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Antagonistic and synergistic interactions between aluminum and manganese on growth of Vigna unguiculata at low ionic strength
Authors:Gregory J Taylor  F P C Blarney  D G Edwards
Institution:G. J. Taylor (corresponding author, e‐mail;), Dept of Biological Sciences, Univ. of Alberta, Edmonton, Alberta, T6G 2E9, Canada;F. P. C. Blamey and D. G. Edwards, School of Land and Food, The Univ. of Queensland, Brisbane, Queensland, 4072, Australia.
Abstract:Concentrations of soluble aluminum (Al) and manganese (Mn) frequently reach phytotoxic levels in acid soils. While dose response relationships for these metals are well documented, the effects of combined exposure have received less attention. We have examined the effect of combinations of Al and Mn on growth and metal accumulation in Vigna unguiculata (L.) Walp. grown in solution culture under conditions of low ionic strength (conductivities typically < 100 µS cm−1). The nature of interaction between these metals varied with the specific physiological response, the part of the plant investigated, and the relative amount of stress imposed. Analysis of growth data provided evidence for amelioration of metal toxicity (antagonistic effects), although this effect was dose dependent. Analysis of metal content data provided evidence for antagonistic and synergistic (exacerbation of toxicity) effects, again depending on dose. Analysis of foliar symptoms also provided evidence for antagonisms and synergisms, with the nature of the response dependent on the specific physiological response and specific plant part investigated. In contrast with previous reports, evidence for antagonistic, synergistic, and multiplicative effects on growth, metal uptake, and expression of foliar symptoms have been obtained under physiologically and environmentally relevant conditions. These results suggest a more detailed analysis of the potential for interactions between metals in the environment is required.
Keywords:Aluminum  antagonism  cowpea  foliar symptoms  growth  interaction  low ionic strength  manganese  metal uptake  multiplicative effects  synergism  toxicity              Vigna unguiculata            Weibull function
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