Department of Chemical Engineering, University of Almería, Cañada San Urbano, s/n, 04120 Almería, Spain.
LNEG, National Laboratory of Energy and Geology I.P., Bioenergy Unit, Estrada do Paço do Lumiar 22, 1649-038 Lisbon, Portugal.
Molecules. 2020 Feb 4;25(3):664. doi: 10.3390/molecules25030664.
Microalgae are microorganisms with the capacity to contribute to the sustainable and healthy food production, in addition to wastewater treatment. The subject of this work was to determine the potential of microalga grown in brewery wastewater to act as a plant biostimulant. The germination index of watercress seeds, as well as the auxin-like activity in mung bean and cucumber, and in the cytokinin-like activity in cucumber bioassays were used to evaluate the biostimulant potential. Several biomass processes were studied, such as centrifugation, ultrasonication and enzymatic hydrolysis, as well as the final concentration of microalgal extracts to determine their influence in the biostimulant activity of the biomass. The results showed an increase of 40% on the germination index when using the biomass at 0.1 g/L, without any pre-treatment. For auxin-like activity, the best results (up to 60% with respect to control) were obtained at 0.5 g/L of biomass extract, after a combination of cell disruption, enzymatic hydrolysis and centrifugation. For cytokinin-like activity, the best results (up to 187.5% with respect to control) were achieved without cell disruption, after enzymatic hydrolysis and centrifugation at a biomass extract concentration of 2 g/L.
微藻是具有为可持续和健康的食物生产做出贡献的能力的微生物,此外还可以处理废水。这项工作的主题是确定在啤酒厂废水中生长的微藻作为植物生物刺激素的潜力。采用水芹种子的发芽指数以及绿豆和黄瓜中的吲哚乙酸样活性和黄瓜中的细胞分裂素样活性生物测定来评估生物刺激素的潜力。研究了几种生物量处理方法,例如离心、超声处理和酶解,以及微藻提取物的最终浓度,以确定它们对生物量生物刺激素活性的影响。结果表明,当使用 0.1 g/L 的生物质时,发芽指数增加了 40%,而无需任何预处理。对于吲哚乙酸样活性,在经过细胞破碎、酶解和离心处理后,生物质提取物浓度为 0.5 g/L 时,获得了最佳结果(相对于对照增加了 60%)。对于细胞分裂素样活性,在不进行细胞破碎的情况下,在 2 g/L 的生物质提取物浓度下进行酶解和离心处理后,获得了最佳结果(相对于对照增加了 187.5%)。