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Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera)
High-throughput and large-scale measurements of chlorophyll a fluorescence (ChlF) are of great interest to investigate the photosynthetic performance of plants in the field. Here, we tested the capability to rapidly, precisely, and simultaneously estimate the number of pulse-amplitude-modulation Chl...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7504383/ https://www.ncbi.nlm.nih.gov/pubmed/32899403 http://dx.doi.org/10.3390/ijms21176441 |
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author | Cotrozzi, Lorenzo Lorenzini, Giacomo Nali, Cristina Pellegrini, Elisa Saponaro, Vincenzo Hoshika, Yasutomo Arab, Leila Rennenberg, Heinz Paoletti, Elena |
author_facet | Cotrozzi, Lorenzo Lorenzini, Giacomo Nali, Cristina Pellegrini, Elisa Saponaro, Vincenzo Hoshika, Yasutomo Arab, Leila Rennenberg, Heinz Paoletti, Elena |
author_sort | Cotrozzi, Lorenzo |
collection | PubMed |
description | High-throughput and large-scale measurements of chlorophyll a fluorescence (ChlF) are of great interest to investigate the photosynthetic performance of plants in the field. Here, we tested the capability to rapidly, precisely, and simultaneously estimate the number of pulse-amplitude-modulation ChlF parameters commonly calculated from both dark- and light-adapted leaves (an operation which usually takes tens of minutes) from the reflectance of hyperspectral data collected on light-adapted leaves of date palm seedlings chronically exposed in a FACE facility to three ozone (O(3)) concentrations (ambient air, AA; target 1.5 × AA O(3), named as moderate O(3), MO; target 2 × AA O(3), named as elevated O(3), EO) for 75 consecutive days. Leaf spectral measurements were paired with reference measurements of ChlF, and predictive spectral models were constructed using partial least squares regression. Most of the ChlF parameters were well predicted by spectroscopic models (average model goodness-of-fit for validation, R(2): 0.53–0.82). Furthermore, comparing the full-range spectral profiles (i.e., 400–2400 nm), it was possible to distinguish with high accuracy (81% of success) plants exposed to the different O(3) concentrations, especially those exposed to EO from those exposed to MO and AA. This was possible even in the absence of visible foliar injury and using a moderately O(3)-susceptible species like the date palm. The latter view is confirmed by the few variations of the ChlF parameters, that occurred only under EO. The results of the current study could be applied in several scientific fields, such as precision agriculture and plant phenotyping. |
format | Online Article Text |
id | pubmed-7504383 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-75043832020-09-24 Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) Cotrozzi, Lorenzo Lorenzini, Giacomo Nali, Cristina Pellegrini, Elisa Saponaro, Vincenzo Hoshika, Yasutomo Arab, Leila Rennenberg, Heinz Paoletti, Elena Int J Mol Sci Article High-throughput and large-scale measurements of chlorophyll a fluorescence (ChlF) are of great interest to investigate the photosynthetic performance of plants in the field. Here, we tested the capability to rapidly, precisely, and simultaneously estimate the number of pulse-amplitude-modulation ChlF parameters commonly calculated from both dark- and light-adapted leaves (an operation which usually takes tens of minutes) from the reflectance of hyperspectral data collected on light-adapted leaves of date palm seedlings chronically exposed in a FACE facility to three ozone (O(3)) concentrations (ambient air, AA; target 1.5 × AA O(3), named as moderate O(3), MO; target 2 × AA O(3), named as elevated O(3), EO) for 75 consecutive days. Leaf spectral measurements were paired with reference measurements of ChlF, and predictive spectral models were constructed using partial least squares regression. Most of the ChlF parameters were well predicted by spectroscopic models (average model goodness-of-fit for validation, R(2): 0.53–0.82). Furthermore, comparing the full-range spectral profiles (i.e., 400–2400 nm), it was possible to distinguish with high accuracy (81% of success) plants exposed to the different O(3) concentrations, especially those exposed to EO from those exposed to MO and AA. This was possible even in the absence of visible foliar injury and using a moderately O(3)-susceptible species like the date palm. The latter view is confirmed by the few variations of the ChlF parameters, that occurred only under EO. The results of the current study could be applied in several scientific fields, such as precision agriculture and plant phenotyping. MDPI 2020-09-03 /pmc/articles/PMC7504383/ /pubmed/32899403 http://dx.doi.org/10.3390/ijms21176441 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Cotrozzi, Lorenzo Lorenzini, Giacomo Nali, Cristina Pellegrini, Elisa Saponaro, Vincenzo Hoshika, Yasutomo Arab, Leila Rennenberg, Heinz Paoletti, Elena Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) |
title | Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) |
title_full | Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) |
title_fullStr | Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) |
title_full_unstemmed | Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) |
title_short | Hyperspectral Reflectance of Light-Adapted Leaves Can Predict Both Dark- and Light-Adapted Chl Fluorescence Parameters, and the Effects of Chronic Ozone Exposure on Date Palm (Phoenix dactylifera) |
title_sort | hyperspectral reflectance of light-adapted leaves can predict both dark- and light-adapted chl fluorescence parameters, and the effects of chronic ozone exposure on date palm (phoenix dactylifera) |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7504383/ https://www.ncbi.nlm.nih.gov/pubmed/32899403 http://dx.doi.org/10.3390/ijms21176441 |
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