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Photoheterotrophy in the production of phytoplankton organisms

机译:浮游生物生产中的光异养

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Interest is growing in algae as sources of medicinal and other potentially useful compounds, as well as their use in fish rearing. We are interested in their production of polyunsaturated fatty acids (PUFA). Photoautotrophic growth gives the highest levels of unsaturation in the fatty acid pool, but biomass concentrations are low. Heterotrophy on sugars gives higher biomass but seems to give more saturation in the fatty acids. In freshwater algae acetate has proved to be a good carbon source for photoheterotrophic growth, giving a crop with reasonably high levels of PUFA. In addition it is possible to regulate acetic acid addition through the pH change as acetate is used up in a well-aerated system, so achieving high biomass yields in the presence of relatively low acetate concentration. When we attempted to extend this to marine algae (principally species used in fish fanning), we found that acetic acid was ineffective or sometimes toxic to most species tested, even at high pH. However, glycerol stimulated growth in a number of the algae. We report on this stimulation, and on the fatty acid composition of the resulting algal crop, discuss the problems in regulating the addition of this metabolite to algal cultures, and speculate on applications in the production of other useful algal metabolites. We also show that some of these algae used in fish farming grow best when the salinity of the water is rather less than that found in standard sea water.
机译:作为药物和其他潜在有用化合物的来源及其在鱼类饲养中的用途,人们对藻类的兴趣与日俱增。我们对他们生产的多不饱和脂肪酸(PUFA)感兴趣。光合自养生长在脂肪酸库中提供最高水平的不饱和度,但生物质浓度较低。糖的异养性可提供更高的生物量,但脂肪酸的饱和度更高。在淡水藻中,乙酸盐已被证明是光异养生长的良好碳源,使农作物的PUFA含量较高。另外,由于乙酸盐在一个通风良好的系统中用完时,可以通过pH值的变化来调节乙酸的添加,因此在乙酸盐浓度相对较低的情况下,可以实现较高的生物量产量。当我们尝试将其扩展到海藻(主要用于扇动鱼类)时,我们发现,即使在高pH值下,乙酸对大多数受测物种也无效或有时有毒。但是,甘油刺激了许多藻类的生长。我们报告了这种刺激作用以及所得藻类作物的脂肪酸组成,讨论了调节这种代谢物向藻类培养物中添加的问题,并推测了其在生产其他有用藻类代谢物中的应用。我们还表明,当水的盐度低于标准海水中的盐度时,用于鱼类养殖的某些藻类的生长效果最佳。

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