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严重缺铁导致脂质生成增加。

Enhanced Lipid Production in Caused by Severe Iron Deficiency.

作者信息

Devadasu Elsinraju, Subramanyam Rajagopal

机构信息

Department of Plant Sciences, School of Life Sciences, University of Hyderabad, Hyderabad, India.

出版信息

Front Plant Sci. 2021 Apr 13;12:615577. doi: 10.3389/fpls.2021.615577. eCollection 2021.

Abstract

Microalgae are used as a source of lipids for the production of biofuels. Most algae produce neutral lipids under stress conditions. Here, lipid accumulation by the unicellular alga was examined during cultivation under iron-limiting conditions. Severe iron stress caused the cells to accumulate a significant amount of lipid, specifically triacylglycerols (TAGs), by compromising the growth. Semi-quantitative measurements by Fourier transform infrared (FTIR) spectroscopy showed an increase in both carbohydrate and lipid content in iron-stressed cells compared to control. Analysis by flow cytometry and thin layer chromatography confirmed that severe iron deficiency-induced TAG accumulation to fourfold higher than in iron-replete control cells. This accumulation of TAGs was mostly degraded from chloroplast lipids accompanied by overexpression of diacylglycerol acyltransferase (DGAT2A) protein. Furthermore, liquid chromatography-mass spectrometry (LC-MS) analysis demonstrated significantly enhanced levels of C16:0, C18:2, and C18:3 fatty acids (FAs). These results indicate that iron stress triggers the rapid accumulation of TAGs in cells. The enhanced production of these lipids caused by the iron deficiency may contribute to the efficient production of algal biofuels if we escalate to the photobioreactor's growth conditions.

摘要

微藻被用作生产生物燃料的脂质来源。大多数藻类在胁迫条件下产生中性脂质。在此,研究了单细胞藻类在铁限制条件下培养期间的脂质积累情况。严重的铁胁迫通过抑制生长导致细胞积累大量脂质,特别是三酰甘油(TAGs)。傅里叶变换红外(FTIR)光谱的半定量测量表明,与对照相比,铁胁迫细胞中的碳水化合物和脂质含量均有所增加。流式细胞术和薄层色谱分析证实,严重缺铁诱导的TAG积累比铁充足的对照细胞高出四倍。TAGs的这种积累主要从叶绿体脂质中降解,同时伴随着二酰甘油酰基转移酶(DGAT2A)蛋白的过表达。此外,液相色谱 - 质谱(LC - MS)分析表明,C16:0、C18:2和C18:3脂肪酸(FAs)的水平显著提高。这些结果表明,铁胁迫触发了细胞中TAGs的快速积累。如果我们扩大到光生物反应器的生长条件,缺铁引起的这些脂质产量增加可能有助于高效生产藻类生物燃料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd40/8076870/472e6a72b3f4/fpls-12-615577-g001.jpg

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