类囊体
叶绿素荧光
光合作用
荧光
非生物成分
生物系统
光抑制
非生物胁迫
生物物理学
叶绿素
植物
光系统II
生物
化学
物理
生态学
生物化学
叶绿体
光学
基因
作者
Alexandrina Stirbet,Dušan Lazár,Johannes Kromdijk,Govindjee Govindjee
出处
期刊:Photosynthetica
[Institute of Experimental Botany of the Czech Academy of Sciences]
日期:2018-01-10
卷期号:56 (SPECIAL ISSUE): 86-104
被引量:441
标识
DOI:10.1007/s11099-018-0770-3
摘要
Chlorophyll (Chl) a fluorescence induction (transient), measured by exposing dark-adapted samples to high light, shows a polyphasic rise, which has been the subject of extensive research over several decades. Several Chl fluorescence parameters based on this transient have been defined, the most widely used being the FV [= (FM-F0)]/FM ratio as a proxy for the maximum quantum yield of PSII photochemistry. However, considerable additional information may be derived from analysis of the shape of the fluorescence transient. In fact, several performance indices (PIs) have been defined, which are suggested to provide information on the structure and function of PSII, as well as on the efficiencies of specific electron transport reactions in the thylakoid membrane. Further, these PIs have been proposed to quantify plant tolerance to stress, such as by high light, drought, high (or low) temperature, or N-deficiency. This is an interesting idea, since the speed of the Chl a fluorescence transient measurement (<1 s) is very suitable for high-throughput phenotyping. In this review, we describe how PIs have been used in the assessment of photosynthetic tolerance to various abiotic stress factors. We synthesize these findings and draw conclusions on the suitability of several PIs in assessing stress responses. Finally, we highlight an alternative method to extract information from fluorescence transients, the Integrated Biomarker Response. This method has been developed to define multi-parametric indices in other scientific fields (e.g., ecology), and may be used to combine Chl a fluorescence data with other proxies characterizing CO2 assimilation, or even growth or grain yield, allowing a more holistic assessment of plant performance.
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