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Evaluation of biomass production carotenoid level and antioxidant capacity produced by Thermus filiformis Using fractional factorial design

机译:利用分数因子设计评估丝状栖热菌产生的生物量类胡萝卜素水平和抗氧化能力

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摘要

A fractional factorial design 25–1 was used to evaluate the effect of temperature, pH, and concentrations of yeast extract, tryptone and Nitsch’s trace elements on the biomass, total carotenoids and protection against singlet oxygen by carotenoid extracts of the bacterium Thermus filiformis. In addition, the carotenoid composition was determined by high-performance liquid chromatography connected to a diode array and mass spectrometer detectors (HPLC-DAD-MS/MS). The production of biomass ranged from 0.113 to 0.658 g/L, the total carotenoid from 137.6 to 1,517.4 µg/g and the protection against singlet oxygen from 4.3 to 85.1 %. Results of the fractional factorial design showed that temperature had a negative effect on biomass production and a positive effect on carotenoid content and protection against singlet oxygen, besides, high levels of pH value, concentrations of yeast extract and tryptone had a positive effect on biomass production only at lower temperatures. The main carotenoids of T. filiformis were thermozeaxanthins. In the tested conditions, changes in the levels of the variables influenced the biomass, carotenoid production, and protection against singlet oxygen, although they did not influence the carotenoid profile. The results of this study provide a better understanding on the interactions among certain nutritional and cultivation conditions of a thermophile bacterium, Thermus filiformis, on biomass and carotenoid amounts, as well as on the antioxidant capacity.
机译:使用分数阶乘设计2 5-1–sup>评估温度,pH值和酵母提取物,胰蛋白p和Nitsch微量元素的浓度对生物量,总类胡萝卜素以及类胡萝卜素对单线态氧的保护作用丝状栖热菌的提取物。另外,通过连接到二极管阵列和质谱检测器的高效液相色谱法(HPLC-DAD-MS / MS)测定类胡萝卜素的组成。生物量的产生范围为0.113至0.658 g / L,总类胡萝卜素的范围为137.6至1,517.4 µg / g,抗单线态氧的防护能力为4.3至85.1%。分数阶乘设计的结果表明,温度对生物量产生负面影响,对类胡萝卜素含量和单线态氧的保护有正面影响,此外,高pH值,酵母提取物和胰蛋白concentrations的浓度对生物量产生正面影响仅在较低温度下。丝状线虫的主要类胡萝卜素是热玉米黄质。在测试条件下,变量的水平变化会影响生物量,类胡萝卜素的产生以及防止单线态氧的作用,尽管它们不会影响类胡萝卜素的分布。这项研究的结果更好地了解了嗜热菌丝状栖热菌的某些营养和培养条件之间的相互作用,生物量和类胡萝卜素的量以及抗氧化能力。

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