Silica Wort Supplementation as an Alternative for Yeast Stress Relief on Corn Ethanol Production with Cell Recycling

Stresses Pub Date : 2024-07-08 DOI:10.3390/stresses4030028
M. Oliveira, R. Douradinho, P. Sica, L. Mota, A. Pinto, T. Faria, A. Baptista
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Abstract

In very high gravity (VHG) fermentation, yeast cells are subjected to a multitude of challenging conditions, including the osmotic pressure exerted by the high sugar content of the wort and the stress factors associated with the high ethanol concentrations present at the end of the fermentation cycle. The response of this biological system to abiotic stresses may be enhanced through biochemical and physiological routes. Silica may play a significant role in regulating the cellular homeostasis of yeast. Alternatively, it is expected that this outcome may be achieved through biochemical responses from the effects of vitamins on yeast cells and the physiological yeast route changing by the culture medium aeration. The objective of this study was to investigate the effects of adding 500 mg L−1 of silica on corn ethanol wort medium and the possibility of supplementing the same wort with vitamins alongside aeration (0.2 v v−1 min−1) as an alternative resource to sustain the fermentation yield rather than adding silica in a fed-batch fermentation cycle with yeast recycling. Upon completion of the five fermentation cycles, yeast samples subjected to the treatment with the addition of silica exhibited a 3.1% higher fermentation yield in comparison to the results observed in the vitamins plus aeration medium bath. Even though greater biomass production (19.1 g L−1) was observed through aerobic yeast behavior in vitaminized supplemented corn medium, the provided silica had a more beneficial effect on yeast stress relief for very high gravity fermentation in a corn hydrolyzed wort with cell recycling.
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在玉米乙醇生产中补充麦芽汁硅作为细胞循环的酵母应激缓解替代品
在超高比重(VHG)发酵过程中,酵母细胞要经受多种挑战性条件的考验,包括麦汁中高含糖量所产生的渗透压,以及发酵周期结束时出现的高浓度乙醇所带来的压力因素。这种生物系统对非生物压力的反应可通过生化和生理途径得到增强。二氧化硅可能在调节酵母的细胞平衡方面发挥重要作用。另外,预计这一结果可通过维生素对酵母细胞的影响所产生的生化反应以及培养基通气所改变的酵母生理途径来实现。本研究的目的是调查在玉米乙醇麦汁培养基中添加 500 mg L-1 二氧化硅的效果,以及在通气(0.2 v v-1 min-1)的同时向同一麦汁中添加维生素的可能性,以此作为维持发酵产量的替代资源,而不是在酵母循环使用的饲料批量发酵循环中添加二氧化硅。五个发酵周期结束后,与维生素加通气培养基槽中观察到的结果相比,经过添加二氧化硅处理的酵母样品的发酵产量提高了 3.1%。尽管在添加维生素的玉米培养基中,有氧酵母的行为观察到了更高的生物量产量(19.1 g L-1),但所提供的二氧化硅对玉米水解麦汁中的超高重力发酵和细胞循环中的酵母应激缓解有更有利的影响。
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