Showing 11,821 - 11,840 results of 38,862 for search '(( 50 ((((ng decrease) OR (we decrease))) OR (a decrease)) ) OR ( 5 c decrease ))', query time: 0.97s Refine Results
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  3. 11823

    Table_5_The Indispensable Role of Histone Methyltransferase PoDot1 in Extracellular Glycoside Hydrolase Biosynthesis of Penicillium oxalicum.XLS by Yanan Li (94033)

    Published 2019
    “…PoDot1 affects conidiation by regulating the transcription of key regulators (BrlA, FlbC, and StuA) of asexual development and is required in normal hyphae septum and branch formation by regulating the transcription of five septin-encoding genes, namely, aspA, aspB, aspC, aspD, and aspE. …”
  4. 11824

    Table_4_Developmental, Morphological and Physiological Traits in Plants Exposed for Five Generations to Chronic Low-Level Ionising Radiation.XLSX by Nicol M. Caplin (8710839)

    Published 2020
    “…Here we report research that investigated developmental, morphological and physiological effects of IR on Arabidopsis thaliana grown over 7 generations and exposed for five generations to chronic low doses of either <sup>137</sup>Cs (at a dose rate of c. 40 μGy/h from β/γ emissions) or 10 μM CdCl<sub>2</sub>. …”
  5. 11825

    Image_5_The Indispensable Role of Histone Methyltransferase PoDot1 in Extracellular Glycoside Hydrolase Biosynthesis of Penicillium oxalicum.TIF by Yanan Li (94033)

    Published 2019
    “…PoDot1 affects conidiation by regulating the transcription of key regulators (BrlA, FlbC, and StuA) of asexual development and is required in normal hyphae septum and branch formation by regulating the transcription of five septin-encoding genes, namely, aspA, aspB, aspC, aspD, and aspE. …”
  6. 11826

    Table_2_Developmental, Morphological and Physiological Traits in Plants Exposed for Five Generations to Chronic Low-Level Ionising Radiation.XLSX by Nicol M. Caplin (8710839)

    Published 2020
    “…Here we report research that investigated developmental, morphological and physiological effects of IR on Arabidopsis thaliana grown over 7 generations and exposed for five generations to chronic low doses of either <sup>137</sup>Cs (at a dose rate of c. 40 μGy/h from β/γ emissions) or 10 μM CdCl<sub>2</sub>. …”
  7. 11827

    Table_3_Developmental, Morphological and Physiological Traits in Plants Exposed for Five Generations to Chronic Low-Level Ionising Radiation.XLSX by Nicol M. Caplin (8710839)

    Published 2020
    “…Here we report research that investigated developmental, morphological and physiological effects of IR on Arabidopsis thaliana grown over 7 generations and exposed for five generations to chronic low doses of either <sup>137</sup>Cs (at a dose rate of c. 40 μGy/h from β/γ emissions) or 10 μM CdCl<sub>2</sub>. …”
  8. 11828

    Table_1_Developmental, Morphological and Physiological Traits in Plants Exposed for Five Generations to Chronic Low-Level Ionising Radiation.XLSX by Nicol M. Caplin (8710839)

    Published 2020
    “…Here we report research that investigated developmental, morphological and physiological effects of IR on Arabidopsis thaliana grown over 7 generations and exposed for five generations to chronic low doses of either <sup>137</sup>Cs (at a dose rate of c. 40 μGy/h from β/γ emissions) or 10 μM CdCl<sub>2</sub>. …”
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