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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Production of nitrogen-based platform chemical: Cyanophycin biosynthesis using recombinant Escherichia coli and renewable media substitutes
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Production of nitrogen-based platform chemical: Cyanophycin biosynthesis using recombinant Escherichia coli and renewable media substitutes

机译:氮基平台化学品的生产:使用重组大肠杆菌和可再生培养基替代品进行蓝霉素生物合成

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摘要

Background: Cyanophycin (CGP) is a sustainable polymer that can be converted to a derivative with reduced arginine content, or to completely biodegradable poly-aspartic acid, which can substitute for non-biodegradable polyacrylates. In nature, it is produced by most cyanobacteria; however, these microbes are not suitable for large-scale production due to slow growth and low polymer content. Results: Cyanophycin synthetase gene (cphA) from Anabaena variabilis ATCC 29413 was PCR amplified and cloned into Escherichia coli. Different renewable media components, such as soybean meal, potato wastes and corn-derived zein hydrolysate, were evaluated for their feasibility for CGP production at shake flask level. The optimized conditions were then tested in a 7 L bioreactor; a maximum cell weight of 10.2 g L~(-1) was obtained. CGP comprised 23 g g~(-1) of cell dry matter (CDM) with molecular weight between 21.5 and 31 kDa and was composed of aspartic acid, arginine and lysine in the ratio of 1.05:1:0.2 (mass basis). Conclusion: The efficient use of renewable biomass for cyanophycin production could achieve competitive price, and in return, promote the use of this platform chemical to produce innovative polymers and materials.
机译:背景:蓝藻素(CGP)是一种可持续的聚合物,可以转化为精氨酸含量降低的衍生物,或完全生物可降解的聚天冬氨酸,可以替代不可生物降解的聚丙烯酸酯。在自然界中,它是由大多数蓝细菌产生的。然而,这些微生物由于生长缓慢和聚合物含量低而不适用于大规模生产。结果:PCR扩增了鱼腥藻ATCC 29413的蓝藻合成酶基因(cphA),并将其克隆到大肠杆菌中。评价了不同的可再生介质成分,例如豆粕,马铃薯废物和玉米衍生的玉米醇溶蛋白水解物,在摇瓶水平上生产CGP的可行性。然后在7 L生物反应器中测试优化条件;获得的最大细胞重量为10.2 g L〜(-1)。 CGP包含23 g g〜(-1)的细胞干物质(CDM),分子量在21.5至31 kDa之间,由天冬氨酸,精氨酸和赖氨酸组成,比例为1.05:1:0.2(质量基准)。结论:有效利用可再生生物质生产蓝霉素可以达到有竞争力的价格,反过来,促进使用该平台化学品生产创新的聚合物和材料。

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