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Featured researches published by Aricia Evlard.


Journal of Proteomics | 2014

A multiple-level study of metal tolerance in Salix fragilis and Salix aurita clones

Aricia Evlard; Kjell Sergeant; Bruno Printz; Cédric Guignard; Jenny Renaut; Bruno Campanella; Roger Paul; Jean-Francois Hausman

UNLABELLED The response of two willow clones (Salix fragilis (Sf) and Salix aurita (Sa)) to the presence of metals (Zn, Cu, Cd, Ni) was studied. Rooted cuttings were planted in control and contaminated soil. After 100days, different parameters (biomass, chlorophyll fluorescence (Fv/Fm), pigment and sugar concentrations, electrolyte leakage and proteome-level changes) were analyzed. The growth of Sa was not influenced by metals whereas Sf produced significantly less biomass when exposed to the pollutants. Furthermore, although Sa did not show a growth reduction in the presence of metals, the overall view of the physiological results among others the changes in the accumulation of sugars and pigments indicated that metals had a more severe impact on this clone. The response at the proteome level confirmed these observations. The growth reduction and the proteomic changes in Sf indicate that this clone adjusts its metabolism to maintain cellular homeostasis. Sa on the contrary maintains growth but the physiological and proteomics data suggests that this can only be done at the cost of cellular deregulation. Therefore high biomass is not linked with a good tolerance strategy. In a long-term study the survival of Sa might be compromised making it a poorer candidate for phytoremediation efforts. BIOLOGICAL SIGNIFICANCE In the last centuries human activity has resulted in the dispersal of heavy metals with potential phytotoxic effects over large areas. The increased knowledge of the responses of Salix-species, a group of trees with potential as biomass producer but also as phytoremediation agent, when growing on metal-polluted substrate provided by this study has the potential to help in the improved selection of clones with more or less potential for these aims. Contrary to most studies the trees in the current study were exposed to a mixture of metals, thereby facing a closer resemblance to the situation on soils polluted by human activity. Whereas many papers focused on the two main phenotypic characteristics (biomass and accumulation), fewer papers studied proteomic and physiological parameters which allow to have a global view of the tolerance of probable willow candidates for phytoremediation purposes. Our data demonstrates that higher biomass production in presence of metals is not necessarily linked with higher tolerance whereas growth reduction might indicate longer long-term tolerance. In the long term and in the purpose of a future use in phytoremediation, the survival of this high producer clone could be compromised.


International Journal of Phytoremediation | 2014

Physiological and Proteomic Responses of Different Willow Clones (Salix fragilis X alba) Exposed to Dredged Sediment Contaminated by Heavy Metals

Aricia Evlard; Kjell Sergeant; Salvador Ferrandis; Bruno Printz; Jenny Renaut; Cédric Guignard; Roger Paul; Jean-Francois Hausman; Bruno Campanella

High biomass producing species are considered as tools for remediation of contaminated soils. Willows (Salix spp.) are prominent study subjects in this regard. In this study, different willow clones (Salix fragilis x alba) were planted on heavy-metal polluted dredging sludge. A first objective was assessment of the biomass production for these clones. Using a Gupta statistic, four clones were identified as high biomass producers (HBP). For comparison, a group of four clones with lowest biomass production were selected (LBP). A second objective was to compare metal uptake as well as the physiological and proteomic responses of these two groups. All these complementary datas allow us to have a better picture of the health of the clones that would be used in phytoremediation programs. Cd, Zn, and Ni total uptake was higher in the HBPs but Pb total uptake was higher in LBPs. Our proteomic and physiological results showed that the LBPs were able to maintain cellular activity as much as the HBPs although the oxidative stress response was more pronounced in the LBPs. This could be due to the high Pb content found in this group although a combined effect of the other metals cannot be excluded.


Biodegradation | 2013

Potential of kenaf (Hibiscus cannabinus L.) and corn (Zea mays L.) for phytoremediation of dredging sludge contaminated by trace metals

Sarra Arbaoui; Aricia Evlard; Mohamed El Wafi Mhamdi; Bruno Campanella; Roger Paul; Taoufik Bettaieb


Archive | 2014

Using Salix spp. in phytostabilization of metal pollution in soils : an example of phytoremediation appropriate to the brownfields of Wallonia

Aricia Evlard; Gilles Colinet; Philippe Druart


Archive | 2014

Plants & metals in soil : the concept of phytoremediation

Aricia Evlard; Gilles Colinet; Philippe Druart


Archive | 2013

Construction et développement d’une filière de production d’écotypes ligneux pour l’application des techniques végétales à la renaturation des berges de cours d’eau

Philippe Druart; Martine Leclercq; Marie Anne Joussemet; Jerry Bender; Stéphane Adant; Bernard De Le Court; Patrick Mertens; Claude Husson; Anne Chandelier; Dominique Mingeot; Jean-Francois Hausman; Aricia Evlard; Mohammed Bajji; Jérôme Delcarte; Francis Lambot


Archive | 2013

Etude du saule et de l’aulne pour la phytoremédiation des berges de cours d’eau non navigables

Aricia Evlard; Bruno Printz; Bruno Campanella; Jean-Francois Hausman


Archive | 2013

Impact des éléments-traces métalliques sur les plantes et les techniques de phytoremédiation

Aricia Evlard; Bruno Campanella


Archive | 2013

Valorisation énergétique du bois produit à des fins de phytoremédiation

Jérôme Delcarte; Lucas Gossiaux; Aricia Evlard


Archive | 2013

Le potentiel du saule pour la phytostabilisation des sols pollués par les éléments-traces métalliques

Aricia Evlard

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Bruno Printz

Université catholique de Louvain

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Jenny Renaut

University of Luxembourg

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