Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields

We performed active and passive measurements of diurnal cycles of chlorophyll fuorescence on potato crops at canopy level in outdoors conditions for 26 days. Active measurements of the stationary fuorescence yield (Fs) were performed using Ledfex, a fuorescence micro-LIDAR described in Moya et al. (...

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Autores principales: Quiroz, Roberto A, y 4 autores más
Formato: Artículo
Lenguaje:Inglés
Publicado: Photosynthesis Research 2023
Materias:
LED
Acceso en línea:https://repositorio.catie.ac.cr/handle/11554/12220
id RepoCATIE12220
record_format dspace
spelling RepoCATIE122202023-01-03T17:34:18Z Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields Quiroz, Roberto A y 4 autores más FLUORESCENCIA FLUORESCENCE ENERGIA SOLAR SOLAR ENERGY PAPA POTATOES CLOROFILAS CHLOROPHYLLS PATATAS LED Sede Central We performed active and passive measurements of diurnal cycles of chlorophyll fuorescence on potato crops at canopy level in outdoors conditions for 26 days. Active measurements of the stationary fuorescence yield (Fs) were performed using Ledfex, a fuorescence micro-LIDAR described in Moya et al. (Photosynth Res 142:1–15, 2019), capable of remote measurements of chlorophyll fuorescence under full sun-light in the wavelength range from 650 to 800 nm. Passive measurements of solar-induced fuorescence (SIF) fuxes were performed with Spectrofex, an instrument based on the method of flling-in in the O2A and O2B absorption bands at 760 nm (F760) and 687 nm (F687), respectively. Diurnal cycles of Fs showed signifcant variations throughout the day, directly attributed to changes in photosystem II yield. Contrasting patterns were observed according to illumination conditions. Under cloudy sky, Fs varied in parallel with photosynthetically active radiation (PAR). By contrast, during clear sky days, the diurnal cycle of Fs showed a “M” shape pattern with a minimum around noon. F687 and F760 showed diferent patterns, according to illumination conditions. Under low irradiance associated with cloudy conditions, F687 and F760 followed similar diurnal patterns, in parallel with PAR. Under high irradiance associated with clear sky we observed an increase of the F760/F687 ratio, which we attributed to the contributions in the 760 nm emission of photosystem I fuorescence from deeper layers of the leaves, on one end, and by the decrease of 687 nm emission as a result of red fuorescence re-absorption, on the other end. We defned an approach to derive a proxy of fuorescence yield (FYSIF) from SIF measurements as a linear combination of F687 and F760 normalized by vegetation radiance, where the coefcients of the linear combination were derived from the spectral transmittance of Ledfex. We demonstrated a close relationship between diurnal cycles of FYSIF and Fs, which outperformed other approaches based on normalization by incident light. 2023-01-02T14:15:45Z 2023-01-02T14:15:45Z 2022 Artículo https://repositorio.catie.ac.cr/handle/11554/12220 openAccess en Photosynthesis Research https://doi.org/10.1007/s11120-022-00995-8 18 páginas application/pdf Photosynthesis Research
institution Centro Agronómico Tropical de Investigación y Enseñanza
collection Repositorio CATIE
language Inglés
topic FLUORESCENCIA
FLUORESCENCE
ENERGIA SOLAR
SOLAR ENERGY
PAPA
POTATOES
CLOROFILAS
CHLOROPHYLLS
PATATAS
LED
Sede Central
spellingShingle FLUORESCENCIA
FLUORESCENCE
ENERGIA SOLAR
SOLAR ENERGY
PAPA
POTATOES
CLOROFILAS
CHLOROPHYLLS
PATATAS
LED
Sede Central
Quiroz, Roberto A
y 4 autores más
Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields
description We performed active and passive measurements of diurnal cycles of chlorophyll fuorescence on potato crops at canopy level in outdoors conditions for 26 days. Active measurements of the stationary fuorescence yield (Fs) were performed using Ledfex, a fuorescence micro-LIDAR described in Moya et al. (Photosynth Res 142:1–15, 2019), capable of remote measurements of chlorophyll fuorescence under full sun-light in the wavelength range from 650 to 800 nm. Passive measurements of solar-induced fuorescence (SIF) fuxes were performed with Spectrofex, an instrument based on the method of flling-in in the O2A and O2B absorption bands at 760 nm (F760) and 687 nm (F687), respectively. Diurnal cycles of Fs showed signifcant variations throughout the day, directly attributed to changes in photosystem II yield. Contrasting patterns were observed according to illumination conditions. Under cloudy sky, Fs varied in parallel with photosynthetically active radiation (PAR). By contrast, during clear sky days, the diurnal cycle of Fs showed a “M” shape pattern with a minimum around noon. F687 and F760 showed diferent patterns, according to illumination conditions. Under low irradiance associated with cloudy conditions, F687 and F760 followed similar diurnal patterns, in parallel with PAR. Under high irradiance associated with clear sky we observed an increase of the F760/F687 ratio, which we attributed to the contributions in the 760 nm emission of photosystem I fuorescence from deeper layers of the leaves, on one end, and by the decrease of 687 nm emission as a result of red fuorescence re-absorption, on the other end. We defned an approach to derive a proxy of fuorescence yield (FYSIF) from SIF measurements as a linear combination of F687 and F760 normalized by vegetation radiance, where the coefcients of the linear combination were derived from the spectral transmittance of Ledfex. We demonstrated a close relationship between diurnal cycles of FYSIF and Fs, which outperformed other approaches based on normalization by incident light.
format Artículo
author Quiroz, Roberto A
y 4 autores más
author_facet Quiroz, Roberto A
y 4 autores más
author_sort Quiroz, Roberto A
title Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields
title_short Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields
title_full Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields
title_fullStr Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields
title_full_unstemmed Active and passive chlorophyll fuorescence measurements at canopy level on potato crops. Evidence of similitude of diurnal cycles of apparent fuorescence yields
title_sort active and passive chlorophyll fuorescence measurements at canopy level on potato crops. evidence of similitude of diurnal cycles of apparent fuorescence yields
publisher Photosynthesis Research
publishDate 2023
url https://repositorio.catie.ac.cr/handle/11554/12220
work_keys_str_mv AT quirozrobertoa activeandpassivechlorophyllfuorescencemeasurementsatcanopylevelonpotatocropsevidenceofsimilitudeofdiurnalcyclesofapparentfuorescenceyields
AT y4autoresmas activeandpassivechlorophyllfuorescencemeasurementsatcanopylevelonpotatocropsevidenceofsimilitudeofdiurnalcyclesofapparentfuorescenceyields
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