Showing 1,581 - 1,600 results of 93,057 for search '(( a ((we decrease) OR (teer decrease)) ) OR ( i ((largest decrease) OR (larger decrease)) ))', query time: 1.15s Refine Results
  1. 1581
  2. 1582

    Table_1_CRISPR/Cas9-mediated targeted mutation of the E1 decreases photoperiod sensitivity, alters stem growth habits, and decreases branch number in soybean.docx by Zhao Wan (12698318)

    Published 2022
    “…The major maturity gene E1 of soybean plays a critical role in soybean photoperiod response. …”
  3. 1583

    Table_2_CRISPR/Cas9-mediated targeted mutation of the E1 decreases photoperiod sensitivity, alters stem growth habits, and decreases branch number in soybean.xlsx by Zhao Wan (12698318)

    Published 2022
    “…The major maturity gene E1 of soybean plays a critical role in soybean photoperiod response. …”
  4. 1584

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  5. 1585

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  6. 1586

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  7. 1587

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  8. 1588

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  9. 1589

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  10. 1590

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  11. 1591

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  12. 1592

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  13. 1593

    Physical Plasma Membrane Perturbation Using Subcellular Optogenetics Drives Integrin-Activated Cell Migration by Xenia Meshik (6388472)

    Published 2019
    “…Consistent with known effects of constraining high concentrations of proteins to a membrane <i>in vitro</i>, there is localized curvature and tension decrease in the plasma membrane. …”
  14. 1594
  15. 1595
  16. 1596
  17. 1597
  18. 1598
  19. 1599
  20. 1600