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Showing 1 to 8 of 8 for “"Yeast fungi"”.

  1. Development of Pichia pastoris as a ruminal escape vehicle

    lethbridge

  2. Identification and characterization of components that overcome secretion limitations of the yeast Pichia pastoris

    <p>The methylotrophic yeast. Pichia pastoris, is a powerful, adaptable, and inexpensive recombinant expression system commonly used to secrete heterologous protein. Although P. pastoris is a popular host organism, secretion inefficiency continues to be a major hurdle in its ability to produce high …

    u-pacific Repository record for Identification and characterization of components that overcome secretion limitations of the yeast Pichia pastoris (opens in a new tab)

  3. Development of a high throughput reporter system using β-Galactosidase in the yeast : Pichia Pastoris

    <p>Pichia pastoris is a methylotrophic yeast gaining acclamation for its capabili ties in heterologous protein expression. In contrast to other host organisms such as bacteria or mammalian cells, P. pastoris offers many advantages over its counterparts. For example, P. pastoris is cost-effective in …

    u-pacific Repository record for Development of a high throughput reporter system using β-Galactosidase in the yeast : Pichia Pastoris (opens in a new tab)

  4. Cloning and characterization of the Pichia Pastoris PMR1 gene

    <p>Pichia pastoris, a popular protein expression system, is limited in its ability to secrete heterologous proteins. The PMR1 gene, the disruption of which is known to improve the secretion of prochymosin, human prourokinase, and human tissue plasminogen activator in Saccharomyces cerevisiae, was …

    u-pacific Repository record for Cloning and characterization of the Pichia Pastoris PMR1 gene (opens in a new tab)

  5. Characterization of the 5̕ untranslated region ( 5̕ UTR) of the alcohol oxidase I (AOX I) gene in Pichia pastoris.

    <p>The primary focus of this study was on the characterization of the 122 nucleotide 5' Untranslated Region (UTR) of the Alcohol Oxidase I (AOXI) gene in Pichia pastoris. The 5' UTR influences the expression of many heterologous proteins in P. pastoris. However, no systematic analysis has ever been …

    u-pacific Repository record for Characterization of the 5̕ untranslated region ( 5̕ UTR) of the alcohol oxidase I (AOX I) gene in Pichia pastoris. (opens in a new tab)

  6. SIDEROPHORE DESFERRIOXAMINE B PROMOTED DISSOLUTION AND ADSORPTION PROPERTIES OF TITANIUM DIOXIDE BEARING MINERALS

    … are produced by many microorganisms such as yeast, fungi, algae, and bacteria in a low iron available environment play a significant role in iron availability. They can be found everywhere in nature and can sequester Fe(III) in a low Fe environment and make them soluble which can be further …

    temple Repository record for SIDEROPHORE DESFERRIOXAMINE B PROMOTED DISSOLUTION AND ADSORPTION PROPERTIES OF TITANIUM DIOXIDE BEARING MINERALS (opens in a new tab)

  7. Characterization of the Pichia pastoris alcohol oxidase I promoter

    <p>The methylotrophic yeast, Pichia past oris, is one of the most respected and widely used systems today. The ability of this yeast to produce large masses of protein and metabolize methanol as a sole source of carbon and energy is attributed to the highly induceable Alcohol Oxidase I promoter …

    u-pacific Repository record for Characterization of the Pichia pastoris alcohol oxidase I promoter (opens in a new tab)

  8. Understanding and Engineering Chemically Activated Ubiquitin Ligases for High-throughput Detection, Quantification, and Control of Molecules in Yeast

    Fungi, diverse and impactful organisms, exert both beneficial and harmful effects on plants, animals, and humans. Certain fungi produce auxin or indole-3-acetic acid (IAA), a crucial plant growth hormone that influences various aspects of plant growth and defense mechanisms. Conversely, pathogenic …

    vt Repository record for Understanding and Engineering Chemically Activated Ubiquitin Ligases for High-throughput Detection, Quantification, and Control of Molecules in Yeast (opens in a new tab)