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1)  Saccharomyces cerevisiae cultivation
酒精酵母菌驯养
2)  alcohol yeast
酒精酵母
1.
Assessment of the vitality of industrial alcohol yeast by AP test;
应用AP法评价工业酒精酵母的活力
2.
Optimization of fermentation medium of trehalose produced by alcohol yeast through response surface method
响应面法优化酒精酵母产海藻糖发酵培养基
3.
High yield alcohol yeast strain Co-158 of steady genetic determinant was obtained from protoplast by Co60 mutagenesis and guarternary screening.
将较高产酒精酵母制备成原生质体,经Co60诱变后,采用四级筛选,得到高产酒精酵母菌株Co-158,其遗传性状稳定。
3)  Saccharomyces cerevisiae
酒精酵母
1.
Studies On Oscillatory Behavior of Saccharomyces cerevisiae in Continuous Culture;
酒精酵母在连续发酵中的振荡行为研究
2.
Screening of respiration deficiency mutants of yeasts (Saccharomyces cerevisiae) mutated by ultraviolet lights;
酒精酵母的紫外诱变呼吸缺陷型突变株的筛选
3.
Preparation of Live Vaccine with Saccharomyces cerevisiae by Using Surface-Display Technique and Its Potential Applications;
利用酒精酵母细胞表面展示技术制备活疫苗及其潜在应用
4)  distiller's yeast
酒精酵母
1.
It was found that the added glucoamylase could be reduced by over 40% using fusant F41 strain as compared to the parental distiller's yeast.
利用PEG诱导原生质体融合技术,进行糖化酵母单倍体26007(α,STA,inh,ade)和去除了INH1基因的耐高温酒精酵母单倍体菌株Z6-10(α,STA,inh,arg)的同型原生质体融合实验,在再生基本培养基上挑选融合子,获得一株既具有较强糊精利用能力,又耐高温和个产酒精的融合株F41。
2.
Auxotrophic haploid JD9-22 strain of thermotolerent distiller's yeast was obtained by U.
二倍体耐高温酒精酵母经诱导生孢子,单孢子分离及营养缺陷型遗传标记的制作,获得了一株与亲本发酵性能相当且遗传性能稳定的单倍体菌株JD9-22(α,sta,INH1,arg)。
5)  thermotolerant alcohol-producing yeast
耐高温酒精酵母菌
1.
Screening of thermotolerant alcohol-producing yeast and comparison of fermentation activity
耐高温酒精酵母菌株的筛选及发酵能力比较
6)  Saccharomyces cerevisiae
酿酒酵母菌
1.
Effect of high-voltage electrostatic field on Saccharomyces cerevisiae;
高压静电场对酿酒酵母菌的作用研究
2.
Study on the fermentation conditions of glutathion produced by Saccharomyces cerevisiae
酿酒酵母菌产谷胱甘肽的发酵条件研究
3.
This paper takes a haploid mutant T-27-12(αtrp~-ura~-)and its parent strain T-27(αtrp~-ura~-) of Saccharomyces cerevisiae as the research object.
以酿酒酵母菌单倍体T-27(αtrp-ura-)及其耐盐突变株T-27-12(αtrp-ura-)为试验对象,考查了在高盐(25%NaCl)冲击条件下菌体生物量,并应用荧光偏振法对冲击条件下菌体细胞膜的流动性进行测定,试验数据表明:高盐冲击条件下T-27-12(αtrp-ura-)生物量明显高于T-27(αtrp-ura-),耐盐突变株T-27-12(αtrp-ura-)细胞膜的稳定性明显高于其亲株T-27(αtrp-ura-),说明T-27-12(αtrp-ura-)较其亲株有较强的抵御恶劣环境的能力,因而可以推断细胞膜的稳定性是耐盐突变株较其亲株有更强抵御高盐冲击的一个重要原因。
补充资料:驯养
1.饲养野生动物使逐渐驯服。 2.指驯服。 3.安抚。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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