首页> 外文期刊>Applied Microbiology and Biotechnology >Best practices in heterotrophic high-cell-density microalgal processes: Achievements, potential and possible limitations
【24h】

Best practices in heterotrophic high-cell-density microalgal processes: Achievements, potential and possible limitations

机译:异养高细胞密度微藻工艺的最佳实践:成就,潜力和可能的局限性

获取原文
获取原文并翻译 | 示例
           

摘要

Microalgae of numerous heterotrophic genera (obligate or facultative) exhibit considerable metabolic versatility and flexibility but are currently underexploited in the biotechnological manufacturing of known plant-derived compounds, novel high-value biomolecules or enriched biomass. Highly efficient production of microalgal biomass without the need for light is now feasible in inexpensive, well-defined mineral medium, typically supplemented with glucose. Cell densities of more than 100 g∈l~(-1) cell dry weight have been achieved with Chlorella, Crypthecodinium and Galdieria species while controlling the addition of organic sources of carbon and energy in fedbatch mode. The ability of microalgae to adapt their metabolism to varying culture conditions provides opportunities to modify, control and thereby maximise the formation of targeted compounds with non-recombinant microalgae. This review outlines the critical aspects of cultivation technology and current best practices in the heterotrophic high-cell-density cultivation of microalgae. The primary topics include (1) the characteristics of microalgae that make them suitable for heterotrophic cultivation, (2) the appropriate chemical composition of mineral growth media, (3) the different strategies for fedbatch cultivations and (4) the principles behind the customisation of biomass composition. The review confirms that, although fundamental knowledge is now available, the development of efficient, economically feasible large-scale bioprocesses remains an obstacle to the commercialisation of this promising technology.
机译:许多异养属(专性或兼性)的微藻具有相当大的代谢通用性和灵活性,但目前在已知植物衍生化合物,新型高价值生物分子或富集生物质的生物技术生产中尚未得到充分利用。现在,在廉价,轮廓分明的矿物培养基(通常补充了葡萄糖)中,无需光照即可高效生产微藻生物质。小球藻,Crypthecodinium和Galdieria菌种的细胞密度已达到100g∈l〜(-1)细胞干重以上,同时以分批方式控制碳和能量的有机来源的添加。微藻使它们的代谢适应不同的培养条件的能力提供了机会来修饰,控制并从而最大程度地形成具有非重组微藻的目标化合物。这篇综述概述了微藻的异养高细胞密度培养中的培养技术和当前最佳实践的关键方面。主要主题包括(1)使微藻适合异养栽培的特性,(2)矿物生长培养基的适当化学成分,(3)补料分批栽培的不同策略以及(4)自定义定制的原理生物质组成。审查证实,尽管现在已经掌握了基础知识,但是高效,经济可行的大规模生物过程的发展仍然是这项有前途的技术商业化的障碍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号