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Taxonomy and growth conditions concur to determine the energetic suitability of algal fatty acid complements

机译:分类学和生长条件共同决定藻类脂肪酸补体的能量适应性

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We hypothesize that, in algae, carbon allocation to lipids depends on the combined effects of the metabolic constraints imposed by the genotype (i.e., species-specific differences in composition) and on the acclimation responses (phenotype) to changes in the stoichiometry of available inorganic carbon (for photosynthesis) and nitrogen (primarily for amino acids, protein, and nucleic acid synthesis). We thus cultured three taxonomically distinct algae, the green alga Dunaliella salina, the diatom Thalassiosira pseudonana, and the dinoflagellate Protoceratium reticulatum, at four nitrate concentrations and constant inorganic carbon. Since energy availability also directly impacts carbon partitioning, we studied the effect of irradiance on the oil quality of P. reticulatum. We used Fourier transform infrared (FTIR) spectroscopy to study carbon allocation and biomass reduction level and gas chromatography for fatty acid analysis. The fatty acid complements of the three species were different; within each species, growth conditions substantially altered oil quality. We ranked the oils in terms of their suitability as biodiesels, using international standards as reference. We believe that this approach may help to identify the appropriate combination of taxa and culture conditions for algal biodiesel production and in general offers insight on carbon allocation to fatty acids.
机译:我们假设,在藻类中,脂质的碳分配取决于基因型(即组成的物种特异性差异)所施加的代谢限制的综合作用,以及对可用无机化学计量变化的适应反应(表型)碳(用于光合作用)和氮(主要用于氨基酸,蛋白质和核酸合成)。因此,我们在四个硝酸盐浓度和恒定的无机碳下培养了三种在分类学上截然不同的藻类,绿藻杜氏盐藻,硅藻Thalassiosira pseudonana和鞭毛藻原藻。由于能量的可利用性也直接影响碳的分配,因此我们研究了辐照度对网纹体育油品质的影响。我们使用傅里叶变换红外(FTIR)光谱研究碳分配和生物量减少水平,以及气相色谱法进行脂肪酸分析。三种脂肪酸的补体是不同的。在每个物种中,生长条件大大改变了油质。我们使用国际标准作为参考,将这些油按其作为生物柴油的适用性进行排名。我们认为,这种方法可能有助于确定用于藻类生物柴油生产的分类单元和培养条件的适当组合,并且总的来说可以提供对脂肪酸碳的分配的见解。

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