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Yeast Signaling01:28

Yeast Signaling

Yeasts are single-celled organisms, but unlike bacteria, they are eukaryotes (cells with a nucleus). Cell signaling in yeast is similar to signaling in other eukaryotic cells. A ligand, such as a protein or a small molecule released from a yeast cell, attaches to a receptor on the cell surface. The binding stimulates second-messenger kinases to activate or inactivate transcription factors that further regulate gene expression. Many of the yeast intracellular signaling cascades have similar...
Gene Conversion02:08

Gene Conversion

Other than maintaining genome stability via DNA repair, homologous recombination plays an important role in diversifying the genome. In fact, the recombination of sequences forms the molecular basis of genomic evolution. Random and non-random permutations of genomic sequences create a library of new amalgamated sequences. These newly formed genomes can determine the fitness and survival of cells. In bacteria, homologous and non-homologous types of recombination lead to the evolution of new...
Bioreactor Controls-III01:22

Bioreactor Controls-III

Strain improvement is a foundational strategy in industrial microbiology aimed at maximizing microbial productivity, particularly because natural isolates typically yield commercially valuable products in very low concentrations. Although optimizing the culture medium and environmental conditions can improve yields, these adjustments are inherently limited by the organism’s genetic potential. As a result, the focus shifts toward genetic modifications to enhance biosynthetic capacity. The...
Production of Alcohol01:27

Production of Alcohol

Continuous fermentation is a key strategy in industrial ethanol production, particularly when efficiency, scalability, and high yields are essential. This approach allows for uninterrupted operation and optimized resource utilization. The primary feedstock, corn starch, undergoes enzymatic hydrolysis facilitated by α-amylase and glucoamylase. These enzymes break down the starch into fermentable sugars such as glucose, which are readily assimilated by fermentative microorganisms.Fermentation...

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Updated: Jul 13, 2026

The Green Monster Process for the Generation of Yeast Strains Carrying Multiple Gene Deletions
13:06

The Green Monster Process for the Generation of Yeast Strains Carrying Multiple Gene Deletions

Published on: December 15, 2012

通过Saccharomyces kluyveriveri的性聚合性交配类型进行细胞外逆转酶的产生.

L J WICKERHAM, R G DWORSCHACK

    Science (New York, N.Y.)
    |April 1, 1960
    PubMed
    概括

    单性菌株的Saccharomyces kluyveri酵母产生高产的细胞外逆转酶. 与双性形式相比,这些单性菌株的染色体数量较高与酶生产增加有关.

    科学领域:

    • 微生物学 微生物学
    • 酵母遗传学 酵母遗传学
    • 酶学 是一种酶学.

    背景情况:

    • 糖菌 (Saccharomyces kluyveri) 是一种酵母物种,具有不同的交配类型.
    • 细胞外逆转酶是一种具有重要的生物技术应用的酶.
    • 了解影响酵母生产的因素对于工业过程至关重要.

    研究的目的:

    • 调查Saccharomyces kluyveri的交配类型, ploidy 和细胞外逆转酶产生之间的关系.
    • 为了比较单性和双性菌株之间的酶产量.

    主要方法:

    • 单性和双性Saccharomyces kluyveri菌株的培养.
    • 在培养超水生物中量化细胞外逆转酶活性.
    • 对酶产量的分析与染色体组的数量相关.

    主要成果:

    • 两种交配类型的单性菌株表现出异常高的细胞外逆转酶产量.
    • 在单性菌株中,酶产量通常随着染色体组数量的增加而增加.
    • 双性菌株产生的细胞外逆转酶量明显较低.

    结论:

    关键词:
    碳水化合物/新陈代谢年份/新陈代谢.

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    Last Updated: Jul 13, 2026

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    The Green Monster Process for the Generation of Yeast Strains Carrying Multiple Gene Deletions

    Published on: December 15, 2012

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    Determination of the Mating Efficiency of Haploids in Saccharomyces cerevisiae

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    • 单性的Saccharomyces kluyveri菌株是细胞外逆转酶的优越生产者.
    • 化水平是影响这些酵母菌株逆转酶产生的一个关键因素.
    • 这些发现对优化基于酵母的酶生产有意义.