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工业酵母菌株PE-2在燃料乙醇发酵过程中,发酵原料以及发酵乳杆菌与野生酿酒酵母菌株共培养的影响。

Effects of feedstock and co-culture of Lactobacillus fermentum and wild Saccharomyces cerevisiae strain during fuel ethanol fermentation by the industrial yeast strain PE-2.

作者信息

Reis Vanda R, Bassi Ana Paula G, Cerri Bianca C, Almeida Amanda R, Carvalho Isis G B, Bastos Reinaldo G, Ceccato-Antonini Sandra R

机构信息

Dept Tecnologia Agroindustrial e Socio-Economia Rural, Universidade Federal de São Carlos-Centro de Ciencias Agrarias, Via Anhanguera, km 174, Araras, SP, 13600-970, Brazil.

出版信息

AMB Express. 2018 Feb 16;8(1):23. doi: 10.1186/s13568-018-0556-9.

Abstract

Even though contamination by bacteria and wild yeasts are frequently observed during fuel ethanol fermentation, our knowledge regarding the effects of both contaminants together is very limited, especially considering that the must composition can vary from exclusively sugarcane juice to a mixture of molasses and juice, affecting the microbial development. Here we studied the effects of the feedstock (sugarcane juice and molasses) and the co-culture of Lactobacillus fermentum and a wild Saccharomyces cerevisiae strain (rough colony and pseudohyphae) in single and multiple-batch fermentation trials with an industrial strain of S. cerevisiae (PE-2) as starter yeast. The results indicate that in multiple-cycle batch system, the feedstock had a minor impact on the fermentation than in single-cycle batch system, however the rough yeast contamination was more harmful than the bacterial contamination in multiple-cycle batch fermentation. The inoculation of both contaminants did not potentiate the detrimental effect in any substrate. The residual sugar concentration in the fermented broth had a higher concentration of fructose than glucose for all fermentations, but in the presence of the rough yeast, the discrepancy between fructose and glucose concentrations were markedly higher, especially in molasses. The biggest problem associated with incomplete fermentation seemed to be the lower consumption rate of sugar and the reduced fructose preference of the rough yeast rather than the lower invertase activity. Lower ethanol production, acetate production and higher residual sugar concentration are characteristics strongly associated with the rough yeast strain and they were not potentiated with the inoculation of L. fermentum.

摘要

尽管在燃料乙醇发酵过程中经常观察到细菌和野生酵母的污染,但我们对这两种污染物共同作用的影响了解非常有限,特别是考虑到原料组成可能从纯甘蔗汁到糖蜜和甘蔗汁的混合物不等,这会影响微生物的生长。在此,我们研究了原料(甘蔗汁和糖蜜)以及发酵乳杆菌与野生酿酒酵母菌株(粗糙菌落和假菌丝)的共培养在以工业酿酒酵母菌株(PE-2)作为起始酵母的单批次和多批次发酵试验中的影响。结果表明,在多循环批次系统中,原料对发酵的影响比单循环批次系统中小,然而在多循环批次发酵中,粗糙酵母污染比细菌污染更具危害性。两种污染物的接种在任何底物中都不会增强有害影响。对于所有发酵,发酵液中的残余糖浓度中果糖浓度高于葡萄糖浓度,但在存在粗糙酵母的情况下,果糖和葡萄糖浓度之间的差异明显更高,尤其是在糖蜜中。与不完全发酵相关的最大问题似乎是糖的消耗率较低以及粗糙酵母对果糖的偏好降低,而不是转化酶活性较低。较低的乙醇产量、乙酸产量和较高的残余糖浓度是与粗糙酵母菌株密切相关的特征,并且接种发酵乳杆菌不会增强这些特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd49/5815976/fe4136b6306f/13568_2018_556_Fig1_HTML.jpg

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