Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica

Rhizoremediation involves the use of plants and plant growth promoting rhizobacteria (PGPR) for remediation of contaminated soil. This study evaluated the use of Pseudomonas aeruginosa and Eleusine indica to remediate cadmium-polluted soil. Soil samples were collected around the roots of E. indica...

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Main Authors: I. S. Obuekwe, O. E. Ilechukwu
Format: Article
Language:English
Published: Joint Coordination Centre of the World Bank assisted National Agricultural Research Programme (NARP) 2023-06-01
Series:Journal of Applied Sciences and Environmental Management
Subjects:
Online Access:https://www.ajol.info/index.php/jasem/article/view/250160
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author I. S. Obuekwe
O. E. Ilechukwu
author_facet I. S. Obuekwe
O. E. Ilechukwu
author_sort I. S. Obuekwe
collection DOAJ
description Rhizoremediation involves the use of plants and plant growth promoting rhizobacteria (PGPR) for remediation of contaminated soil. This study evaluated the use of Pseudomonas aeruginosa and Eleusine indica to remediate cadmium-polluted soil. Soil samples were collected around the roots of E. indica and PGPR were isolated and evaluated for their capacity for plant growth promotion. P. aeruginosa was selected for Cd remediation experiment which was based on treatments T1 (control soil), T2 (soil + cadmium), T3 (soil + plant + Cd + Pseudomonas applied 2x monthly) T4 (Soil + Plant + Cd + Pseudomonas applied once). T5 (soil + plant + Cd + Pseudomonas applied 1x monthly) T6 (soil + plant + Cd) and T7 (soil and plant). Cd concentration in soil treatments was equivalent to 8 mg/kg and treatments were monitored for 2 months. Bacterial count, physicochemical parameters, nutrient analyses, and Cd removal were subsequently evaluated. T3 had higher bacterial count and pH values (p < 0.05) relative to other treatments and this could be due to the inoculum addition. Conversely, reduction in electrical conductivity, organic carbon and organic matter observed in T3 could be attributed to improved rhizospheric activities. Again, rhizoremediation was highest (P < 0.05) in T3 (90 %) and this suggests P aeruginosa made bio-absorption of Cd easier for E. indica relative to treatments that do not have the inoculum.  This study showed that E. indica together with P. aeruginosa are suitable candidates for phytoremediation of Cd contaminated soils.
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spelling doaj.art-c6b42bf220b6428d9b28c27d18d4ff562024-04-01T15:14:09ZengJoint Coordination Centre of the World Bank assisted National Agricultural Research Programme (NARP)Journal of Applied Sciences and Environmental Management2659-15022659-14992023-06-0127610.4314/jasem.v27i6.1Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indicaI. S. ObuekweO. E. Ilechukwu Rhizoremediation involves the use of plants and plant growth promoting rhizobacteria (PGPR) for remediation of contaminated soil. This study evaluated the use of Pseudomonas aeruginosa and Eleusine indica to remediate cadmium-polluted soil. Soil samples were collected around the roots of E. indica and PGPR were isolated and evaluated for their capacity for plant growth promotion. P. aeruginosa was selected for Cd remediation experiment which was based on treatments T1 (control soil), T2 (soil + cadmium), T3 (soil + plant + Cd + Pseudomonas applied 2x monthly) T4 (Soil + Plant + Cd + Pseudomonas applied once). T5 (soil + plant + Cd + Pseudomonas applied 1x monthly) T6 (soil + plant + Cd) and T7 (soil and plant). Cd concentration in soil treatments was equivalent to 8 mg/kg and treatments were monitored for 2 months. Bacterial count, physicochemical parameters, nutrient analyses, and Cd removal were subsequently evaluated. T3 had higher bacterial count and pH values (p < 0.05) relative to other treatments and this could be due to the inoculum addition. Conversely, reduction in electrical conductivity, organic carbon and organic matter observed in T3 could be attributed to improved rhizospheric activities. Again, rhizoremediation was highest (P < 0.05) in T3 (90 %) and this suggests P aeruginosa made bio-absorption of Cd easier for E. indica relative to treatments that do not have the inoculum.  This study showed that E. indica together with P. aeruginosa are suitable candidates for phytoremediation of Cd contaminated soils. https://www.ajol.info/index.php/jasem/article/view/250160Rhizoremediation;cadmium pollution;E. indica;P. aeruginosa;bio-inoculant
spellingShingle I. S. Obuekwe
O. E. Ilechukwu
Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica
Journal of Applied Sciences and Environmental Management
Rhizoremediation;
cadmium pollution;
E. indica;
P. aeruginosa;
bio-inoculant
title Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica
title_full Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica
title_fullStr Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica
title_full_unstemmed Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica
title_short Rhizoremediation of a Cadmium-polluted Soil using Pseudomonas aeruginosa and Eleusine indica
title_sort rhizoremediation of a cadmium polluted soil using pseudomonas aeruginosa and eleusine indica
topic Rhizoremediation;
cadmium pollution;
E. indica;
P. aeruginosa;
bio-inoculant
url https://www.ajol.info/index.php/jasem/article/view/250160
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