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多功能化海洋硅藻三角褐指藻以可持续生产ω-3 长链多不饱和脂肪酸和重组植酸酶。

Multifunctionalizing the marine diatom Phaeodactylum tricornutum for sustainable co-production of omega-3 long chain polyunsaturated fatty acids and recombinant phytase.

机构信息

Algenuity, Eden Laboratory, Broadmead Road, Stewartby, BEDS MK43 9ND, UK.

Department of Plant Sciences, Rothamsted Research, Harpenden, Herts, AL5 2JQ, UK.

出版信息

Sci Rep. 2019 Aug 7;9(1):11444. doi: 10.1038/s41598-019-47875-1.

Abstract

There is an urgent requirement for sustainable sources of food and feed due to world population growth. Aquaculture relies heavily on the fish meal and fish oils derived from capture fisheries, challenging sustainability of the production system. Furthermore, substitution of fish oil with vegetable oil and fish meal with plant seed meals in aquaculture feeds reduces the levels of valuable omega-3 long chain polyunsaturated fatty acids such as eicosapentaenoic (EPA) and docosahexaenoic (DHA) acids, and lowers the nutritional value due to the presence of phytate. Addition of exogenous phytase to fish feed is beneficial for enhancing animal health and reducing phosphorus pollution. We have engineered the marine diatom Phaeodactylum tricornutum, accumulating high levels of EPA and DHA together with recombinant proteins: the fungal Aspergillus niger PhyA or the bacterial Escherichia coli AppA phytases. The removal of the N-terminal signal peptide further increased phytase activity. Strains engineered with fcpA and CIP1 promoters showed the highest level of phytase activity. The best engineered strain achieved up to 40,000 phytase activity units (FTU) per gram of soluble protein, thus demonstrating the feasibility of development of multifunctionalized microalgae to simultaneously produce industrially useful proteins and fatty acids to meet the demand of intensive fish farming activity.

摘要

由于世界人口增长,对可持续的食物和饲料来源存在迫切需求。水产养殖严重依赖于从捕捞渔业中获得的鱼粉和鱼油,这对生产系统的可持续性构成了挑战。此外,在水产养殖饲料中用植物油替代鱼油,用植物种子粉替代鱼粉,会降低具有重要价值的欧米伽-3 长链多不饱和脂肪酸(如二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)的水平,并由于植酸的存在而降低营养价值。在鱼饲料中添加外源植酸酶有利于提高动物健康水平和减少磷污染。我们已经对海洋硅藻三角褐指藻进行了基因工程改造,使其能够积累高水平的 EPA 和 DHA 以及重组蛋白:真菌黑曲霉 PhyA 或细菌大肠杆菌 AppA 植酸酶。去除 N 端信号肽进一步提高了植酸酶的活性。使用 fcpA 和 CIP1 启动子工程化的菌株显示出最高的植酸酶活性。最佳工程化菌株的植酸酶活性达到每克可溶性蛋白 40,000 个酶活单位(FTU),从而证明了多功能微藻的开发具有可行性,可同时生产工业上有用的蛋白质和脂肪酸,以满足集约化水产养殖活动的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1db1/6686013/207c33a12bd4/41598_2019_47875_Fig1_HTML.jpg

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