This work investigated if the assessment of tolerance to trace metals can depend on plant density in the experimental design. A non-metallicolous and a metallicolous populations of Silene paradoxa were hydroponically cultivated at increasing density and in both the absence (−Cu conditions) and excess of copper (+Cu conditions). In −Cu conditions, the metallicolous population showed a lower susceptibility to plant density in comparison to the non-metallicolous one, explained by a higher capacity of the metallicolous population to exploit resources. In +Cu conditions, an alleviating effect of increasing density was found in roots. Such effect was present to a greater extent in the non-metallicolous population, thus making the populations equally copper-tolerant at the highest density used. In shoots, an additive effect of increasing plant density to copper toxicity was reported. Its higher intensity in the metallicolous population reverted the copper tolerance rela- tionship at the highest plant densities used. In both populations, a density-induced decrease in root copper accumulation was observed, thus concurring to the reported mitigation in +Cu conditions. Our work revealed the importance of density studies on the optimization of eco-toxicological bio-assays and of metal tolerance assessment and it can be considered the first example of an alleviating effect of increasing plant number on copper stress in a metallophyte.

Capuana, M., Colzi, I., Buccianti, A., Coppi, A., Palm, E., Del Bubba, M., et al. (2018). Paradoxical effects of density on measurement of copper tolerance in Silene paradoxa L. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH INTERNATIONAL, 25(2), 1331-1339 [10.1007/s11356-017-0593-y].

Paradoxical effects of density on measurement of copper tolerance in Silene paradoxa L.

Palm, E;
2018

Abstract

This work investigated if the assessment of tolerance to trace metals can depend on plant density in the experimental design. A non-metallicolous and a metallicolous populations of Silene paradoxa were hydroponically cultivated at increasing density and in both the absence (−Cu conditions) and excess of copper (+Cu conditions). In −Cu conditions, the metallicolous population showed a lower susceptibility to plant density in comparison to the non-metallicolous one, explained by a higher capacity of the metallicolous population to exploit resources. In +Cu conditions, an alleviating effect of increasing density was found in roots. Such effect was present to a greater extent in the non-metallicolous population, thus making the populations equally copper-tolerant at the highest density used. In shoots, an additive effect of increasing plant density to copper toxicity was reported. Its higher intensity in the metallicolous population reverted the copper tolerance rela- tionship at the highest plant densities used. In both populations, a density-induced decrease in root copper accumulation was observed, thus concurring to the reported mitigation in +Cu conditions. Our work revealed the importance of density studies on the optimization of eco-toxicological bio-assays and of metal tolerance assessment and it can be considered the first example of an alleviating effect of increasing plant number on copper stress in a metallophyte.
Articolo in rivista - Articolo scientifico
Copper; Metalliferous soils; Plant density; Plant interactions;
English
2018
25
2
1331
1339
reserved
Capuana, M., Colzi, I., Buccianti, A., Coppi, A., Palm, E., Del Bubba, M., et al. (2018). Paradoxical effects of density on measurement of copper tolerance in Silene paradoxa L. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH INTERNATIONAL, 25(2), 1331-1339 [10.1007/s11356-017-0593-y].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/415907
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