Wageningen University, Bioprocess Engineering, AlgaePARC, P.O. Box 8129, Wageningen 6700 EV, The Netherlands.
Curr Opin Biotechnol. 2013 Jun;24(3):405-13. doi: 10.1016/j.copbio.2013.04.004. Epub 2013 May 4.
Both cyanobacteria and eukaryotic microalgae are promising organisms for sustainable production of bulk products such as food, feed, materials, chemicals and fuels. In this review we will summarize the potential and current biotechnological developments. Cyanobacteria are promising host organisms for the production of small molecules that can be secreted such as ethanol, butanol, fatty acids and other organic acids. Eukaryotic microalgae are interesting for products for which cellular storage is important such as proteins, lipids, starch and alkanes. For the development of new and promising lines of production, strains of both cyanobacteria and eukaryotic microalgae have to be improved. Transformation systems have been much better developed in cyanobacteria. However, several products would be preferably produced with eukaryotic microalgae. In the case of cyanobacteria a synthetic-systems biology approach has a great potential to exploit cyanobacteria as cell factories. For eukaryotic microalgae transformation systems need to be further developed. A promising strategy is transformation of heterologous (prokaryotic and eukaryotic) genes in established eukaryotic hosts such as Chlamydomonas reinhardtii. Experimental outdoor pilots under containment for the production of genetically modified cyanobacteria and microalgae are in progress. For full scale production risks of release of genetically modified organisms need to be assessed.
蓝藻和真核微藻都是可持续生产大宗产品(如食品、饲料、材料、化学品和燃料)的有前途的生物体。在这篇综述中,我们将总结潜在的和当前的生物技术发展。蓝藻是生产可分泌小分子的有前途的宿主生物,如乙醇、丁醇、脂肪酸和其他有机酸。真核微藻对于细胞储存很重要的产品很有趣,如蛋白质、脂质、淀粉和烷烃。为了开发新的有前途的生产路线,蓝藻和真核微藻的菌株都需要进行改良。转化系统在蓝藻中得到了更好的发展。然而,有几种产品最好用真核微藻来生产。在蓝藻的情况下,合成系统生物学方法具有很大的潜力,可以将蓝藻用作细胞工厂。对于真核微藻,转化系统需要进一步发展。一种有前途的策略是在已建立的真核宿主(如莱茵衣藻)中转化异源(原核和真核)基因。正在进行在受控条件下进行生产转基因蓝藻和微藻的室外试验。对于大规模生产,需要评估释放转基因生物的风险。