Phytoremediation Potential of Different Genotypes of Salix alba and S. viminalis
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2024
Preuzimanje 🢃
Autori
Urošević, JelenaStanković, Dragica
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Jokanović, Dušan
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Trivan, Goran
Rodzkin, Aleh
Jović, Đorđe
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Jovanović, Filip
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Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentuApstrakt
Elevated concentrations of heavy metals result in soil degradation, a reduction in plant yields, and a lower quality of agricultural products, which directly endangers people, animals, and the ecosystem. The potential of three clones of Salix alba (347, NS 73/6, and B-44) and one genotype of S. viminalis for the phytoextraction of heavy metals was investigated, with the aim of identifying the most physiologically suitable willow genotypes for use in soil phytoremediation. The experiment was placed on the contaminated soil substrate collected in Kolubara Mining Basin (Serbia), enriched by high loads of heavy metal salts, and a control medium. Significant differences in the concentrations of heavy metals were recorded between the contaminated and control plant material, especially when it comes to nickel (Ni), copper (Cu), cadmium (Cd), and lead (Pb), confirming that S. alba and S. viminalis are hyperaccumulator species of heavy metals. Clone 347 shows the greatest uptake of Cd and chrom...ium (Cr), and clone B-44 takes up these metals only to a lesser extent, while clone NS 73/6 shows a less pronounced uptake of Cr. The roots have the greatest ability to accumulate Ni and Pb, Cu is absorbed by all plant organs, while Cd is absorbed by the leaves. The organ that showed the greatest ability to accumulate heavy metals was the root, which means that willows have a limited power to translocate heavy metals to above-ground organs. The studied genotypes of S. alba have a higher potential for the phytostabilization of Cu and Cd, as well as the phytoextraction of Cd, compared with S. viminalis. The results confirm the assumption of differences between different willow genotypes in terms of the ability to phytoextract certain heavy metals from soil, which is important information when selecting genotypes for soil phytoremediation.
Ključne reči:
soil / selection / Salix / phytoremediation / heavy metals / clonesIzvor:
Plants-Basel, 2024, 13, 5Finansiranje / projekti:
- Science Fund of the Republic of Serbia
DOI: 10.3390/plants13050735
ISSN: 2223-7747
PubMed: 38475581
WoS: 001183397600001
Scopus: 2-s2.0-85187481715
Institucija/grupa
Šumarski fakultetTY - JOUR AU - Urošević, Jelena AU - Stanković, Dragica AU - Jokanović, Dušan AU - Trivan, Goran AU - Rodzkin, Aleh AU - Jović, Đorđe AU - Jovanović, Filip PY - 2024 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1490 AB - Elevated concentrations of heavy metals result in soil degradation, a reduction in plant yields, and a lower quality of agricultural products, which directly endangers people, animals, and the ecosystem. The potential of three clones of Salix alba (347, NS 73/6, and B-44) and one genotype of S. viminalis for the phytoextraction of heavy metals was investigated, with the aim of identifying the most physiologically suitable willow genotypes for use in soil phytoremediation. The experiment was placed on the contaminated soil substrate collected in Kolubara Mining Basin (Serbia), enriched by high loads of heavy metal salts, and a control medium. Significant differences in the concentrations of heavy metals were recorded between the contaminated and control plant material, especially when it comes to nickel (Ni), copper (Cu), cadmium (Cd), and lead (Pb), confirming that S. alba and S. viminalis are hyperaccumulator species of heavy metals. Clone 347 shows the greatest uptake of Cd and chromium (Cr), and clone B-44 takes up these metals only to a lesser extent, while clone NS 73/6 shows a less pronounced uptake of Cr. The roots have the greatest ability to accumulate Ni and Pb, Cu is absorbed by all plant organs, while Cd is absorbed by the leaves. The organ that showed the greatest ability to accumulate heavy metals was the root, which means that willows have a limited power to translocate heavy metals to above-ground organs. The studied genotypes of S. alba have a higher potential for the phytostabilization of Cu and Cd, as well as the phytoextraction of Cd, compared with S. viminalis. The results confirm the assumption of differences between different willow genotypes in terms of the ability to phytoextract certain heavy metals from soil, which is important information when selecting genotypes for soil phytoremediation. T2 - Plants-Basel T1 - Phytoremediation Potential of Different Genotypes of Salix alba and S. viminalis IS - 5 VL - 13 DO - 10.3390/plants13050735 UR - conv_1772 ER -
@article{ author = "Urošević, Jelena and Stanković, Dragica and Jokanović, Dušan and Trivan, Goran and Rodzkin, Aleh and Jović, Đorđe and Jovanović, Filip", year = "2024", abstract = "Elevated concentrations of heavy metals result in soil degradation, a reduction in plant yields, and a lower quality of agricultural products, which directly endangers people, animals, and the ecosystem. The potential of three clones of Salix alba (347, NS 73/6, and B-44) and one genotype of S. viminalis for the phytoextraction of heavy metals was investigated, with the aim of identifying the most physiologically suitable willow genotypes for use in soil phytoremediation. The experiment was placed on the contaminated soil substrate collected in Kolubara Mining Basin (Serbia), enriched by high loads of heavy metal salts, and a control medium. Significant differences in the concentrations of heavy metals were recorded between the contaminated and control plant material, especially when it comes to nickel (Ni), copper (Cu), cadmium (Cd), and lead (Pb), confirming that S. alba and S. viminalis are hyperaccumulator species of heavy metals. Clone 347 shows the greatest uptake of Cd and chromium (Cr), and clone B-44 takes up these metals only to a lesser extent, while clone NS 73/6 shows a less pronounced uptake of Cr. The roots have the greatest ability to accumulate Ni and Pb, Cu is absorbed by all plant organs, while Cd is absorbed by the leaves. The organ that showed the greatest ability to accumulate heavy metals was the root, which means that willows have a limited power to translocate heavy metals to above-ground organs. The studied genotypes of S. alba have a higher potential for the phytostabilization of Cu and Cd, as well as the phytoextraction of Cd, compared with S. viminalis. The results confirm the assumption of differences between different willow genotypes in terms of the ability to phytoextract certain heavy metals from soil, which is important information when selecting genotypes for soil phytoremediation.", journal = "Plants-Basel", title = "Phytoremediation Potential of Different Genotypes of Salix alba and S. viminalis", number = "5", volume = "13", doi = "10.3390/plants13050735", url = "conv_1772" }
Urošević, J., Stanković, D., Jokanović, D., Trivan, G., Rodzkin, A., Jović, Đ.,& Jovanović, F.. (2024). Phytoremediation Potential of Different Genotypes of Salix alba and S. viminalis. in Plants-Basel, 13(5). https://doi.org/10.3390/plants13050735 conv_1772
Urošević J, Stanković D, Jokanović D, Trivan G, Rodzkin A, Jović Đ, Jovanović F. Phytoremediation Potential of Different Genotypes of Salix alba and S. viminalis. in Plants-Basel. 2024;13(5). doi:10.3390/plants13050735 conv_1772 .
Urošević, Jelena, Stanković, Dragica, Jokanović, Dušan, Trivan, Goran, Rodzkin, Aleh, Jović, Đorđe, Jovanović, Filip, "Phytoremediation Potential of Different Genotypes of Salix alba and S. viminalis" in Plants-Basel, 13, no. 5 (2024), https://doi.org/10.3390/plants13050735 ., conv_1772 .