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首页> 外文期刊>Russian Journal of Plant Physiology >The effect of selenite ions on growth and selenium accumulation in Spirulina platensis
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The effect of selenite ions on growth and selenium accumulation in Spirulina platensis

机译:亚硒离子对螺旋藻生长和硒积累的影响

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Selenium accumulation and the growth of cyanobacterium Spirulina platensis (Nordst.) Geitl. were studied in a culture with sodium selenite-supplemented nutritional medium. Selenite concentrations below 20 mg/l did not inhibit the growth of S. platensis. The addition of 30 mg/l of this salt somewhat decreased the growth rate during the linear growth phase, induced the earlier suspension transition to the steady-state phase, and substantially lowered the highest optical density of the suspension. However, even at 170 mg/l Na2SeO3, the culture still demonstrated a capacity for growth. The content of selenium in the cells depended directly on its concentration in the medium, up to the lethal level. At high selenium concentrations (100-170 mg/l), S. platensis reduced Se(IV) up to Se(0). The latter was secreted onto the cell surface and into the cultural medium. The high concentrations of Na2SeO3 acidified the cytoplasmic pH as was measured by P-31-NMR spectroscopy. At the same time, the content of protein on a dry weight basis decreased and that of carbohydrates and lipids somewhat increased, just as was observed in S. platensis cells under other stress factors. In the presence of 20 mg/l Na2SeO3, the selenium content in the biomass increased by 20000 times as compared to that in the control cells, whereas the biochemical composition of biomass did not change. In this case, the selenium was incorporated almost completely in the protein fraction. The selenium concentration in this fraction increased more significantly when the sulfur content was lowered in the medium.
机译:硒的积累和蓝藻螺旋藻的生长。在添加亚硒酸钠的营养培养基中进行培养。低于20 mg / l的亚硒酸盐浓度不会抑制钝顶链霉菌的生长。加入30 mg / l的盐稍微降低了线性生长阶段的生长速率,促使悬浮液更早地转变为稳态阶段,并显着降低了悬浮液的最高光密度。但是,即使在170 mg / l Na2SeO3下,培养物仍显示出生长能力。细胞中硒的含量直接取决于其在培养基中的浓度,直至致死水平。在高硒浓度(100-170 mg / l)下,钝顶酵母将Se(IV)还原为Se(0)。后者被分泌到细胞表面和培养基中。如通过P-31-NMR光谱法所测量的,高浓度的Na 2 SeO 3酸化了细胞质pH。同时,以干重为基础的蛋白质含量下降,而碳水化合物和脂质的含量有所增加,正如在其他胁迫因素下在S. platensis细胞中观察到的那样。在存在20 mg / l Na2SeO3的情况下,生物质中的硒含量比对照细胞增加了20000倍,而生物质的生化组成没有变化。在这种情况下,硒几乎完全掺入了蛋白质部分。当培养基中的硫含量降低时,该级分中的硒浓度会显着增加。

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