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Polyaspartate, a biodegradable chelant that improves the phytoremediation potential of poplar in a highly metal-contaminated agricultural soil.

Identifieur interne : 002100 ( Main/Exploration ); précédent : 002099; suivant : 002101

Polyaspartate, a biodegradable chelant that improves the phytoremediation potential of poplar in a highly metal-contaminated agricultural soil.

Auteurs : Guido Lingua [Italie] ; Valeria Todeschini [Italie] ; Michele Grimaldi [Italie] ; Daniela Baldantoni [Italie] ; Antonio Proto [Italie] ; Angela Cicatelli [Italie] ; Stefania Biondi [Italie] ; Patrizia Torrigiani [Italie] ; Stefano Castiglione [Italie]

Source :

RBID : pubmed:24252633

Descripteurs français

English descriptors

Abstract

Phytoremediation is a cost-effective and environment friendly in situ technique for the reclamation of heavy metal-polluted soils. The efficacy of this technique, which relies on tolerant plant species, can be improved by the use of chelating agents. A pot experiment was carried out to evaluate the phytoextraction and phytostabilisation capacities of a white poplar (Populus alba L.) clone named AL35 previously selected for its marked tolerance to copper (Cu) and zinc (Zn). Cuttings were grown on agricultural soil highly contaminated with Cu and Zn, in the presence or not (controls) of a chelant mixture (EDTA/EDDS) known to enhance metal bioavailability and, hence, uptake by plant roots, or the not yet investigated synthetic, highly biodegradable polyaspartic acid (PASP). Both chelant treatments improved the phytostabilisation of Cu and Zn in AL35 plants, whilst the phytoextraction capacity was enhanced only in the case of Cu. Considering that the effectiveness of PASP as phytostabilizer was comparable or better than that of EDTA/EDDS, the low cost of its large-scale chemical synthesis and its biodegradability makes it a good candidate for chelant-enhanced metal phytoextraction from soil while avoiding the toxic side-effects previously described for both EDTA and EDDS.

DOI: 10.1016/j.jenvman.2013.10.015
PubMed: 24252633


Affiliations:


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Le document en format XML

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<term>Biodegradation, Environmental (MeSH)</term>
<term>Chelating Agents (metabolism)</term>
<term>Copper (metabolism)</term>
<term>Edetic Acid (metabolism)</term>
<term>Environmental Restoration and Remediation (methods)</term>
<term>Ethylenediamines (metabolism)</term>
<term>Peptides (metabolism)</term>
<term>Populus (genetics)</term>
<term>Populus (metabolism)</term>
<term>Soil Pollutants (metabolism)</term>
<term>Succinates (metabolism)</term>
<term>Zinc (metabolism)</term>
</keywords>
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<term>Acide édétique (métabolisme)</term>
<term>Assainissement et restauration de l'environnement (méthodes)</term>
<term>Chélateurs (métabolisme)</term>
<term>Cuivre (métabolisme)</term>
<term>Dépollution biologique de l'environnement (MeSH)</term>
<term>Peptides (métabolisme)</term>
<term>Polluants du sol (métabolisme)</term>
<term>Populus (génétique)</term>
<term>Populus (métabolisme)</term>
<term>Succinates (métabolisme)</term>
<term>Zinc (métabolisme)</term>
<term>Éthylènediamines (métabolisme)</term>
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<term>Chelating Agents</term>
<term>Copper</term>
<term>Edetic Acid</term>
<term>Ethylenediamines</term>
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<div type="abstract" xml:lang="en">Phytoremediation is a cost-effective and environment friendly in situ technique for the reclamation of heavy metal-polluted soils. The efficacy of this technique, which relies on tolerant plant species, can be improved by the use of chelating agents. A pot experiment was carried out to evaluate the phytoextraction and phytostabilisation capacities of a white poplar (Populus alba L.) clone named AL35 previously selected for its marked tolerance to copper (Cu) and zinc (Zn). Cuttings were grown on agricultural soil highly contaminated with Cu and Zn, in the presence or not (controls) of a chelant mixture (EDTA/EDDS) known to enhance metal bioavailability and, hence, uptake by plant roots, or the not yet investigated synthetic, highly biodegradable polyaspartic acid (PASP). Both chelant treatments improved the phytostabilisation of Cu and Zn in AL35 plants, whilst the phytoextraction capacity was enhanced only in the case of Cu. Considering that the effectiveness of PASP as phytostabilizer was comparable or better than that of EDTA/EDDS, the low cost of its large-scale chemical synthesis and its biodegradability makes it a good candidate for chelant-enhanced metal phytoextraction from soil while avoiding the toxic side-effects previously described for both EDTA and EDDS. </div>
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<Affiliation>Dipartimento di Scienze Agrarie, Università di Bologna, Viale Fanin, 46, 40127 Bologna, Italy.</Affiliation>
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</Author>
<Author ValidYN="Y">
<LastName>Castiglione</LastName>
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<Initials>S</Initials>
<AffiliationInfo>
<Affiliation>Dipartimento di Scienze e Innovazione Tecnologica, Università del Piemonte Orientale, Via Teresa Michel 11, 15121 Alessandria, Italy. Electronic address: scastiglione@unisa.it.</Affiliation>
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<Month>11</Month>
<Day>16</Day>
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<Country>England</Country>
<MedlineTA>J Environ Manage</MedlineTA>
<NlmUniqueID>0401664</NlmUniqueID>
<ISSNLinking>0301-4797</ISSNLinking>
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<Chemical>
<RegistryNumber>26063-13-8</RegistryNumber>
<NameOfSubstance UI="C017645">polyaspartate</NameOfSubstance>
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<RegistryNumber>789U1901C5</RegistryNumber>
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<Chemical>
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<NameOfSubstance UI="D004492">Edetic Acid</NameOfSubstance>
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<NameOfSubstance UI="D015032">Zinc</NameOfSubstance>
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<Keyword MajorTopicYN="N">EDTA/EDDS</Keyword>
<Keyword MajorTopicYN="N">Phytoremediation</Keyword>
<Keyword MajorTopicYN="N">White poplar</Keyword>
<Keyword MajorTopicYN="N">Zinc</Keyword>
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<Year>2013</Year>
<Month>10</Month>
<Day>10</Day>
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<Month>10</Month>
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<name sortKey="Proto, Antonio" sort="Proto, Antonio" uniqKey="Proto A" first="Antonio" last="Proto">Antonio Proto</name>
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</record>

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