Showing 106,721 - 106,740 results of 157,964 for search '(( 10 ((mm decrease) OR (we decrease)) ) OR ( 5 ((mean decrease) OR (a decrease)) ))', query time: 2.10s Refine Results
  1. 106721
  2. 106722
  3. 106723
  4. 106724

    Replication Fork Reversal after Replication–Transcription Collision by Anne L. De Septenville (173797)

    Published 2012
    “…The amount of linear DNA decreases nearly two-fold when the Holliday junction resolvase RuvABC is inactivated in <em>recB</em>, as well as in <em>recA recD</em> mutants, indicating that part of the linear DNA is formed by resolution of a Holliday junction. …”
  5. 106725
  6. 106726
  7. 106727
  8. 106728

    Table_1_Association Between Oxygen Partial Pressure Trajectories and Short-Term Outcomes in Patients With Hemorrhagic Brain Injury.DOCX by Guolong Cai (6949547)

    Published 2021
    “…<p>Objectives: Arterial hyperoxia is reportedly a risk factor for poor outcomes in patients with hemorrhagic brain injury (HBI). …”
  9. 106729

    Image_6_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  10. 106730

    Image_3_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  11. 106731

    Image_4_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  12. 106732

    Image_1_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  13. 106733

    Image_8_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  14. 106734

    Image_2_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  15. 106735

    Table_2_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.DOCX by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  16. 106736

    Table_1_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.DOCX by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  17. 106737

    Image_7_Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.JPEG by Yun-Shil Gho (4172008)

    Published 2020
    “…In this study, we first carried out a phylogenetic analysis of eight rice and five Arabidopsis RNS genes and identified mono-specific class I and dicot-specific class I RNS genes, suggesting the possibility of functional diversity between class I RNS family members in monocot and dicot species through evolution. …”
  18. 106738

    Image 1_STZ-induced hyperglycemia differentially influences mitochondrial distribution and morphology in the habenulointerpeduncular circuit.tiff by Mohammad Jodeiri Farshbaf (20466956)

    Published 2024
    “…BODIPY staining intensity was unchanged in the vMHb of STZ-treated mice but increased in the IPN and VTA and decreased in the LHb at 12 weeks. …”
  19. 106739

    Data_Sheet_1_Vitamin D Induces Differential Effects on Inflammatory Responses During Bacterial and/or Viral Stimulation of Human Peripheral Blood Mononuclear Cells.docx by Jeremy Anderson (8679087)

    Published 2020
    “…Levels of IFN-γ were also decreased whilst IL-10 and IL-1β were increased. Effects of VitD<sub>3</sub> on innate responses following RSV stimulation was limited, only reducing IL-6. …”
  20. 106740

    ATF1 regulates GC-2 cell apoptosis and changes the bcl-2/bax ratio. by Xiaoxuan Liang (172307)

    Published 2013
    “…<p>(A) ATF1 siRNA transfected into GC-2 cells to silence its mRNA expression. …”