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首页> 外文期刊>Journal of Applied Phycology >The role of photo-osmotic adaptation in semi-continuous culture and lipid particle release from Dunaliella viridis
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The role of photo-osmotic adaptation in semi-continuous culture and lipid particle release from Dunaliella viridis

机译:光渗透适应在杜氏盐藻半连续培养和脂质颗粒释放中的作用

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Although great efforts have been made to elucidate the phenotypic responses of alga to varying levels of nutrients, osmotic environments, and photosynthetically active radiation intensities, the role of interactions among these variables is largely nebulous. Here, we describe a general method for establishing and maintaining semi-continuous cultures of the halophilic microalgal production strain, Dunaliella viridis, that is independent of variations in salinity and illumination intensity. Using this method, the cultures were evaluated to elucidate the overlapping roles of photosynthetic and osmotic adaptation on the accumulation and compositional variation of the biomass, photosynthetic productivity, and physiological biomarkers, as well as spectroscopic and morphological details at the single-cell level. Correlation matrices defining the relationships among the observables and based on variation of the illumination intensity and salinity were constructed for predicting bioproduct yields for varying culture conditions. Following maintenance of stable cultures for 6-week intervals, phenotypic responses to photo-osmotic drift were explored using a combination of single-cell hyperspectral fluorescence imaging and flow cytometry. In addition to morphological changes, release of lipid microparticles from the cells that is disproportionate to cell lysis was observed under hypotonic drift, indicating the existence of a reversible membrane permeation mechanism in Dunaliella. This phenomenon introduces the potential for low-cost strategies for recovering lipids and pigments from the microalgae by minimizing the requirement for energy intensive harvesting and dewatering of the biomass. The results should be applicable to outdoor culture, where seasonal changes resulting in variable solar flux and precipitation and evaporation rates are anticipated.
机译:尽管已经做出很大的努力来阐明藻类对不同水平的营养物,渗透环境和光合有效辐射强度的表型反应,但这些变量之间的相互作用在很大程度上尚不清楚。在这里,我们描述了一种建立和维持嗜盐微藻生产菌株杜氏杜氏藻的半连续培养的通用方法,该方法与盐度和光照强度的变化无关。使用这种方法,对培养物进行了评估,以阐明光合和渗透适应对生物量的积累和组成变化,光合生产力和生理生物标志物以及单细胞水平的光谱学和形态学细节的重叠作用。建立了定义可观察物之间关系并基于光照强度和盐度变化的相关矩阵,以预测不同培养条件下生物制品的产量。在保持稳定的培养物6周的间隔后,结合使用单细胞高光谱荧光成像和流式细胞仪探索对光渗透漂移的表型反应。除了形态变化外,在低渗漂移下还观察到脂质微粒从细胞中释放出来,与细胞溶解不成比例,这表明杜氏藻中存在可逆的膜渗透机制。这种现象通过将对能量密集型收获和生物质脱水的需求降至最低,为从微藻中回收脂质和色素的低成本策略带来了潜力。该结果应适用于户外文化,因为季节性变化会导致太阳通量,降水和蒸发速率的变化。

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