Ganeshan Seedhabadee, Kim Seon Hwa, Vujanovic Vladimir
Department of Food and Bioproduct Sciences, University of Saskatchewan, 51 Campus Drive, Saskatoon, SK S7N 5A8 Canada.
Bioresour Bioprocess. 2021;8(1):63. doi: 10.1186/s40643-021-00417-y. Epub 2021 Jul 15.
The benefit of microorganisms to humans, animals, insects and plants is increasingly recognized, with intensified microbial endophytes research indicative of this realization. In the agriculture industry, the benefits are tremendous to move towards sustainable crop production and minimize or circumvent the use of chemical fertilizers and pesticides. The research leading to the identification of potential plant endophytes is long and arduous and for many researchers the challenge is ultimately in scale-up production. While many of the larger agriculture and food industries have their own scale-up and manufacturing facilities, for many in academia and start-up companies the next steps towards production have been a stumbling block due to lack of information and understanding of the processes involved in scale-up fermentation. This review provides an overview of the fermentation process from shake flask cultures to scale-up and the manufacturing steps involved such as process development optimization (PDO), process hazard analysis (PHA), pre-, in- and post-production (PIP) challenges and finally the preparation of a technology transfer package (TTP) to transition the PDO to manufacturing. The focus is on submerged liquid fermentation (SLF) and plant endophytes production by providing original examples of fungal and bacterial endophytes, plant growth promoting sp. and sp. bioinoculants, respectively. We also discuss the concepts, challenges and future perspectives of the scale-up microbial endophyte process technology based on the industrial and biosafety research platform for advancing a massive production of next-generation biologicals in bioreactors.
微生物对人类、动物、昆虫和植物的益处日益得到认可,微生物内生菌研究的加强就表明了这一点。在农业领域,这些益处对于实现可持续作物生产以及尽量减少或避免使用化肥和农药意义重大。确定潜在植物内生菌的研究漫长而艰巨,对许多研究人员来说,最终的挑战在于扩大生产规模。虽然许多大型农业和食品行业都有自己的扩大生产和制造设施,但对于学术界和初创公司的许多人来说,由于缺乏对扩大规模发酵所涉及过程的信息和了解,迈向生产的下一步成为了绊脚石。本综述概述了从摇瓶培养到扩大规模的发酵过程以及所涉及的制造步骤,如工艺开发优化(PDO)、工艺危害分析(PHA)、生产前、生产中和生产后(PIP)挑战,最后是准备技术转让包(TTP)以将PDO转化为制造。重点是通过分别提供真菌和细菌内生菌、促进植物生长的菌种和生物接种剂的原始例子,介绍深层液体发酵(SLF)和植物内生菌生产。我们还基于工业和生物安全研究平台,讨论扩大规模的微生物内生菌工艺技术的概念、挑战和未来前景,以推动在生物反应器中大规模生产下一代生物制品。