Frequently asked questions about chlorophyll fluorescence, the sequel

Autores
Tambussi, Eduardo Alberto; Yanniccari, Marcos
Año de publicación
2017
Idioma
inglés
Tipo de recurso
reseña artículo
Estado
versión publicada
Descripción
Using chlorophyll (Chl) a fluorescence many aspects of the photosynthetic apparatus can be studied, both in vitro and, noninvasively, in vivo. Complementary techniques can help to interpret changes in the Chl a fluorescence kinetics. Kalaji et al. (Photosynth Res 122:121–158, 2014a) addressed several questions about instruments, methods and applications based on Chl a fluorescence. Here, additional Chl a fluorescence-related topics are discussed again in a question and answer format. Examples are the effect of connectivity on photochemical quenching, the correction of FV/FM values for PSI fluorescence, the energy partitioning concept, the interpretation of the complementary area, probing the donor side of PSII, the assignment of bands of 77 K fluorescence emission spectra to fluorescence emitters, the relationship between prompt and delayed fluorescence, potential problems when sampling tree canopies, the use of fluorescence parameters in QTL studies, the use of Chl a fluorescence in biosensor applications and the application of neural network approaches for the analysis of fluorescence measurements. The answers draw on knowledge from different Chl a fluorescence analysis domains, yielding in several cases new insights.
La lista completa de autores que integran el documento puede consultarse en el archivo.
Este documento tiene una corrección (ver documento relacionado).
Instituto de Fisiología Vegetal
Materia
Ciencias Agrarias
Area
Chl a fluorescence
Delayed fluorescence
Energy partitioning
Photochemical quenching
Nivel de accesibilidad
acceso abierto
Condiciones de uso
http://creativecommons.org/licenses/by/4.0/
Repositorio
SEDICI (UNLP)
Institución
Universidad Nacional de La Plata
OAI Identificador
oai:sedici.unlp.edu.ar:10915/87503

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spelling Frequently asked questions about chlorophyll fluorescence, the sequelTambussi, Eduardo AlbertoYanniccari, MarcosCiencias AgrariasAreaChl a fluorescenceDelayed fluorescenceEnergy partitioningPhotochemical quenchingUsing chlorophyll (Chl) a fluorescence many aspects of the photosynthetic apparatus can be studied, both in vitro and, noninvasively, in vivo. Complementary techniques can help to interpret changes in the Chl a fluorescence kinetics. Kalaji et al. (Photosynth Res 122:121–158, 2014a) addressed several questions about instruments, methods and applications based on Chl a fluorescence. Here, additional Chl a fluorescence-related topics are discussed again in a question and answer format. Examples are the effect of connectivity on photochemical quenching, the correction of FV/FM values for PSI fluorescence, the energy partitioning concept, the interpretation of the complementary area, probing the donor side of PSII, the assignment of bands of 77 K fluorescence emission spectra to fluorescence emitters, the relationship between prompt and delayed fluorescence, potential problems when sampling tree canopies, the use of fluorescence parameters in QTL studies, the use of Chl a fluorescence in biosensor applications and the application of neural network approaches for the analysis of fluorescence measurements. The answers draw on knowledge from different Chl a fluorescence analysis domains, yielding in several cases new insights.La lista completa de autores que integran el documento puede consultarse en el archivo.Este documento tiene una corrección (ver documento relacionado).Instituto de Fisiología Vegetal2017info:eu-repo/semantics/reviewinfo:eu-repo/semantics/publishedVersionRevisionhttp://purl.org/coar/resource_type/c_dcae04bcinfo:ar-repo/semantics/resenaArticuloapplication/pdf13-66http://sedici.unlp.edu.ar/handle/10915/87503enginfo:eu-repo/semantics/altIdentifier/issn/0166-8595info:eu-repo/semantics/altIdentifier/doi/10.1007/s11120-016-0318-yinfo:eu-repo/semantics/reference/hdl/10915/87577info:eu-repo/semantics/openAccesshttp://creativecommons.org/licenses/by/4.0/Creative Commons Attribution 4.0 International (CC BY 4.0)reponame:SEDICI (UNLP)instname:Universidad Nacional de La Platainstacron:UNLP2025-09-29T11:17:14Zoai:sedici.unlp.edu.ar:10915/87503Institucionalhttp://sedici.unlp.edu.ar/Universidad públicaNo correspondehttp://sedici.unlp.edu.ar/oai/snrdalira@sedici.unlp.edu.arArgentinaNo correspondeNo correspondeNo correspondeopendoar:13292025-09-29 11:17:15.169SEDICI (UNLP) - Universidad Nacional de La Platafalse
dc.title.none.fl_str_mv Frequently asked questions about chlorophyll fluorescence, the sequel
title Frequently asked questions about chlorophyll fluorescence, the sequel
spellingShingle Frequently asked questions about chlorophyll fluorescence, the sequel
Tambussi, Eduardo Alberto
Ciencias Agrarias
Area
Chl a fluorescence
Delayed fluorescence
Energy partitioning
Photochemical quenching
title_short Frequently asked questions about chlorophyll fluorescence, the sequel
title_full Frequently asked questions about chlorophyll fluorescence, the sequel
title_fullStr Frequently asked questions about chlorophyll fluorescence, the sequel
title_full_unstemmed Frequently asked questions about chlorophyll fluorescence, the sequel
title_sort Frequently asked questions about chlorophyll fluorescence, the sequel
dc.creator.none.fl_str_mv Tambussi, Eduardo Alberto
Yanniccari, Marcos
author Tambussi, Eduardo Alberto
author_facet Tambussi, Eduardo Alberto
Yanniccari, Marcos
author_role author
author2 Yanniccari, Marcos
author2_role author
dc.subject.none.fl_str_mv Ciencias Agrarias
Area
Chl a fluorescence
Delayed fluorescence
Energy partitioning
Photochemical quenching
topic Ciencias Agrarias
Area
Chl a fluorescence
Delayed fluorescence
Energy partitioning
Photochemical quenching
dc.description.none.fl_txt_mv Using chlorophyll (Chl) a fluorescence many aspects of the photosynthetic apparatus can be studied, both in vitro and, noninvasively, in vivo. Complementary techniques can help to interpret changes in the Chl a fluorescence kinetics. Kalaji et al. (Photosynth Res 122:121–158, 2014a) addressed several questions about instruments, methods and applications based on Chl a fluorescence. Here, additional Chl a fluorescence-related topics are discussed again in a question and answer format. Examples are the effect of connectivity on photochemical quenching, the correction of FV/FM values for PSI fluorescence, the energy partitioning concept, the interpretation of the complementary area, probing the donor side of PSII, the assignment of bands of 77 K fluorescence emission spectra to fluorescence emitters, the relationship between prompt and delayed fluorescence, potential problems when sampling tree canopies, the use of fluorescence parameters in QTL studies, the use of Chl a fluorescence in biosensor applications and the application of neural network approaches for the analysis of fluorescence measurements. The answers draw on knowledge from different Chl a fluorescence analysis domains, yielding in several cases new insights.
La lista completa de autores que integran el documento puede consultarse en el archivo.
Este documento tiene una corrección (ver documento relacionado).
Instituto de Fisiología Vegetal
description Using chlorophyll (Chl) a fluorescence many aspects of the photosynthetic apparatus can be studied, both in vitro and, noninvasively, in vivo. Complementary techniques can help to interpret changes in the Chl a fluorescence kinetics. Kalaji et al. (Photosynth Res 122:121–158, 2014a) addressed several questions about instruments, methods and applications based on Chl a fluorescence. Here, additional Chl a fluorescence-related topics are discussed again in a question and answer format. Examples are the effect of connectivity on photochemical quenching, the correction of FV/FM values for PSI fluorescence, the energy partitioning concept, the interpretation of the complementary area, probing the donor side of PSII, the assignment of bands of 77 K fluorescence emission spectra to fluorescence emitters, the relationship between prompt and delayed fluorescence, potential problems when sampling tree canopies, the use of fluorescence parameters in QTL studies, the use of Chl a fluorescence in biosensor applications and the application of neural network approaches for the analysis of fluorescence measurements. The answers draw on knowledge from different Chl a fluorescence analysis domains, yielding in several cases new insights.
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