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Evaluation of stress tolerance and fermentative behavior of indigenous Saccharomyces cerevisiae

机译:评价本地酿酒酵母的耐压力和发酵行为

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摘要

Sixty six indigenous Saccharomyces cerevisiae strains were evaluated in stressful conditions (temperature, osmolarity, sulphite and ethanol tolerance) and also ability to flocculate. Eighteen strains showed tolerant characteristics to these stressful conditions, growing at 42 °C, in 0.04% sulphite, 1 mol L−1 NaCl and 12% ethanol. No flocculent characteristics were observed. These strains were evaluated according to their fermentative performance in sugar cane juice. The conversion factors of substrates into ethanol (Yp/s), glycerol (Yg/s) and acetic acid (Yac/s), were calculated. The highest values of Yp/s in sugar cane juice fermentation were obtained by four strains, one isolated from fruit (0.46) and the others from sugar cane (0.45, 0.44 and 0.43). These values were higher than the value obtained using traditional yeast (0.38) currently employed in the Brazilian bioethanol industry. The parameters Yg/s and Yac/s were low for all strains. The UFLA FW221 presented the higher values for parameter related to bioethanol production. Thus, it was tested in co-culture with Lactobacillus fermentum. Besides this, a 20-L vessel for five consecutive batches of fermentation was performed. This strain was genetically stable and remained viable during all batches, producing high amounts of ethanol. The UFLA FW221 isolated from fruit was suitable to produce bioethanol in sugar cane juice. Therefore, the study of the biodiversity of yeasts from different environmental can reveal strains with desired characteristics to industrial applications.
机译:在压力条件下(温度,渗透压,亚硫酸盐和乙醇耐受性)以及絮凝能力,评估了66株本地酿酒酵母菌株。 18个菌株在0.04%的亚硫酸盐,1 mol L -1 NaCl和12%的乙醇中于42°C生长,对这些胁迫条件具有耐受性。没有观察到絮凝特性。这些菌株根据其在甘蔗汁中的发酵性能进行评估。计算了底物向乙醇(Yp / s),甘油(Yg / s)和乙酸(Yac / s)的转化因子。甘蔗汁发酵中Yp / s的最高值是通过四种菌株获得的,一种菌株是从水果中分离出来的(0.46),另一种菌株是从甘蔗中分离出来的(0.45、0.44和0.43)。这些值高于使用巴西生物乙醇行业目前使用的传统酵母(0.38)获得的值。所有菌株的参数Yg / s和Yac / s均较低。 UFLA FW221提出了更高的与生物乙醇生产相关的参数值。因此,在与发酵乳杆菌共培养中对其进行了测试。除此之外,进行了20升的容器,以进行五次连续的发酵。该菌株具有遗传稳定性,并且在所有批次中均保持活力,可产生大量乙醇。从水果中分离出的UFLA FW221适合在甘蔗汁中生产生物乙醇。因此,对来自不同环境的酵母生物多样性的研究可以揭示出具有工业应用所需特性的菌株。

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