Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6382241 | Aquatic Toxicology | 2015 | 42 Pages |
Abstract
Metals have interactive effects on the uptake and metabolism of nutrients in microalgae. However, the effect of trace metal toxicity on amino acid composition of Chlorella vulgaris as a function of varying nitrogen concentrations is not known. In this research, C. vulgaris was used to investigate the influence of cadmium (10â7 and 2.0 Ã 10â8 mol Lâ1 Cd) under varying nitrogen (2.9 Ã 10â6, 1.1 Ã 10â5 and 1.1 Ã 10â3 mol Lâ1 N) concentrations on its growth rate, biomass and biochemical composition. Total carbohydrates, total proteins, total lipids, as well as individual amino acid proportions were determined. The combination of Cd stress and N limitation significantly inhibited growth rate and cell density of C. vulgaris. However, increasing N limitation and Cd stress stimulated higher dry weight and chlorophyll a production per cell. Furthermore, biomolecules like total proteins, carbohydrates and lipids increased with increasing N limitation and Cd stress. Ketogenic and glucogenic amino acids were accumulated under the stress conditions investigated in the present study. Amino acids involved in metal chelation like proline, histidine and glutamine were significantly increased after exposure to combined Cd stress and N limitation. We conclude that N limitation and Cd stress affects the physiology of C. vulgaris by not only decreasing its growth but also stimulating biomolecule production.
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Authors
Mathias Ahii Chia, Ana Teresa Lombardi, Maria da Graça Gama Melão, Christopher C. Parrish,