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减少布朗葡萄藻培养物中的自我遮荫效应:镁缺乏对光学和生化特性、光合作用及脂质组学特征的影响

Reducing self-shading effects in Botryococcus braunii cultures: effect of Mg deficiency on optical and biochemical properties, photosynthesis and lipidomic profile.

作者信息

Giraldo Néstor David, Correa Sandra Marcela, Arbeláez Andrés, Figueroa Felix L, Ríos-Estepa Rigoberto, Atehortúa Lucía

机构信息

Grupo de Biotecnología, Instituto de Biología, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia UdeA, Calle 67 No. 53-108, Medellín, Colombia.

Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, Potsdam, Germany.

出版信息

Bioresour Bioprocess. 2021 Apr 26;8(1):33. doi: 10.1186/s40643-021-00389-z.

Abstract

Microalgae biomass exploitation as a carbon-neutral energy source is currently limited by several factors, productivity being one of the most relevant. Due to the high absorption properties of light-harvesting antenna, photosynthetic cells tend to capture an excessive amount of energy that cannot be entirely channeled through the electron transfer chain that ends up dissipated as heat and fluorescence, reducing the overall light use efficiency. Aiming to minimize this hurdle, in this work we studied the effect of decreasing concentrations of Magnesium (Mg) on the chlorophyll a content, photosynthetic performance, biomass and lipid production of autotrophic cultures of Botryococcus braunii LB 572. We also performed, for the first time, a comparative lipidomic analysis to identify the influence of limited Mg supply on the lipid profile of this algae. The results indicated that a level of 0.0037 g L MgSO caused a significant decline on chlorophyll a content with a concomitant 2.3-fold reduction in the biomass absorption coefficient. In addition, the Mg limitation caused a decrease in the total carbohydrate content and triggered lipid accumulation, achieving levels of up to 53% DCW, whereas the biomass productivity remained similar for all tested conditions. The lipidome analysis revealed that the lowest Mg concentrations also caused a differential lipid profile distribution, with an enrichment of neutral lipids and an increase of structural lipids. In that sense, we showed that Mg limitation represents an alternative optimization approach that not only enhances accumulation of neutral lipids in B. braunii cells but also may potentially lead to a better areal biomass productivity due to the reduction in the cellular light absorption properties of the cells.

摘要

微藻生物质作为一种碳中性能源的开发目前受到几个因素的限制,生产力是其中最关键的因素之一。由于光捕获天线具有高吸收特性,光合细胞倾向于捕获过量的能量,而这些能量无法完全通过电子传递链传递,最终以热量和荧光的形式耗散,从而降低了整体光利用效率。为了尽量减少这一障碍,在这项工作中,我们研究了降低镁(Mg)浓度对布朗葡萄藻LB 572自养培养物中叶绿素a含量、光合性能、生物量和脂质产量的影响。我们还首次进行了比较脂质组学分析,以确定有限的镁供应对这种藻类脂质谱的影响。结果表明,0.0037 g/L MgSO₄的水平导致叶绿素a含量显著下降,同时生物量吸收系数降低了2.3倍。此外,镁限制导致总碳水化合物含量下降并引发脂质积累,达到高达53%干重的水平,而在所有测试条件下生物量生产力保持相似。脂质组分析表明,最低的镁浓度也导致脂质谱分布不同,中性脂质富集,结构脂质增加。从这个意义上说,我们表明镁限制是一种替代优化方法,不仅可以增强布朗葡萄藻细胞中中性脂质的积累,而且由于细胞光吸收特性的降低,还可能潜在地导致更好的单位面积生物量生产力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85aa/10992481/b9a40f6efd6e/40643_2021_389_Fig1_HTML.jpg

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