García-González Mercedes, Moreno José, Manzano J Carlos, Florencio F Javier, Guerrero Miguel G
Instituto de Bioquímica Vegetal y Fotosíntesis, Consejo Superior de Investigaciones Científicas-Universidad de Sevilla, Centro de Investigaciones Científicas Isla de la Cartuja, Avda. Américo Vespucio, s/n, 41092 Sevilla, Spain.
J Biotechnol. 2005 Jan 12;115(1):81-90. doi: 10.1016/j.jbiotec.2004.07.010.
Performance of Dunaliella salina cultures outdoors in a closed tubular photobioreactor has been assessed. Optimization of conditions involved verification of the effect of several determining factors on the yield of both biomass and carotenoids. Maximal biomass productivity (over 2g (dry weight) m(-2) d(-1) or 80 gm(-3) d(-1)) was achieved at 38 cm s(-1), flow rate; 2 x 10(9) cells l(-1), initial population density; 25 degrees C, temperature; semi-continuous regime, keeping a cell density interval between 2 x 10(9) and over 4 x 10(9) cells l(-1). Coverage of the tubular loop with a sunshade screen to avoid light-induced damage of cells was essential to maintain growth performance. The cellular beta-carotene level increased significantly during the light period, as also did that of lutein. The rise in the beta-carotene level could be accounted by the 9-cis-isomer, with all-trans-beta-carotene remaining steady during the light period. By sunset, the ratio between 9-cis- and all-trans-isomers of beta-carotene amounted to 1.5, with over 60% of total beta-carotene corresponding to the 9-cis-isomer. Removal of sunshade enhanced carotenoid accumulation by cells to reach up to 10% of dry biomass. Cultivation of Dunaliella in closed tubular photobioreactor, thus represents a suitable approach for the production of a high-quality microalgal biomass enriched in the valuable 9-cis-isomer of beta-carotene and lutein.
已评估盐生杜氏藻在户外封闭管式光生物反应器中的培养性能。条件优化涉及验证几个决定性因素对生物质和类胡萝卜素产量的影响。在流速为38 cm s(-1)、初始种群密度为2×10(9)个细胞l(-1)、温度为25℃、半连续培养模式(细胞密度保持在2×10(9)至4×10(9)个细胞l(-1)以上)的条件下,实现了最大生物质生产力(超过2g(干重)m(-2) d(-1)或80 gm(-3) d(-1))。用遮阳网覆盖管状回路以避免光对细胞造成损伤对于维持生长性能至关重要。细胞内β-胡萝卜素水平在光照期间显著增加,叶黄素水平也是如此。β-胡萝卜素水平的升高可由9-顺式异构体来解释,全反式β-胡萝卜素在光照期间保持稳定。日落时,β-胡萝卜素的9-顺式异构体与全反式异构体的比例达到1.5,总β-胡萝卜素中超过60%对应于9-顺式异构体。去除遮阳网可使细胞类胡萝卜素积累量增加,达到干生物质的10%。因此,在封闭管式光生物反应器中培养盐生杜氏藻是生产富含珍贵的β-胡萝卜素9-顺式异构体和叶黄素的高质量微藻生物质的合适方法。