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    Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10259/9292

    Título
    Phytostabilization of metal(loid)s by ten emergent macrophytes following a 90-day exposure to industrially contaminated groundwater
    Autor
    Velasco Arroyo, BlancaAutoridad UBU Orcid
    Curiel Alegre, SandraAutoridad UBU Orcid
    Khan, Aqib Hassan AliAutoridad UBU Orcid
    Rumbo Lorenzo, CarlosAutoridad UBU Orcid
    Pérez Alonso, Daniel
    Rad Moradillo, Juan CarlosAutoridad UBU Orcid
    De Wilde, Herwig
    Pérez de Mora, Alfredo
    Barros García, RocíoAutoridad UBU Orcid
    Publicado en
    New Biotechnology. 2024, V. 79, p. 50-59
    Editorial
    Elsevier
    Fecha de publicación
    2024-03-25
    ISSN
    1871-6784
    DOI
    10.1016/j.nbt.2023.12.003
    Résumé
    Better understanding of macrophyte tolerance under long exposure times in real environmental matrices is crucial for phytoremediation and phytoattenuation strategies for aquatic systems. The metal(loid) attenuation ability of 10 emergent macrophyte species (Carex riparia, Cyperus longus, Cyperus rotundus, Iris pseudacorus, Juncus effusus, Lythrum salicaria, Menta aquatica, Phragmites australis, Scirpus holoschoenus, and Typha angustifolia) was investigated using real groundwater from an industrial site, over a 90-day exposure period. A “phytobial” treatment was included, with 3 plant growth-promoting rhizobacterial strains. Plants exposed to the polluted water generally showed similar or reduced aerial biomass compared to the controls, except for C. riparia. This species, along with M. aquatica, exhibited improved biomass after bioaugmentation. Phytoremediation mechanisms accounted for more than 60% of As, Cd, Cu, Ni, and Pb removal, whilst abiotic mechanisms contributed to ∼80% removal of Fe and Zn. Concentrations of metal(loid)s in the roots were generally between 10–100 times higher than in the aerial parts. The macrophytes in this work can be considered “underground attenuators”, more appropriate for rhizostabilization strategies, especially L. salicaria, M. aquatica, S. holoschoenus, and T. angustifolia. For I. pseudacorus, C. longus, and C. riparia; harvesting the aerial parts could be a complementary phytoextraction approach to further remove Pb and Zn. Of all the plants, S. holoschoenus showed the best balance between biomass production and uptake of multiple metal(loid)s. Results also suggest that multiple phytostrategies may be possible for the same plant depending on the final remedial aim. Phytobial approaches need to be further assessed for each macrophyte species.
    Palabras clave
    Rhizostabilization
    Emergent macrophyte
    Groundwater
    Metal
    Metalloid
    Plant growth promoting bacteria
    Materia
    Biotecnología
    Biotechnology
    Biología molecular
    Molecular biology
    URI
    http://hdl.handle.net/10259/9292
    Versión del editor
    https://doi.org/10.1016/j.nbt.2023.12.003
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    Attribution-NonCommercial-NoDerivatives 4.0 Internacional
    Documento(s) sujeto(s) a una licencia Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 Internacional
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    Velasco-nb_2024.pdf
    Tamaño:
    1.754Mo
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