Cargando…

Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways

Aegilops tauschii (Coss.) is a highly deleterious, rapidly proliferating weed within the wheat, and its DD genome composition exhibits adaptability toward diverse abiotic stresses and demonstrates heightened efficacy in nutrient utilization. Current study investigated different variegated impacts of...

Descripción completa

Detalles Bibliográficos
Autores principales: Abbas, Adeel, Hameed, Rashida, Saeed, Muhammad, Shahani, Aitezaz A. A., Huang, Ping, Du, Daolin, Zulfiqar, Usman, Alamri, Saud, Alfagham, Alanoud T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10511890/
https://www.ncbi.nlm.nih.gov/pubmed/37745988
http://dx.doi.org/10.3389/fpls.2023.1238704
_version_ 1785108242832031744
author Abbas, Adeel
Hameed, Rashida
Saeed, Muhammad
Shahani, Aitezaz A. A.
Huang, Ping
Du, Daolin
Zulfiqar, Usman
Alamri, Saud
Alfagham, Alanoud T.
author_facet Abbas, Adeel
Hameed, Rashida
Saeed, Muhammad
Shahani, Aitezaz A. A.
Huang, Ping
Du, Daolin
Zulfiqar, Usman
Alamri, Saud
Alfagham, Alanoud T.
author_sort Abbas, Adeel
collection PubMed
description Aegilops tauschii (Coss.) is a highly deleterious, rapidly proliferating weed within the wheat, and its DD genome composition exhibits adaptability toward diverse abiotic stresses and demonstrates heightened efficacy in nutrient utilization. Current study investigated different variegated impacts of distinct nitrogen concentrations with varied plant densities, scrutinizing the behavior of Ae. tauschii under various salinity and drought stress levels through multiple physiological, biochemical, and molecular pathways. Different physiological parameters attaining high growth with different plant density and different nitrogen availability levels increased Ae. tauschii dominancy. Conversely, under the duress of salinity and drought, Ae. tauschii showcased an enhanced performance through a comprehensive array of physiological and biochemical parameters, including catalase, peroxidase, malondialdehyde, and proline content. Notably, salinity-associated traits such as sodium, potassium, and the sodium–potassium ratio exhibited significant variations and demonstrated remarkable tolerance capabilities. In the domain of molecular pathways, the HKT and DREB genes have displayed a remarkable upregulation, showcasing a comparatively elevated expression profile in reaction to different levels of salinity and drought-induced stress. Without a doubt, this information will make a substantial contribution to the understanding of the fundamental behavioral tendencies and the efficiency of nutrient utilization in Ae. tauschii. Moreover, it will offer innovative viewpoints for integrated management, thereby enabling the enhancement of strategies for adept control and alleviation.
format Online
Article
Text
id pubmed-10511890
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-105118902023-09-22 Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways Abbas, Adeel Hameed, Rashida Saeed, Muhammad Shahani, Aitezaz A. A. Huang, Ping Du, Daolin Zulfiqar, Usman Alamri, Saud Alfagham, Alanoud T. Front Plant Sci Plant Science Aegilops tauschii (Coss.) is a highly deleterious, rapidly proliferating weed within the wheat, and its DD genome composition exhibits adaptability toward diverse abiotic stresses and demonstrates heightened efficacy in nutrient utilization. Current study investigated different variegated impacts of distinct nitrogen concentrations with varied plant densities, scrutinizing the behavior of Ae. tauschii under various salinity and drought stress levels through multiple physiological, biochemical, and molecular pathways. Different physiological parameters attaining high growth with different plant density and different nitrogen availability levels increased Ae. tauschii dominancy. Conversely, under the duress of salinity and drought, Ae. tauschii showcased an enhanced performance through a comprehensive array of physiological and biochemical parameters, including catalase, peroxidase, malondialdehyde, and proline content. Notably, salinity-associated traits such as sodium, potassium, and the sodium–potassium ratio exhibited significant variations and demonstrated remarkable tolerance capabilities. In the domain of molecular pathways, the HKT and DREB genes have displayed a remarkable upregulation, showcasing a comparatively elevated expression profile in reaction to different levels of salinity and drought-induced stress. Without a doubt, this information will make a substantial contribution to the understanding of the fundamental behavioral tendencies and the efficiency of nutrient utilization in Ae. tauschii. Moreover, it will offer innovative viewpoints for integrated management, thereby enabling the enhancement of strategies for adept control and alleviation. Frontiers Media S.A. 2023-09-06 /pmc/articles/PMC10511890/ /pubmed/37745988 http://dx.doi.org/10.3389/fpls.2023.1238704 Text en Copyright © 2023 Abbas, Hameed, Saeed, Shahani, Huang, Du, Zulfiqar, Alamri and Alfagham 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
Abbas, Adeel
Hameed, Rashida
Saeed, Muhammad
Shahani, Aitezaz A. A.
Huang, Ping
Du, Daolin
Zulfiqar, Usman
Alamri, Saud
Alfagham, Alanoud T.
Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
title Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
title_full Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
title_fullStr Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
title_full_unstemmed Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
title_short Investigating the dynamic responses of Aegilops tauschii Coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
title_sort investigating the dynamic responses of aegilops tauschii coss. to salinity, drought, and nitrogen stress: a comprehensive study of competitive growth and biochemical and molecular pathways
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10511890/
https://www.ncbi.nlm.nih.gov/pubmed/37745988
http://dx.doi.org/10.3389/fpls.2023.1238704
work_keys_str_mv AT abbasadeel investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT hameedrashida investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT saeedmuhammad investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT shahaniaitezazaa investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT huangping investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT dudaolin investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT zulfiqarusman investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT alamrisaud investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways
AT alfaghamalanoudt investigatingthedynamicresponsesofaegilopstauschiicosstosalinitydroughtandnitrogenstressacomprehensivestudyofcompetitivegrowthandbiochemicalandmolecularpathways