Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil
This study was conducted to determine the potential of wild fungi, namely Amanita princeps and Tylopilus felleus in mycoremediation of selected heavy metals (Cadmium, Chromium, Copper, Lead and Zinc) in soil. The wild fungi were collected in two different location which are at Sabah Agricultural Par...
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2022
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my.ums.eprints.344022022-10-12T02:42:17Z https://eprints.ums.edu.my/id/eprint/34402/ Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil Nur Zaida Zahari A Calder Piakong Mohd. Tuah Fera @ Nony Cleophas Farrah Anis Fazliatul Adnan Kamsia Budin Siti Aishah Mohd Ali Sahibin @ Sahibini Abd Rahim QK504-(638) Cryptogams This study was conducted to determine the potential of wild fungi, namely Amanita princeps and Tylopilus felleus in mycoremediation of selected heavy metals (Cadmium, Chromium, Copper, Lead and Zinc) in soil. The wild fungi were collected in two different location which are at Sabah Agricultural Park, Lagud Seberang, Tenom and Universiti Malaysia Sabah (UMS) peak, respectively. The classification of fungi species and its characteristics was done by identifying their morphology and habitat. The uptake and distribution of heavy metals in their parts (root, stem and cap) were determined using ICP-OES instrument. The samples were digested using an acid digestion method; mixture of nitric acid (HNO3), hydrogen peroxide (H2O2 ) and hydrochloric acid (HCL). The result shows that the uptakes of heavy metal by both Amanita princeps and Tylopilus felleus in all plant parts were highest by Zn>Cu>Cr>Pb respectively. Study on phytoremediation mechanism shows that the enrichment factor (EF) for both fungi was recorded below 1 (EF<1) indicating the low ability to absorb and accumulate heavy metals. On the other hand, results on translocation factor (TF) shows that heavy metal Zn was higher with value more than 1(TF>1) on both species while Cu recorded high (TF>1) in Amanita princeps. The results also show that the TF value for most heavy metals are below 1 (TF<1), which suggested as both plants used as phytostabilization mechanism in reduction of bioavailability of heavy metals in soil. 2022 Conference or Workshop Item PeerReviewed text en https://eprints.ums.edu.my/id/eprint/34402/3/FULL%20TEXT.pdf text en https://eprints.ums.edu.my/id/eprint/34402/1/ABSTRACT.pdf Nur Zaida Zahari and A Calder and Piakong Mohd. Tuah and Fera @ Nony Cleophas and Farrah Anis Fazliatul Adnan and Kamsia Budin and Siti Aishah Mohd Ali and Sahibin @ Sahibini Abd Rahim (2022) Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil. In: 14th Seminar on Science and Technology 2021 (S&T 2021) (Virtual Conference), 8 - 9 September 2021, Virtually. https://iopscience.iop.org/article/10.1088/1755-1315/765/1/012085/pdf |
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QK504-(638) Cryptogams Nur Zaida Zahari A Calder Piakong Mohd. Tuah Fera @ Nony Cleophas Farrah Anis Fazliatul Adnan Kamsia Budin Siti Aishah Mohd Ali Sahibin @ Sahibini Abd Rahim Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil |
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This study was conducted to determine the potential of wild fungi, namely Amanita princeps and Tylopilus felleus in mycoremediation of selected heavy metals (Cadmium, Chromium, Copper, Lead and Zinc) in soil. The wild fungi were collected in two different location which are at Sabah Agricultural Park, Lagud Seberang, Tenom and Universiti Malaysia Sabah (UMS) peak, respectively. The classification of fungi species and its characteristics was done by identifying their morphology and habitat. The uptake and distribution of heavy metals in their parts (root, stem and cap) were determined using ICP-OES instrument. The samples were digested using an acid digestion method; mixture of nitric acid (HNO3), hydrogen peroxide (H2O2 ) and hydrochloric acid (HCL). The result shows that the uptakes of heavy metal by both Amanita princeps and Tylopilus felleus in all plant parts were highest by Zn>Cu>Cr>Pb respectively. Study on phytoremediation mechanism shows that the enrichment factor (EF) for both fungi was recorded below 1 (EF<1) indicating the low ability to absorb and accumulate heavy metals. On the other hand, results on translocation factor (TF) shows that heavy metal Zn was higher with value more than 1(TF>1) on both species while Cu recorded high (TF>1) in Amanita princeps. The results also show that the TF value for most heavy metals are below 1 (TF<1), which suggested as both plants used as phytostabilization mechanism in reduction of bioavailability of heavy metals in soil. |
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Conference or Workshop Item |
author |
Nur Zaida Zahari A Calder Piakong Mohd. Tuah Fera @ Nony Cleophas Farrah Anis Fazliatul Adnan Kamsia Budin Siti Aishah Mohd Ali Sahibin @ Sahibini Abd Rahim |
author_facet |
Nur Zaida Zahari A Calder Piakong Mohd. Tuah Fera @ Nony Cleophas Farrah Anis Fazliatul Adnan Kamsia Budin Siti Aishah Mohd Ali Sahibin @ Sahibini Abd Rahim |
author_sort |
Nur Zaida Zahari |
title |
Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil |
title_short |
Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil |
title_full |
Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil |
title_fullStr |
Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil |
title_full_unstemmed |
Potential of Wild Fungi (Amanita princeps & Tylopilus felleus) in Mycoremediation of Selected Heavy Metals in Soil |
title_sort |
potential of wild fungi (amanita princeps & tylopilus felleus) in mycoremediation of selected heavy metals in soil |
publishDate |
2022 |
url |
https://eprints.ums.edu.my/id/eprint/34402/3/FULL%20TEXT.pdf https://eprints.ums.edu.my/id/eprint/34402/1/ABSTRACT.pdf https://eprints.ums.edu.my/id/eprint/34402/ https://iopscience.iop.org/article/10.1088/1755-1315/765/1/012085/pdf |
_version_ |
1760231290560315392 |