾叶绿素测量的标准程序;(2)估算与非标准程序相关的误差;(3)采用最精确的方法,为多种环境下生长的22个物种提供光学叶绿素与绝对叶绿素转换方程。对1992年至2013年生产的5台美能达(型号SPAD - 502)和25台奥普蒂科学(型号CCM - 200)测量仪的测试表明,重复型号之间的差异小于5%。因此,我们推导了这些测量仪型号单位之间的转换方程。环境对光学/绝对叶绿素关系没有显著影响。我们推导了光学透射率与绝对叶绿素浓度之间的理论关系,并展示了物种间的不均匀分布如何导致可变的非线性响应。这些结果将原位光学测量与体外叶绿素浓度联系起来,并为不同物种间的辐射捕获策略提供了见解。

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