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Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate

Drought and salinity are the major environmental abiotic stresses that negatively impact crop development and yield. To improve yields under abiotic stress conditions, drought- and salinity-tolerant crops are key to support world crop production and mitigate the demand of the growing world populatio...

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Autores principales: Billah, Masum, Aktar, Shirin, Brestic, Marian, Zivcak, Marek, Khaldun, Abul Bashar Mohammad, Uddin, Md. Shalim, Bagum, Shamim Ara, Yang, Xinghong, Skalicky, Milan, Mehari, Teame Gereziher, Maitra, Sagar, Hossain, Akbar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8471759/
https://www.ncbi.nlm.nih.gov/pubmed/34579441
http://dx.doi.org/10.3390/plants10091910
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author Billah, Masum
Aktar, Shirin
Brestic, Marian
Zivcak, Marek
Khaldun, Abul Bashar Mohammad
Uddin, Md. Shalim
Bagum, Shamim Ara
Yang, Xinghong
Skalicky, Milan
Mehari, Teame Gereziher
Maitra, Sagar
Hossain, Akbar
author_facet Billah, Masum
Aktar, Shirin
Brestic, Marian
Zivcak, Marek
Khaldun, Abul Bashar Mohammad
Uddin, Md. Shalim
Bagum, Shamim Ara
Yang, Xinghong
Skalicky, Milan
Mehari, Teame Gereziher
Maitra, Sagar
Hossain, Akbar
author_sort Billah, Masum
collection PubMed
description Drought and salinity are the major environmental abiotic stresses that negatively impact crop development and yield. To improve yields under abiotic stress conditions, drought- and salinity-tolerant crops are key to support world crop production and mitigate the demand of the growing world population. Nevertheless, plant responses to abiotic stresses are highly complex and controlled by networks of genetic and ecological factors that are the main targets of crop breeding programs. Several genomics strategies are employed to improve crop productivity under abiotic stress conditions, but traditional techniques are not sufficient to prevent stress-related losses in productivity. Within the last decade, modern genomics studies have advanced our capabilities of improving crop genetics, especially those traits relevant to abiotic stress management. This review provided updated and comprehensive knowledge concerning all possible combinations of advanced genomics tools and the gene regulatory network of reactive oxygen species homeostasis for the appropriate planning of future breeding programs, which will assist sustainable crop production under salinity and drought conditions.
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spelling pubmed-84717592021-09-28 Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate Billah, Masum Aktar, Shirin Brestic, Marian Zivcak, Marek Khaldun, Abul Bashar Mohammad Uddin, Md. Shalim Bagum, Shamim Ara Yang, Xinghong Skalicky, Milan Mehari, Teame Gereziher Maitra, Sagar Hossain, Akbar Plants (Basel) Review Drought and salinity are the major environmental abiotic stresses that negatively impact crop development and yield. To improve yields under abiotic stress conditions, drought- and salinity-tolerant crops are key to support world crop production and mitigate the demand of the growing world population. Nevertheless, plant responses to abiotic stresses are highly complex and controlled by networks of genetic and ecological factors that are the main targets of crop breeding programs. Several genomics strategies are employed to improve crop productivity under abiotic stress conditions, but traditional techniques are not sufficient to prevent stress-related losses in productivity. Within the last decade, modern genomics studies have advanced our capabilities of improving crop genetics, especially those traits relevant to abiotic stress management. This review provided updated and comprehensive knowledge concerning all possible combinations of advanced genomics tools and the gene regulatory network of reactive oxygen species homeostasis for the appropriate planning of future breeding programs, which will assist sustainable crop production under salinity and drought conditions. MDPI 2021-09-14 /pmc/articles/PMC8471759/ /pubmed/34579441 http://dx.doi.org/10.3390/plants10091910 Text en © 2021 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 Review
Billah, Masum
Aktar, Shirin
Brestic, Marian
Zivcak, Marek
Khaldun, Abul Bashar Mohammad
Uddin, Md. Shalim
Bagum, Shamim Ara
Yang, Xinghong
Skalicky, Milan
Mehari, Teame Gereziher
Maitra, Sagar
Hossain, Akbar
Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate
title Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate
title_full Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate
title_fullStr Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate
title_full_unstemmed Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate
title_short Progressive Genomic Approaches to Explore Drought- and Salt-Induced Oxidative Stress Responses in Plants under Changing Climate
title_sort progressive genomic approaches to explore drought- and salt-induced oxidative stress responses in plants under changing climate
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8471759/
https://www.ncbi.nlm.nih.gov/pubmed/34579441
http://dx.doi.org/10.3390/plants10091910
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