Soil Arsenic Toxicity Impact on the Growth and C-Assimilation of Eucalyptus nitens

Author:

Ramalho José C.12ORCID,Pelica João3,Lidon Fernando C.2,Silva Maria M. A.2ORCID,Simões Maria M.2ORCID,Guerra Mauro4ORCID,Reboredo Fernando H.2ORCID

Affiliation:

1. PlantStress & Biodiversity Lab, Centro de Estudos Florestais (CEF), Instituto Superior Agronomia (ISA), Universidade de Lisboa (ULisboa), Quinta do Marquês, Av. República, 2784-505 Oeiras e Tapada da Ajuda, 1349-017 Lisboa, Portugal

2. GeoBioTec, Departamento de Ciências da Terra, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, Campus da Caparica, 2829-516 Caparica, Portugal

3. Departamento Ciências da Terra, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Campus da Caparica, 2829-516 Caparica, Portugal

4. LIBPHYS, Departamento de Física, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, Campus da Caparica, 2829-516 Caparica, Portugal

Abstract

The selection of adequate plants that can cope with species that can live in contaminated/degraded and abandoned mining areas is of utmost importance, especially for environmental management and policymakers. In this framework, the use of a fast-growing forestry species, such as Eucalyptus nitens, in the recovery of arsenic (As) from artificially contaminated soils during a long-term experiment was studied. Roots can accumulate to levels ranging between 69.8 and 133 μg g−1 for plants treated with 100 and 200 µg As mL−1, respectively, while leaves between 9.48 μg g−1 (200 As) and 15.9 μg g−1 (100 As) without apparent morphological damage and toxicity symptoms. The C-assimilation machinery performance revealed a gradual impact, as evaluated through some gas exchange parameters such as the net photosynthetic rate (Pn), stomatal conductance to H2O (gs), and transpiration rate (E), usually with the greater impacts at the highest As concentration (200 As), although without significantly impacting the PSII performance. The As effects on the uptake and translocation of Ca, Fe, K, and Zn revealed two contrasting interferences. The first one was associated with Zn, where a moderate antagonism was detected, whereas the second one was related to Fe, where a particular enrichment in leaves was noted under both As treatments. Thus, it seems to exist a synergistic action with an impact on the levels of the photosynthetic pigments in As-treated plant leaves, compared with control plants. E. nitens must be considered as an alternative when phytoremediation processes are put into practice in our country, particularly in areas with cool climatic conditions.

Funder

Fundação para a Ciência e a Tecnologia

Associate Laboratory TERRA

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference77 articles.

1. European Environment Agency (EEA) (2019). EMEP/EEA Air Pollutant Emission Inventory Guidebook 2019, Publication Office of the European Union. Technical Guidance to Prepare National Emission Inventories.

2. Heavy metal content of edible plants collected close to an area of intense mining activity (southern Portugal);Reboredo;Environ. Monit. Assess.,2018

3. Heavy metal analysis of sediments in Tejo estuary, Portugal, using a rapid flameless atomic absorption procedure;Carrondo;Talanta,1984

4. Vertical distribution of Al, Cu, Fe and Zn in soil salt marshes of the Sado estuary, Portugal;Reboredo;Int. J. Environ. Stud.,1984

5. Sediment quality and possible uses of dredged materials: The Ria de Aveiro lagoon mouth area (Portugal);Martins;J. Sediment Environ.,2017

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