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联合氮限制和镉胁迫刺激普通小球藻(绿藻门)中总碳水化合物、脂质、蛋白质和氨基酸的积累。

Combined nitrogen limitation and cadmium stress stimulate total carbohydrates, lipids, protein and amino acid accumulation in Chlorella vulgaris (Trebouxiophyceae).

机构信息

Department of Botany, Federal University of São Carlos, Rodovia Washington Luis km 235, São Carlos, SP Cep 13565905, Brazil.

Department of Botany, Federal University of São Carlos, Rodovia Washington Luis km 235, São Carlos, SP Cep 13565905, Brazil.

出版信息

Aquat Toxicol. 2015 Mar;160:87-95. doi: 10.1016/j.aquatox.2015.01.002. Epub 2015 Jan 8.

DOI:10.1016/j.aquatox.2015.01.002
PMID:25625522
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 (10(-7) and 2.0×10(-8)molL(-1) Cd) under varying nitrogen (2.9×10(-6), 1.1×10(-5) and 1.1×10(-3)molL(-1)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.

摘要

金属对微藻中营养物质的吸收和代谢有相互影响。然而,痕量金属毒性对不同氮浓度下普通小球藻氨基酸组成的影响尚不清楚。本研究以普通小球藻为材料,研究了镉(10(-7) 和 2.0×10(-8)molL(-1) Cd)在不同氮(2.9×10(-6)、1.1×10(-5) 和 1.1×10(-3)molL(-1)N)浓度下对其生长速率、生物量和生化成分的影响。测定了总碳水化合物、总蛋白质、总脂质以及个别氨基酸的比例。镉胁迫和氮限制的组合显著抑制了普通小球藻的生长速率和细胞密度。然而,增加氮限制和镉胁迫刺激了每细胞更高的干重和叶绿素 a 产量。此外,总蛋白质、碳水化合物和脂质等生物分子随着氮限制和镉胁迫的增加而增加。在本研究中,在研究的胁迫条件下积累了生酮和生糖氨基酸。暴露于镉胁迫和氮限制联合作用后,参与金属螯合的氨基酸如脯氨酸、组氨酸和谷氨酰胺显著增加。我们得出结论,氮限制和镉胁迫不仅通过降低生长来影响普通小球藻的生理特性,还刺激生物分子的产生。

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