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首页> 外文期刊>FEMS Yeast Research >Growth of the salt-tolerant yeast Zygosaccharomyces rouxii in microtiter plates: effects of NaCl, pH and temperature on growth and fusel alcohol production from branched-chain amino acids
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Growth of the salt-tolerant yeast Zygosaccharomyces rouxii in microtiter plates: effects of NaCl, pH and temperature on growth and fusel alcohol production from branched-chain amino acids

机译:耐盐酵母鲁氏酵母在微量滴定板上的生长:NaCl,pH和温度对支链氨基酸生长和杂醇生产的影响

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摘要

Zygosaccharomyces rouxii, a salt-tolerant yeast isolated from the soy sauce process, produces fusel alcohols (isoamyl alcohol, active amyl alcohol and isobutyl alcohol) from branched-chain amino acids (leucine, isoleucine and valine, respectively) via the Ehrlich pathway. Using a high-throughput screening approach in microtiter plates, we have studied the effects of pH, temperature and salt concentration on growth of Z rouxii and formation of fusel alcohols from branched-chain amino acids. Application of minor variations in pH (range 3-7) and NaCl concentrations (range 0-20%) per microtiter plate well allowed a rapid and detailed evaluation of fermentation conditions for optimal growth and metabolite production. Conditions yielding the highest cell densities were not optimal for fusel alcohol production. Maximal fusel alcohol production occurred at low pH (3.0-4.0) and low NaCl concentrations (0-4%) at 25degreesC. At pH 4.0-6.0 and 0-18% NaCl, considerable amounts of a-keto acids, the deaminated products from the branched-chain amino acids, accumulated extracellularly. The highest cell densities were obtained in plates incubated at 30degreesC. The results obtained under various incubation conditions with (deepwell) microtiter plates were validated in Erlemneyer shake-flask cultures.
机译:Zygosaccharomyces rouxii是一种从酱油过程中分离出来的耐盐酵母,它通过Ehrlich途径从支链氨基酸(分别为亮氨酸,异亮氨酸和缬氨酸)生成杂醇(异戊醇,活性戊醇和异丁醇)。使用微量滴定板中的高通量筛选方法,我们研究了pH,温度和盐浓度对Rouxii Z的生长以及支链氨基酸形成杂醇的影响。每个微量滴定板孔的pH(3-7范围)和NaCl浓度(0-20%范围)微小变化的应用可以快速,详细地评估发酵条件,以实现最佳生长和代谢产物的产生。产生最高细胞密度的条件对于杂醇生产不是最佳的。在25°C下低pH(3.0-4.0)和低NaCl浓度(0-4%)时产生最大的杂醇。在pH 4.0-6.0和NaCl 0-18%的条件下,大量的α-酮酸(支链氨基酸的脱氨基产物)在细胞外积累。在30℃下孵育的平板中获得最高的细胞密度。用(深孔)微量滴定板在各种孵育条件下获得的结果已在Erlemneyer摇瓶培养物中得到验证。

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