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Optimisation of T-ISO biomass production rich in essential fatty acids I. Effect of different light regimes on growth and biomass production

机译:富含必需脂肪酸的T-ISO生物质生产的优化I.不同光照方案对生长和生物质生产的影响

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T-ISO is a microalgal strain widely used in aquaculture for its favourable lipid composition. In this study, we report on the results of an optimisation scheme for maximal biomass production under three different photoperiods (24:0, 16:08 and 12:12-h L/D) combined with three photon flux densities (PFD, 120, 220 and 460 mumol photons m(-2) s(-1)) at 25 degreesC. Sampling for growth took place in both the exponential and post-exponential (light-limited only) phase. Results showed that specific growth rate of T-ISO maximised with an increase of the total PFD supplied per day. Under continuous light, cell size of T-ISO (both cell dry weight (CDW) and cell volume) correlated positively to PFD with a further increase when the cells were transiently light-limited in the post-exponential phase. In contrast, cell dry weight under discontinuous light increased only at subsaturating PFD with a significant decrease in the post-exponential phase. Cell size, as volume, did not correlate to CDW under discontinuous light, revealing an intracellular density change particularly for the 16:08-h L/D regimes. As a result, biomass yield and productivity had different patterns for continuous and discontinuous light whereas cell yield and productivity were simply a function of total PFD per day. Biomass productivity under continuous light was inferior than under discontinuous light, although the final yield was maximal compared to those under discontinuous light.
机译:T-ISO是一种微藻菌株,因其良好的脂质组成而广泛用于水产养殖。在这项研究中,我们报告了在三种不同光周期(24:0、16:08和12:12-h L / D)下结合三种光子通量密度(PFD,120,在25摄氏度下220和460莫摩尔光子m(-2)s(-1))。在指数和后指数(仅限光限制)阶段都进行了增长采样。结果表明,T-ISO的比增长率随着每天供应的PFD总量的增加而最大化。在连续光照下,T-ISO的细胞大小(细胞干重(CDW)和细胞体积两者)与PFD正相关,而当细胞在指数后阶段​​短暂受光限制时,其进一步增加。相反,不连续光下的细胞干重仅在亚饱和PFD时才增加,而指数后阶段​​则显着降低。在不连续光照下,细胞大小(以体积计)与CDW不相关,这揭示了细胞内密度的变化,尤其是对于16:08-h L / D方案而言。结果,对于连续和不连续的光,生物量的产量和生产率具有不同的模式,而细胞的产量和生产率只是每天总PFD的函数。连续光照下的生物量生产率要比不连续光照下的生物量低,尽管与不连续光照下相比,最终产量最高。

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