Showing 1 - 20 results of 104 for search '(( decrease heat resistance ) OR ( ((decrease stress) OR (increased cell)) resistance ))~', query time: 0.63s Refine Results
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    Table_3_Physiological and Molecular Characterization of an Oxidative Stress-Resistant Saccharomyces cerevisiae Strain Obtained by Evolutionary Engineering.DOCX by Nazlı Kocaefe-Özşen (12128412)

    Published 2022
    “…Thus, robust yeast strains with increased resistance to oxidative stress are in highly demand by the industry. …”
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    Table_6_Physiological and Molecular Characterization of an Oxidative Stress-Resistant Saccharomyces cerevisiae Strain Obtained by Evolutionary Engineering.DOCX by Nazlı Kocaefe-Özşen (12128412)

    Published 2022
    “…Thus, robust yeast strains with increased resistance to oxidative stress are in highly demand by the industry. …”
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    Table_5_Physiological and Molecular Characterization of an Oxidative Stress-Resistant Saccharomyces cerevisiae Strain Obtained by Evolutionary Engineering.DOCX by Nazlı Kocaefe-Özşen (12128412)

    Published 2022
    “…Thus, robust yeast strains with increased resistance to oxidative stress are in highly demand by the industry. …”
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    Table_4_Physiological and Molecular Characterization of an Oxidative Stress-Resistant Saccharomyces cerevisiae Strain Obtained by Evolutionary Engineering.DOCX by Nazlı Kocaefe-Özşen (12128412)

    Published 2022
    “…Thus, robust yeast strains with increased resistance to oxidative stress are in highly demand by the industry. …”
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    Table_1_Physiological and Molecular Characterization of an Oxidative Stress-Resistant Saccharomyces cerevisiae Strain Obtained by Evolutionary Engineering.DOCX by Nazlı Kocaefe-Özşen (12128412)

    Published 2022
    “…Thus, robust yeast strains with increased resistance to oxidative stress are in highly demand by the industry. …”
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    Table_2_Physiological and Molecular Characterization of an Oxidative Stress-Resistant Saccharomyces cerevisiae Strain Obtained by Evolutionary Engineering.DOCX by Nazlı Kocaefe-Özşen (12128412)

    Published 2022
    “…Thus, robust yeast strains with increased resistance to oxidative stress are in highly demand by the industry. …”
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    Graphical summary of this study. by Taro Onuma (15195377)

    Published 2023
    “…The specific induction of these Imd target genes by peptidoglycans from two bacterial species is due to the stimulation of the receptor PGRP-LC in the anterior midgut for AMPs or PGRP-LE from the posterior midgut for amidase PGRPs. Heat-killed <i>A</i>. <i>persici</i> also shortens lifespan and increases ISC proliferation via PGRP-LC, but it is not sufficient to alter the stress resistance. …”
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    Sequences of primers. by Taro Onuma (15195377)

    Published 2023
    “…The specific induction of these Imd target genes by peptidoglycans from two bacterial species is due to the stimulation of the receptor PGRP-LC in the anterior midgut for AMPs or PGRP-LE from the posterior midgut for amidase PGRPs. Heat-killed <i>A</i>. <i>persici</i> also shortens lifespan and increases ISC proliferation via PGRP-LC, but it is not sufficient to alter the stress resistance. …”
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    Data_Sheet_1_LAM Genes Contribute to Environmental Stress Tolerance but Sensibilize Yeast Cells to Azoles.docx by Svyatoslav S. Sokolov (8365074)

    Published 2020
    “…The quadruple deletant showed increased sterol content and a strong decrease in ethanol, heat shock and high osmolarity resistance. …”
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    Data_Sheet_1_From Cyanobacteria to Human, MAPEG-Type Glutathione-S-Transferases Operate in Cell Tolerance to Heat, Cold, and Lipid Peroxidation.docx by Xavier Kammerscheit (669297)

    Published 2019
    “…While Sll1147 is dispensable to cell growth in standard photo-autotrophic conditions, it plays an important role in the resistance to heat and cold, and to n-tertbutyl hydroperoxide (n-tBOOH) that induces lipid peroxidation. …”