Cargando…

The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review

Abiotic stresses and climate changes cause severe loss of yield and quality of crops and reduce the production area worldwide. Flooding stress curtails soybean growth, yield, and quality and ultimately threatens the global food supply chain. Flooding tolerance is a multigenic trait. Tremendous resea...

Descripción completa

Detalles Bibliográficos
Autores principales: Yijun, Guan, Zhiming, Xie, Jianing, Guan, Qian, Zhao, Rasheed, Adnan, Hussain, Muhammad Iftikhar, Ali, Iftikhar, Shuheng, Zhang, Hassan, Muhammad Umair, Hashem, Mohamed, Mostafa, Yasser S., Wang, Yueqiang, Chen, Liang, Xiaoxue, Wang, Jian, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9835000/
https://www.ncbi.nlm.nih.gov/pubmed/36643298
http://dx.doi.org/10.3389/fpls.2022.1085368
_version_ 1784868584233631744
author Yijun, Guan
Zhiming, Xie
Jianing, Guan
Qian, Zhao
Rasheed, Adnan
Hussain, Muhammad Iftikhar
Ali, Iftikhar
Shuheng, Zhang
Hassan, Muhammad Umair
Hashem, Mohamed
Mostafa, Yasser S.
Wang, Yueqiang
Chen, Liang
Xiaoxue, Wang
Jian, Wei
author_facet Yijun, Guan
Zhiming, Xie
Jianing, Guan
Qian, Zhao
Rasheed, Adnan
Hussain, Muhammad Iftikhar
Ali, Iftikhar
Shuheng, Zhang
Hassan, Muhammad Umair
Hashem, Mohamed
Mostafa, Yasser S.
Wang, Yueqiang
Chen, Liang
Xiaoxue, Wang
Jian, Wei
author_sort Yijun, Guan
collection PubMed
description Abiotic stresses and climate changes cause severe loss of yield and quality of crops and reduce the production area worldwide. Flooding stress curtails soybean growth, yield, and quality and ultimately threatens the global food supply chain. Flooding tolerance is a multigenic trait. Tremendous research in molecular breeding explored the potential genomic regions governing flood tolerance in soybean. The most robust way to develop flooding tolerance in soybean is by using molecular methods, including quantitative trait loci (QTL) mapping, identification of transcriptomes, transcription factor analysis, CRISPR/Cas9, and to some extent, genome-wide association studies (GWAS), and multi-omics techniques. These powerful molecular tools have deepened our knowledge about the molecular mechanism of flooding stress tolerance. Besides all this, using conventional breeding methods (hybridization, introduction, and backcrossing) and other agronomic practices is also helpful in combating the rising flooding threats to the soybean crop. The current review aims to summarize recent advancements in breeding flood-tolerant soybean, mainly by using molecular and conventional tools and their prospects. This updated picture will be a treasure trove for future researchers to comprehend the foundation of flooding tolerance in soybean and cover the given research gaps to develop tolerant soybean cultivars able to sustain growth under extreme climatic changes.
format Online
Article
Text
id pubmed-9835000
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-98350002023-01-13 The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review Yijun, Guan Zhiming, Xie Jianing, Guan Qian, Zhao Rasheed, Adnan Hussain, Muhammad Iftikhar Ali, Iftikhar Shuheng, Zhang Hassan, Muhammad Umair Hashem, Mohamed Mostafa, Yasser S. Wang, Yueqiang Chen, Liang Xiaoxue, Wang Jian, Wei Front Plant Sci Plant Science Abiotic stresses and climate changes cause severe loss of yield and quality of crops and reduce the production area worldwide. Flooding stress curtails soybean growth, yield, and quality and ultimately threatens the global food supply chain. Flooding tolerance is a multigenic trait. Tremendous research in molecular breeding explored the potential genomic regions governing flood tolerance in soybean. The most robust way to develop flooding tolerance in soybean is by using molecular methods, including quantitative trait loci (QTL) mapping, identification of transcriptomes, transcription factor analysis, CRISPR/Cas9, and to some extent, genome-wide association studies (GWAS), and multi-omics techniques. These powerful molecular tools have deepened our knowledge about the molecular mechanism of flooding stress tolerance. Besides all this, using conventional breeding methods (hybridization, introduction, and backcrossing) and other agronomic practices is also helpful in combating the rising flooding threats to the soybean crop. The current review aims to summarize recent advancements in breeding flood-tolerant soybean, mainly by using molecular and conventional tools and their prospects. This updated picture will be a treasure trove for future researchers to comprehend the foundation of flooding tolerance in soybean and cover the given research gaps to develop tolerant soybean cultivars able to sustain growth under extreme climatic changes. Frontiers Media S.A. 2022-12-23 /pmc/articles/PMC9835000/ /pubmed/36643298 http://dx.doi.org/10.3389/fpls.2022.1085368 Text en Copyright © 2022 Yijun, Zhiming, Jianing, Qian, Rasheed, Hussain, Ali, Shuheng, Hassan, Hashem, Mostafa, Wang, Chen, Xiaoxue and Jian https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Yijun, Guan
Zhiming, Xie
Jianing, Guan
Qian, Zhao
Rasheed, Adnan
Hussain, Muhammad Iftikhar
Ali, Iftikhar
Shuheng, Zhang
Hassan, Muhammad Umair
Hashem, Mohamed
Mostafa, Yasser S.
Wang, Yueqiang
Chen, Liang
Xiaoxue, Wang
Jian, Wei
The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review
title The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review
title_full The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review
title_fullStr The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review
title_full_unstemmed The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review
title_short The intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – An review
title_sort intervention of classical and molecular breeding approaches to enhance flooding stress tolerance in soybean – an review
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9835000/
https://www.ncbi.nlm.nih.gov/pubmed/36643298
http://dx.doi.org/10.3389/fpls.2022.1085368
work_keys_str_mv AT yijunguan theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT zhimingxie theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT jianingguan theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT qianzhao theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT rasheedadnan theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT hussainmuhammadiftikhar theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT aliiftikhar theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT shuhengzhang theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT hassanmuhammadumair theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT hashemmohamed theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT mostafayassers theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT wangyueqiang theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT chenliang theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT xiaoxuewang theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT jianwei theinterventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT yijunguan interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT zhimingxie interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT jianingguan interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT qianzhao interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT rasheedadnan interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT hussainmuhammadiftikhar interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT aliiftikhar interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT shuhengzhang interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT hassanmuhammadumair interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT hashemmohamed interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT mostafayassers interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT wangyueqiang interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT chenliang interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT xiaoxuewang interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview
AT jianwei interventionofclassicalandmolecularbreedingapproachestoenhancefloodingstresstoleranceinsoybeananreview