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首页> 外文期刊>Agriculture and Natural Resources >High temperature alcoholic fermentation by new thermotolerant yeast strains Pichia kudriavzevii isolated from sugarcane field soil
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High temperature alcoholic fermentation by new thermotolerant yeast strains Pichia kudriavzevii isolated from sugarcane field soil

机译:从甘蔗田地土壤中分离出的新型耐热酵母菌株毕赤酵母进行高温酒精发酵

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The thermotolerant and ethanogenic yeasts are an important factor in numerous ethanol industrial applications. In this study, the potential of new isolates of thermotolerant, ethanol-producing yeasts was successfully demonstrated. In total, 60 yeast isolates were obtained from soil sugarcane fields in Uttaradit, Kamphang Phet, Chai Nat, Sukhothai, Nakhon Sawan and Phitsanulok provinces, Thailand and subjected to characterization of thermotolerance using an enrichment technique with 4% (volume per volume) ethanol. The growth performance and fermentation activity under stress conditions were compared with that of Thai industrial Saccharomyces cerevisiae TISTR 5606. Interestingly, the results showed that 30 isolates grew at high temperatures (up to 45?°C). Three isolates (NUNS–4, NUNS–5 and NUNS–6) could tolerate those conditions on agar composed of yeast extract, peptone and glucose containing 13% (v/v) ethanol. Furthermore, gas chromatography analysis to determine the ethanol concentration revealed the three new isolates produced higher amounts of ethanol than S.?cerevisiae TISTR 5606?at fermentation temperatures of 40?°C and 45?°C ( p ??0.05) when utilizing glucose as the carbon source. The isolate NUNS–4 had the highest ethanol concentrations of 88.60?±?0.75?g/L and 54.30?±?0.97?g/L at 40?°C and 45?°C, respectively. Furthermore, phylogenetic analysis based on the D1/D2 domain of 26S rDNA showed that the new isolates were identified as Pichia kudriavzevii . Consequently, thermo-tolerant and ethanol-tolerant P.?kudriavzevii NUNS–4, NUNS–5 and NUNS–6 are possible candidates as strains for commercial-scale ethanol production when using glucose as the fermentation substrate.
机译:耐热酵母和产甲烷酵母是许多乙醇工业应用中的重要因素。在这项研究中,成功​​证明了耐热的,产乙醇的酵母新菌株的潜力。总共从泰国的程逸,甘榜碧,柴纳,素可泰,那空沙旺和彭世洛府的土壤甘蔗田中获得了60种酵母分离株,并使用4%(体积/体积)乙醇的富集技术对其耐热性进行了表征。将其在胁迫条件下的生长性能和发酵活性与泰国工业酿酒酵母TISTR 5606进行了比较。有趣的是,结果表明30个分离株在高温(高达45℃)下生长。三种分离物(NUNS-4,NUNS-5和NUNS-6)可以耐受琼脂上的这些条件,这些琼脂由酵母提取物,蛋白one和含13%(v / v)乙醇的葡萄糖组成。此外,气相色谱分析法测定乙醇浓度后发现,在发酵温度为40°C和45°C时,三种新分离菌株产生的乙醇量均比酿酒酵母TISTR 5606高(p 0.05)。葡萄糖为碳源。分离出的NUNS-4在40°C和45°C的最高乙醇浓度分别为88.60?±?0.75?g / L和54.30?±?0.97?g / L。此外,基于26S rDNA的D1 / D2结构域的系统发育分析表明,新分离株被鉴定为库氏毕赤酵母。因此,当使用葡萄糖作为发酵底物时,耐热和耐乙醇的库氏假单胞菌NUNS-4,NUNS-5和NUNS-6可能是商业规模生产乙醇的菌株。

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