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微藻生物燃料菌株产油率高通量测定筛选方法的比较

Comparison of screening methods for high-throughput determination of oil yields in micro-algal biofuel strains.

作者信息

Slocombe Stephen P, Zhang Qianyi, Black Kenneth D, Day John G, Stanley Michele S

机构信息

Scottish Association for Marine Science, Scottish Marine Institute, Oban, Argyll PA37 1QA UK.

出版信息

J Appl Phycol. 2013 Aug;25(4):961-972. doi: 10.1007/s10811-012-9947-5. Epub 2012 Dec 14.

Abstract

The phenotypic and phylogenetic diversity of micro-algae capable of accumulating triacylglycerols provides a challenge for the accurate determination of biotechnological potential. High-yielding strains are needed to improve economic viability and their compositional information is required for optimizing biodiesel properties. To facilitate a high-throughput screening programme, a very rapid direct-derivatization procedure capable of extracting lyophilized material for GC analysis was compared with a scaled-down Folch-based method. This was carried out on ten micro-algal strains from 6 phyla where the more rapid direct-derivatization approach was found to provide a more reliable measure of yield. The modified Folch-based procedure was found to substantially underestimate oil yield in one species ( < 0.01). In terms of fatty acid composition however, the Folch procedure proved to be slightly better in recovering polyunsaturated fatty acids, in six out of the ten strains. Therefore, direct-derivatization is recommended for rapid determination of yields in screening approaches but can provide slightly less compositional accuracy than solvent-based extraction methods.

摘要

能够积累三酰甘油的微藻在表型和系统发育上具有多样性,这给准确测定其生物技术潜力带来了挑战。需要高产菌株来提高经济可行性,并且需要其成分信息来优化生物柴油的性能。为了推动高通量筛选计划,将一种能够提取冻干材料用于气相色谱分析的非常快速的直接衍生化方法与一种缩小规模的基于 Folch 法的方法进行了比较。对来自 6 个门的 10 种微藻菌株进行了此项比较,结果发现更快速的直接衍生化方法能提供更可靠的产量测量值。发现改良的基于 Folch 法的程序在一个物种中大幅低估了油脂产量(<0.01)。然而,就脂肪酸组成而言,在 10 个菌株中的 6 个菌株中,Folch 法在回收多不饱和脂肪酸方面略胜一筹。因此,建议在筛选方法中使用直接衍生化来快速测定产量,但与基于溶剂的提取方法相比,其成分准确性可能略低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f31d/3705143/4bb72fa1e9c6/10811_2012_9947_Fig1_HTML.jpg

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