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The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability

Tropospheric ozone (O(3)) enrichment caused by human activities can reduce important crop yields with huge economic loss and affect the global carbon cycle and climate change in the coming decades. In this study, two Italian cultivars of durum wheat (Claudio and Mongibello) were exposed to O(3) (80...

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Autores principales: Ma, Limin, Chen, Chong, Cotrozzi, Lorenzo, Bu, Chengcheng, Luo, Jiahong, Yao, Guodong, Chen, Guangyao, Zhang, Weiwei, Nali, Cristina, Lorenzini, Giacomo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9695353/
https://www.ncbi.nlm.nih.gov/pubmed/36432912
http://dx.doi.org/10.3390/plants11223185
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author Ma, Limin
Chen, Chong
Cotrozzi, Lorenzo
Bu, Chengcheng
Luo, Jiahong
Yao, Guodong
Chen, Guangyao
Zhang, Weiwei
Nali, Cristina
Lorenzini, Giacomo
author_facet Ma, Limin
Chen, Chong
Cotrozzi, Lorenzo
Bu, Chengcheng
Luo, Jiahong
Yao, Guodong
Chen, Guangyao
Zhang, Weiwei
Nali, Cristina
Lorenzini, Giacomo
author_sort Ma, Limin
collection PubMed
description Tropospheric ozone (O(3)) enrichment caused by human activities can reduce important crop yields with huge economic loss and affect the global carbon cycle and climate change in the coming decades. In this study, two Italian cultivars of durum wheat (Claudio and Mongibello) were exposed to O(3) (80 ppb, 5 h day(−1) for 70 consecutive days), with the aim to investigate the changes in yield and biomass, ecophysiological traits, and stable carbon and nitrogen isotope values in plants, and to compare the stable isotope responses under environmental stressors. Both cultivars showed a relative O(3) tolerance in terms of photosynthetic performance, but in cultivar Mongibello, O(3) was detrimental to the grain yield and plant biomass. The δ(13)C values in the leaves of plants identified that the impact of O(3) on CO(2) fixation by RuBisCO was dominant. The δ(15)N value showed significant differences between treatments in both cultivars at seven days from the beginning of the exposure, which could be considered an early indicator of ozone pollution. Under increasingly frequent extreme climates globally, the relationships among stable isotope data, ecophysiological traits, and agronomic parameters could help breed future cultivars.
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spelling pubmed-96953532022-11-26 The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability Ma, Limin Chen, Chong Cotrozzi, Lorenzo Bu, Chengcheng Luo, Jiahong Yao, Guodong Chen, Guangyao Zhang, Weiwei Nali, Cristina Lorenzini, Giacomo Plants (Basel) Article Tropospheric ozone (O(3)) enrichment caused by human activities can reduce important crop yields with huge economic loss and affect the global carbon cycle and climate change in the coming decades. In this study, two Italian cultivars of durum wheat (Claudio and Mongibello) were exposed to O(3) (80 ppb, 5 h day(−1) for 70 consecutive days), with the aim to investigate the changes in yield and biomass, ecophysiological traits, and stable carbon and nitrogen isotope values in plants, and to compare the stable isotope responses under environmental stressors. Both cultivars showed a relative O(3) tolerance in terms of photosynthetic performance, but in cultivar Mongibello, O(3) was detrimental to the grain yield and plant biomass. The δ(13)C values in the leaves of plants identified that the impact of O(3) on CO(2) fixation by RuBisCO was dominant. The δ(15)N value showed significant differences between treatments in both cultivars at seven days from the beginning of the exposure, which could be considered an early indicator of ozone pollution. Under increasingly frequent extreme climates globally, the relationships among stable isotope data, ecophysiological traits, and agronomic parameters could help breed future cultivars. MDPI 2022-11-21 /pmc/articles/PMC9695353/ /pubmed/36432912 http://dx.doi.org/10.3390/plants11223185 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, Limin
Chen, Chong
Cotrozzi, Lorenzo
Bu, Chengcheng
Luo, Jiahong
Yao, Guodong
Chen, Guangyao
Zhang, Weiwei
Nali, Cristina
Lorenzini, Giacomo
The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability
title The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability
title_full The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability
title_fullStr The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability
title_full_unstemmed The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability
title_short The Effects of Elevated Tropospheric Ozone on Carbon Fixation and Stable Isotopic Signatures of Durum Wheat Cultivars with Different Biomass and Yield Stability
title_sort effects of elevated tropospheric ozone on carbon fixation and stable isotopic signatures of durum wheat cultivars with different biomass and yield stability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9695353/
https://www.ncbi.nlm.nih.gov/pubmed/36432912
http://dx.doi.org/10.3390/plants11223185
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