Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes

Silicon (Si) application enhanced the tolerance of plants against different environmental stresses. Therefore, objective of the study revealed that foliar applied Si alleviates the adverse effect of Cd by enhancing the growth, metabolite accumulation, strengthening the antioxidant defense system, re...

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Main Authors: Sumaira Thind, Iqbal Hussain, Shafaqat Ali, Rizwan Rasheed, Muhammad Arslan Ashraf
Format: Article
Language:English
Published: SAGE Publishing 2021-05-01
Series:Dose-Response
Online Access:https://doi.org/10.1177/15593258211014646
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spelling doaj-a5a666cb32334e0cb4145cfe69df63882021-05-31T22:33:44ZengSAGE PublishingDose-Response1559-32582021-05-011910.1177/15593258211014646Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium RegimesSumaira Thind0Iqbal Hussain1Shafaqat Ali2Rizwan Rasheed3Muhammad Arslan Ashraf4 Department of Botany, , Pakistan Department of Botany, , Pakistan Department of Biological Sciences and Technology, China Medical University, Taichung, Taiwan Department of Botany, , Pakistan Department of Botany, , PakistanSilicon (Si) application enhanced the tolerance of plants against different environmental stresses. Therefore, objective of the study revealed that foliar applied Si alleviates the adverse effect of Cd by enhancing the growth, metabolite accumulation, strengthening the antioxidant defense system, reducing oxidative injury, improving plant nutrient status, and decreasing the Cd uptake in wheat. The surface sterilized seeds of Sahar-2006 (tolerant) and Inqalab-91 (sensitive) having the differential metal tolerance capacity were sown in plastic pots containing normal and Cd spiked sandy loamy soil. The design of experiments was completely randomized with 3 replicates per treatment. Two weeks after germination, plants were sprayed with different concentrations of Si (1.5 and 3 mM) with 0.1% surfactant in the form of Tween-20. The plants were harvested after 2 weeks of Si application to determine various attributes. High concentration of Cd (25 mg kg -1 ) decreased growth-related-attributes, essential nutrient uptake and increase the levels of oxidative stress indicators. The application of Si increased the growth-related attributes, photosynthetic pigments, essential nutrient uptake and also enhanced the activities of various antioxidant compounds (superoxide dismutase (SOD), peroxidase (POD, ascorbate peroxidase (APX) and catalase (CAT) by decreasing the contents of oxidative stress indicators and Cd uptake in root and shoot of both wheat cultivars. Sahar-2006 cultivar showed more tolerance to Cd regimes than that of Inqalab-91 as clear from greater plant dry masses. Thus, our results showed that the applied Si level (3 mM) is an efficient strategy for field use in the areas, where slightly Cd polluted soils limit the agriculture production.https://doi.org/10.1177/15593258211014646
collection DOAJ
language English
format Article
sources DOAJ
author Sumaira Thind
Iqbal Hussain
Shafaqat Ali
Rizwan Rasheed
Muhammad Arslan Ashraf
spellingShingle Sumaira Thind
Iqbal Hussain
Shafaqat Ali
Rizwan Rasheed
Muhammad Arslan Ashraf
Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes
Dose-Response
author_facet Sumaira Thind
Iqbal Hussain
Shafaqat Ali
Rizwan Rasheed
Muhammad Arslan Ashraf
author_sort Sumaira Thind
title Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes
title_short Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes
title_full Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes
title_fullStr Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes
title_full_unstemmed Silicon Application Modulates Growth, Physio-Chemicals, and Antioxidants in Wheat ( L.) Exposed to Different Cadmium Regimes
title_sort silicon application modulates growth, physio-chemicals, and antioxidants in wheat ( l.) exposed to different cadmium regimes
publisher SAGE Publishing
series Dose-Response
issn 1559-3258
publishDate 2021-05-01
description Silicon (Si) application enhanced the tolerance of plants against different environmental stresses. Therefore, objective of the study revealed that foliar applied Si alleviates the adverse effect of Cd by enhancing the growth, metabolite accumulation, strengthening the antioxidant defense system, reducing oxidative injury, improving plant nutrient status, and decreasing the Cd uptake in wheat. The surface sterilized seeds of Sahar-2006 (tolerant) and Inqalab-91 (sensitive) having the differential metal tolerance capacity were sown in plastic pots containing normal and Cd spiked sandy loamy soil. The design of experiments was completely randomized with 3 replicates per treatment. Two weeks after germination, plants were sprayed with different concentrations of Si (1.5 and 3 mM) with 0.1% surfactant in the form of Tween-20. The plants were harvested after 2 weeks of Si application to determine various attributes. High concentration of Cd (25 mg kg -1 ) decreased growth-related-attributes, essential nutrient uptake and increase the levels of oxidative stress indicators. The application of Si increased the growth-related attributes, photosynthetic pigments, essential nutrient uptake and also enhanced the activities of various antioxidant compounds (superoxide dismutase (SOD), peroxidase (POD, ascorbate peroxidase (APX) and catalase (CAT) by decreasing the contents of oxidative stress indicators and Cd uptake in root and shoot of both wheat cultivars. Sahar-2006 cultivar showed more tolerance to Cd regimes than that of Inqalab-91 as clear from greater plant dry masses. Thus, our results showed that the applied Si level (3 mM) is an efficient strategy for field use in the areas, where slightly Cd polluted soils limit the agriculture production.
url https://doi.org/10.1177/15593258211014646
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