Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica

Background: This study was done to investigate the impact of drought stress, inorganic and organic Fe sources on biodegradation of crude oil in the Cd polluted soil under cultivation of canola inoculated with Piriformospora indica.Methods: Treatments consist of soil application of pure iron from Fe...

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Main Author: Amir Hossein Baghaie
Format: Article
Language:English
Published: Kurdistan University of Medical Sciences 2023-07-01
Series:Journal of Advances in Environmental Health Research
Subjects:
Online Access:https://jaehr.muk.ac.ir/article_178609_2d4cf2efb2256ca1d3ce3ac8f2749b2b.pdf
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author Amir Hossein Baghaie
author_facet Amir Hossein Baghaie
author_sort Amir Hossein Baghaie
collection DOAJ
description Background: This study was done to investigate the impact of drought stress, inorganic and organic Fe sources on biodegradation of crude oil in the Cd polluted soil under cultivation of canola inoculated with Piriformospora indica.Methods: Treatments consist of soil application of pure iron from Fe sources ((Fe sulfate and Fe chelate) (0, 60 and 90 kg Fe pure/ha)), and canola plant inoculated with P. indica cultivated in the Cd (0, 15 and 20 mg Cd/kg soil)-polluted soil that was naturally polluted with crude oil under drought stress. After 70 days, the plants were harvested and the soil and shoot Cd concentration was determined using atomic absorption spectroscopy (AAS). In addition, the biodegradation of crude oil was measured.Results: Using 90 kg/ha pure iron from iron chelate significantly improved the biodegradation of crude oil in the soil by 13.1 and 8.9% under normal soul moisture and drought stress, respectively. Plant inoculation with P. indica had significant effect on increasing the biodegradation of crude oil in the soil by 12.1%. Furthermore, the soil microbial respiration was also increased. The ascorbate peroxidase (APX) and peroxidase (POX) enzyme activity was significantly increased under heavy metal toxicity.Conclusion: Using organic and inorganic Fe sources has significant effects in increasing the biodegradation of crude oil in the soil under normal soil moisture regime and drought stress. Regardless of soil moisture regime, plant inoculation with P. indica had significant effects on reducing the Cd concentration of the plant and increasing the biodegradation of crude oil in the soil, respectively.
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spelling doaj.art-af32383063da49febff1ea99c750ce932023-10-31T07:59:14ZengKurdistan University of Medical SciencesJournal of Advances in Environmental Health Research2345-39902023-07-0111318218810.34172/jaehr.1337178609Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indicaAmir Hossein Baghaie0Department of Soil Science, Arak Branch, Islamic Azad University, Arak, IranBackground: This study was done to investigate the impact of drought stress, inorganic and organic Fe sources on biodegradation of crude oil in the Cd polluted soil under cultivation of canola inoculated with Piriformospora indica.Methods: Treatments consist of soil application of pure iron from Fe sources ((Fe sulfate and Fe chelate) (0, 60 and 90 kg Fe pure/ha)), and canola plant inoculated with P. indica cultivated in the Cd (0, 15 and 20 mg Cd/kg soil)-polluted soil that was naturally polluted with crude oil under drought stress. After 70 days, the plants were harvested and the soil and shoot Cd concentration was determined using atomic absorption spectroscopy (AAS). In addition, the biodegradation of crude oil was measured.Results: Using 90 kg/ha pure iron from iron chelate significantly improved the biodegradation of crude oil in the soil by 13.1 and 8.9% under normal soul moisture and drought stress, respectively. Plant inoculation with P. indica had significant effect on increasing the biodegradation of crude oil in the soil by 12.1%. Furthermore, the soil microbial respiration was also increased. The ascorbate peroxidase (APX) and peroxidase (POX) enzyme activity was significantly increased under heavy metal toxicity.Conclusion: Using organic and inorganic Fe sources has significant effects in increasing the biodegradation of crude oil in the soil under normal soil moisture regime and drought stress. Regardless of soil moisture regime, plant inoculation with P. indica had significant effects on reducing the Cd concentration of the plant and increasing the biodegradation of crude oil in the soil, respectively.https://jaehr.muk.ac.ir/article_178609_2d4cf2efb2256ca1d3ce3ac8f2749b2b.pdfcdsoil pollutionbiodegradationpetroleum hydrocarbon
spellingShingle Amir Hossein Baghaie
Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica
Journal of Advances in Environmental Health Research
cd
soil pollution
biodegradation
petroleum hydrocarbon
title Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica
title_full Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica
title_fullStr Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica
title_full_unstemmed Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica
title_short Inorganic and Organic Fe Sources Increased Crude Oil Biodegradation in Soil Under Cultivation of the Canola Plant Inoculated with Piriformospora indica
title_sort inorganic and organic fe sources increased crude oil biodegradation in soil under cultivation of the canola plant inoculated with piriformospora indica
topic cd
soil pollution
biodegradation
petroleum hydrocarbon
url https://jaehr.muk.ac.ir/article_178609_2d4cf2efb2256ca1d3ce3ac8f2749b2b.pdf
work_keys_str_mv AT amirhosseinbaghaie inorganicandorganicfesourcesincreasedcrudeoilbiodegradationinsoilundercultivationofthecanolaplantinoculatedwithpiriformosporaindica