Zou Jing, Chang Xuedong
College of Food Science and Technology, Hebei Normal University of Science and Technology, Qinhuangdao 066600, China.
J Fungi (Basel). 2022 Apr 12;8(4):395. doi: 10.3390/jof8040395.
Concerns about fossil fuel depletion and the environmental effects of greenhouse gas emissions have led to widespread fermentation-based production of bioethanol from corn starch or sugarcane. However, competition for arable land with food production has led to the extensive investigation of lignocellulosic sources and waste products of the food industry as alternative sources of fermentable sugars. In particular, whey, a lactose-rich, inexpensive byproduct of dairy production, is available in stable, high quantities worldwide. This review summarizes strategies and specific factors essential for efficient lactose/whey fermentation to ethanol. In particular, we cover the most commonly used strains and approaches for developing high-performance strains that tolerate fermentation conditions. The relevant genes and regulatory systems controlling lactose utilization and sources of new genes are also discussed in detail. Moreover, this review covers the optimal conditions, various feedstocks that can be coupled with whey substrates, and enzyme supplements for increasing efficiency and yield. In addition to the historical advances in bioethanol production from whey, this review explores the future of yeast-based fermentation of lactose or whey products for beverage or fuel ethanol as a fertile research area for advanced, environmentally friendly uses of industrial waste products.
对化石燃料枯竭以及温室气体排放所产生环境影响的担忧,已促使人们广泛采用基于发酵的方法,从玉米淀粉或甘蔗中生产生物乙醇。然而,与粮食生产争夺耕地,导致人们对木质纤维素来源以及食品工业的废弃物作为可发酵糖的替代来源展开了广泛研究。特别是乳清,它是乳制品生产中富含乳糖且价格低廉的副产品,在全球范围内产量稳定且数量可观。本综述总结了高效将乳糖/乳清发酵为乙醇所必需的策略和特定因素。具体而言,我们涵盖了最常用的菌株以及开发耐受发酵条件的高性能菌株的方法。还详细讨论了控制乳糖利用的相关基因和调控系统以及新基因的来源。此外,本综述涵盖了最佳条件、可与乳清底物搭配的各种原料以及用于提高效率和产量的酶添加剂。除了从乳清生产生物乙醇方面的历史进展外,本综述还探讨了将乳糖或乳清产品用于酵母发酵以生产饮料或燃料乙醇的未来发展,这是一个利用工业废弃物进行先进、环保应用的富有成果的研究领域。