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Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms

Wheat is an important global staple food crop; however, its productivity is severely hampered by changing climate. Erratic rain patterns cause terminal drought stress, which affect reproductive development and crop yield. This study investigates the potential and zinc (Zn) and silicon (Si) to amelio...

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Autores principales: Sattar, Abdul, Wang, Xiukang, Abbas, Tahira, Sher, Ahmad, Ijaz, Muhammad, Ul-Allah, Sami, Irfan, Muhammad, Butt, Madiha, Wahid, Muhammad Ashfaq, Cheema, Mumtaz, Fiaz, Sajid, Qayyum, Abdul, Ansari, Mohammad Javed, Alharbi, Sulaiman Ali, Wainwright, Milton, Ahmad, Furqan, Xie, Kui, Zuan, Ali Tan Kee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8496791/
https://www.ncbi.nlm.nih.gov/pubmed/34618822
http://dx.doi.org/10.1371/journal.pone.0256984
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author Sattar, Abdul
Wang, Xiukang
Abbas, Tahira
Sher, Ahmad
Ijaz, Muhammad
Ul-Allah, Sami
Irfan, Muhammad
Butt, Madiha
Wahid, Muhammad Ashfaq
Cheema, Mumtaz
Fiaz, Sajid
Qayyum, Abdul
Ansari, Mohammad Javed
Alharbi, Sulaiman Ali
Wainwright, Milton
Ahmad, Furqan
Xie, Kui
Zuan, Ali Tan Kee
author_facet Sattar, Abdul
Wang, Xiukang
Abbas, Tahira
Sher, Ahmad
Ijaz, Muhammad
Ul-Allah, Sami
Irfan, Muhammad
Butt, Madiha
Wahid, Muhammad Ashfaq
Cheema, Mumtaz
Fiaz, Sajid
Qayyum, Abdul
Ansari, Mohammad Javed
Alharbi, Sulaiman Ali
Wainwright, Milton
Ahmad, Furqan
Xie, Kui
Zuan, Ali Tan Kee
author_sort Sattar, Abdul
collection PubMed
description Wheat is an important global staple food crop; however, its productivity is severely hampered by changing climate. Erratic rain patterns cause terminal drought stress, which affect reproductive development and crop yield. This study investigates the potential and zinc (Zn) and silicon (Si) to ameliorate terminal drought stress in wheat and associated mechanisms. Two different drought stress levels, i.e., control [80% water holding capacity (WHC) was maintained] and terminal drought stress (40% WHC maintained from BBCH growth stage 49 to 83) combined with five foliar-applied Zn-Si combinations (i.e., control, water spray, 4 mM Zn, 40 mM Si, 4 mM Zn + 40 mM Si applied 7 days after the initiation of drought stress). Results revealed that application of Zn and Si improved chlorophyll and relative water contents under well-watered conditions and terminal drought stress. Foliar application of Si and Zn had significant effect on antioxidant defense mechanism, proline and soluble protein, which showed that application of Si and Zn ameliorated the effects of terminal drought stress mainly by regulating antioxidant defense mechanism, and production of proline and soluble proteins. Combined application of Zn and Si resulted in the highest improvement in growth and antioxidant defense. The application of Zn and Si improved yield and related traits, both under well-watered conditions and terminal drought stress. The highest yield and related traits were recorded for combined application of Zn and Si. For grain and biological yield differences among sole and combined Zn-Si application were statistically non-significant (p>0.05). In conclusion, combined application of Zn-Si ameliorated the adverse effects of terminal drought stress by improving yield through regulating antioxidant mechanism and production of proline and soluble proteins. Results provide valuable insights for further cross talk between Zn-Si regulatory pathways to enhance grain biofortification.
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spelling pubmed-84967912021-10-08 Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms Sattar, Abdul Wang, Xiukang Abbas, Tahira Sher, Ahmad Ijaz, Muhammad Ul-Allah, Sami Irfan, Muhammad Butt, Madiha Wahid, Muhammad Ashfaq Cheema, Mumtaz Fiaz, Sajid Qayyum, Abdul Ansari, Mohammad Javed Alharbi, Sulaiman Ali Wainwright, Milton Ahmad, Furqan Xie, Kui Zuan, Ali Tan Kee PLoS One Research Article Wheat is an important global staple food crop; however, its productivity is severely hampered by changing climate. Erratic rain patterns cause terminal drought stress, which affect reproductive development and crop yield. This study investigates the potential and zinc (Zn) and silicon (Si) to ameliorate terminal drought stress in wheat and associated mechanisms. Two different drought stress levels, i.e., control [80% water holding capacity (WHC) was maintained] and terminal drought stress (40% WHC maintained from BBCH growth stage 49 to 83) combined with five foliar-applied Zn-Si combinations (i.e., control, water spray, 4 mM Zn, 40 mM Si, 4 mM Zn + 40 mM Si applied 7 days after the initiation of drought stress). Results revealed that application of Zn and Si improved chlorophyll and relative water contents under well-watered conditions and terminal drought stress. Foliar application of Si and Zn had significant effect on antioxidant defense mechanism, proline and soluble protein, which showed that application of Si and Zn ameliorated the effects of terminal drought stress mainly by regulating antioxidant defense mechanism, and production of proline and soluble proteins. Combined application of Zn and Si resulted in the highest improvement in growth and antioxidant defense. The application of Zn and Si improved yield and related traits, both under well-watered conditions and terminal drought stress. The highest yield and related traits were recorded for combined application of Zn and Si. For grain and biological yield differences among sole and combined Zn-Si application were statistically non-significant (p>0.05). In conclusion, combined application of Zn-Si ameliorated the adverse effects of terminal drought stress by improving yield through regulating antioxidant mechanism and production of proline and soluble proteins. Results provide valuable insights for further cross talk between Zn-Si regulatory pathways to enhance grain biofortification. Public Library of Science 2021-10-07 /pmc/articles/PMC8496791/ /pubmed/34618822 http://dx.doi.org/10.1371/journal.pone.0256984 Text en © 2021 Sattar et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Sattar, Abdul
Wang, Xiukang
Abbas, Tahira
Sher, Ahmad
Ijaz, Muhammad
Ul-Allah, Sami
Irfan, Muhammad
Butt, Madiha
Wahid, Muhammad Ashfaq
Cheema, Mumtaz
Fiaz, Sajid
Qayyum, Abdul
Ansari, Mohammad Javed
Alharbi, Sulaiman Ali
Wainwright, Milton
Ahmad, Furqan
Xie, Kui
Zuan, Ali Tan Kee
Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
title Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
title_full Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
title_fullStr Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
title_full_unstemmed Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
title_short Combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
title_sort combined application of zinc and silicon alleviates terminal drought stress in wheat by triggering morpho-physiological and antioxidants defense mechanisms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8496791/
https://www.ncbi.nlm.nih.gov/pubmed/34618822
http://dx.doi.org/10.1371/journal.pone.0256984
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