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Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages

INTRODUCTION: Soil polluted with Nickel (Ni) adversely affects sunflower growth resulting in reduced yield. Counterbalancing Ni toxicity requires complex molecular, biochemical, and physiological mechanisms at the cellular, tissue, and whole plant levels, which might improve crop productivity. One o...

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Autores principales: Ijaz, Munazza, Ansari, Mahmood-ur-Rahman, Alafari, Hayat Ali, Iqbal, Muhammad, Alshaya, Dalal S., Fiaz, Sajid, Ahmad, Hafiz Muhammad, Zubair, Muhammad, Ramzani, Pia Muhammad Adnan, Iqbal, Javed, Abushady, Asmaa M., Attia, Kotb
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9751920/
https://www.ncbi.nlm.nih.gov/pubmed/36531389
http://dx.doi.org/10.3389/fpls.2022.1072671
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author Ijaz, Munazza
Ansari, Mahmood-ur-Rahman
Alafari, Hayat Ali
Iqbal, Muhammad
Alshaya, Dalal S.
Fiaz, Sajid
Ahmad, Hafiz Muhammad
Zubair, Muhammad
Ramzani, Pia Muhammad Adnan
Iqbal, Javed
Abushady, Asmaa M.
Attia, Kotb
author_facet Ijaz, Munazza
Ansari, Mahmood-ur-Rahman
Alafari, Hayat Ali
Iqbal, Muhammad
Alshaya, Dalal S.
Fiaz, Sajid
Ahmad, Hafiz Muhammad
Zubair, Muhammad
Ramzani, Pia Muhammad Adnan
Iqbal, Javed
Abushady, Asmaa M.
Attia, Kotb
author_sort Ijaz, Munazza
collection PubMed
description INTRODUCTION: Soil polluted with Nickel (Ni) adversely affects sunflower growth resulting in reduced yield. Counterbalancing Ni toxicity requires complex molecular, biochemical, and physiological mechanisms at the cellular, tissue, and whole plant levels, which might improve crop productivity. One of the primary adaptations to tolerate Ni toxicity is the enhanced production of antioxidant enzymes and the elevated expression of Ni responsive genes. METHODS: In this study, biochemical parameters, production of ROS, antioxidants regulation, and expression of NRAMP metal transporter genes were studied under Ni stress in sunflower. There were four soil Ni treatments (0, 50, 100, and 200 mg kg(-1) soil), while citric acid (CA, 5 mM kg(-1) soil) was applied on the 28(th) and 58(th) days of plant growth. The samples for all analyses were obtained on the 30(th) and 60(th) day of plant growth, respectively. RESULTS AND DISCUSSION: The results indicated that the concentrations of Ni in roots and shoots were increased with increasing concentrations of Ni at both time intervals. Proline contents, ascorbic acid, protein, and total phenolics were reduced under Ni-stress, but with the application of CA, improvement was witnessed in their contents. The levels of malondialdehyde and hydrogen peroxide were enhanced with the increasing concentration of Ni, and after applying CA, they were reduced. The contents of antioxidants, i.e., catalase, peroxidase, superoxide dismutase, ascorbate peroxidase, dehydroascorbate reductase, and glutathione reductase, were increased at 50 ppm Ni concentration and decreased at higher concentrations of Ni. The application of CA significantly improved antioxidants at all concentrations of Ni. The enhanced expression of NRAMP1 (4, 51 and 81 folds) and NRAMP3 (1.05, 4 and 6 folds) was found at 50, 100 and 200ppm Ni-stress, respectively in 30 days old plants and the same pattern of expression was recorded in 60 days old plants. CA further enhanced the expression at both developmental stages. CONCLUSION: In conclusion, CA enhances Ni phytoextraction efficiency as well as protect plant against oxidative stress caused by Ni in sunflower.
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spelling pubmed-97519202022-12-16 Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages Ijaz, Munazza Ansari, Mahmood-ur-Rahman Alafari, Hayat Ali Iqbal, Muhammad Alshaya, Dalal S. Fiaz, Sajid Ahmad, Hafiz Muhammad Zubair, Muhammad Ramzani, Pia Muhammad Adnan Iqbal, Javed Abushady, Asmaa M. Attia, Kotb Front Plant Sci Plant Science INTRODUCTION: Soil polluted with Nickel (Ni) adversely affects sunflower growth resulting in reduced yield. Counterbalancing Ni toxicity requires complex molecular, biochemical, and physiological mechanisms at the cellular, tissue, and whole plant levels, which might improve crop productivity. One of the primary adaptations to tolerate Ni toxicity is the enhanced production of antioxidant enzymes and the elevated expression of Ni responsive genes. METHODS: In this study, biochemical parameters, production of ROS, antioxidants regulation, and expression of NRAMP metal transporter genes were studied under Ni stress in sunflower. There were four soil Ni treatments (0, 50, 100, and 200 mg kg(-1) soil), while citric acid (CA, 5 mM kg(-1) soil) was applied on the 28(th) and 58(th) days of plant growth. The samples for all analyses were obtained on the 30(th) and 60(th) day of plant growth, respectively. RESULTS AND DISCUSSION: The results indicated that the concentrations of Ni in roots and shoots were increased with increasing concentrations of Ni at both time intervals. Proline contents, ascorbic acid, protein, and total phenolics were reduced under Ni-stress, but with the application of CA, improvement was witnessed in their contents. The levels of malondialdehyde and hydrogen peroxide were enhanced with the increasing concentration of Ni, and after applying CA, they were reduced. The contents of antioxidants, i.e., catalase, peroxidase, superoxide dismutase, ascorbate peroxidase, dehydroascorbate reductase, and glutathione reductase, were increased at 50 ppm Ni concentration and decreased at higher concentrations of Ni. The application of CA significantly improved antioxidants at all concentrations of Ni. The enhanced expression of NRAMP1 (4, 51 and 81 folds) and NRAMP3 (1.05, 4 and 6 folds) was found at 50, 100 and 200ppm Ni-stress, respectively in 30 days old plants and the same pattern of expression was recorded in 60 days old plants. CA further enhanced the expression at both developmental stages. CONCLUSION: In conclusion, CA enhances Ni phytoextraction efficiency as well as protect plant against oxidative stress caused by Ni in sunflower. Frontiers Media S.A. 2022-12-01 /pmc/articles/PMC9751920/ /pubmed/36531389 http://dx.doi.org/10.3389/fpls.2022.1072671 Text en Copyright © 2022 Ijaz, Ansari, Alafari, Iqbal, Alshaya, Fiaz, Ahmad, Zubair, Ramzani, Iqbal, Abushady and Attia 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
Ijaz, Munazza
Ansari, Mahmood-ur-Rahman
Alafari, Hayat Ali
Iqbal, Muhammad
Alshaya, Dalal S.
Fiaz, Sajid
Ahmad, Hafiz Muhammad
Zubair, Muhammad
Ramzani, Pia Muhammad Adnan
Iqbal, Javed
Abushady, Asmaa M.
Attia, Kotb
Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages
title Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages
title_full Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages
title_fullStr Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages
title_full_unstemmed Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages
title_short Citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of NRAMP genes in sunflower at different growth stages
title_sort citric acid assisted phytoextraction of nickle from soil helps to tolerate oxidative stress and expression profile of nramp genes in sunflower at different growth stages
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9751920/
https://www.ncbi.nlm.nih.gov/pubmed/36531389
http://dx.doi.org/10.3389/fpls.2022.1072671
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