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A Novel Method to Bioaccumulate Calcium in Spirulina

机译:一种在螺旋藻中生物富集钙的新方法

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摘要

To improve the calcium content of Spirulina and develop a new kind of calcium rich Spirulina, a novel bioaccumulation method, bioaccumulation in photoheterotrophic cultures, was developped to bioaccumulate calcium in Spirulina. To elucidate the mechanism of calcium bioaccumulation of Spirulina maxima in heterotrophic condition, growth and calcium contents of S.maxima in the two photoheterotrophic cultures without NaHCO3 were measured. In the glucose culture, the best growth of S.maxima was found in the glucose concentration of 0.5g/L where the calcium content was about 5 times as high as that in photoautotrophic culture (Zarrouk). In the sodium glycerol phosphate (SGP) culture, the growth was lower than that in Zarrouk culture, but the calcium content was about 17 times higher than that of Zarrouk culture. When adding 0.01g/L CaCL2 to the two photoheterotrophic cultures, the microorganism grew badly, but their calcium contents were about 7 and 10 times as high as those that did not add CaCl2. Evaluation based on the Langmuire Equation showed that the higher calcium contents of S.maxima in the two photoheterotrophic cultures were due to the higher binding affinities between S. maxima cells and Ca2+.
机译:为了提高螺旋藻的钙含量并开发一种新型的富含钙的螺旋藻,开发了一种新的生物蓄积方法,即光异养培养物中的生物蓄积,以在螺旋藻中生物蓄积钙。为了阐明最大螺旋藻在异养条件下钙生物富集的机理,在没有NaHCO3的两种光异养培养物中,测量了最大螺旋藻的生长和钙含量。在葡萄糖培养物中,最大的葡萄球菌生长在0.5g / L的葡萄糖浓度下,其中钙含量约为光养植物(Zarrouk)的5倍。在磷酸甘油三钠(SGP)培养中,生长低于Zarrouk培养,但钙含量比Zarrouk培养高约17倍。在两种光异养培养基中添加0.01g / L CaCL2时,微生物生长较差,但其钙含量是未添加CaCl2的钙的7到10倍。基于Langmuire方程的评估表明,两种光异养培养物中S.maxima的钙含量较高,是由于S.maxima细胞与Ca2 +之间的结合亲和力较高。

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