Search Results - "Bascom, Carlisle S."

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    Plant PIEZO homologs modulate vacuole morphology during tip growth by Radin, Ivan, Richardson, Ryan A., Coomey, Joshua H., Weiner, Ethan R., Bascom, Carlisle S., Li, Ting, Bezanilla, Magdalena, Haswell, Elizabeth S.

    “…Plant cell growth regulation Piezo sensors in animal cells are localized in the cell membrane and transduce mechanical signals. The cell membrane of plant…”
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    Journal Article
  3. 3

    Long-Term Growth of Moss in Microfluidic Devices Enables Subcellular Studies in Development by Bascom, Carlisle S., Wu, Shu-Zon, Nelson, Katherine, Oakey, John, Bezanilla, Magdalena

    Published in Plant physiology (Bethesda) (01-09-2016)
    “…Key developmental processes that occur on the subcellular and cellular level or occur in occluded tissues are difficult to access, let alone image and analyze…”
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    Simultaneous imaging and functional studies reveal a tight correlation between calcium and actin networks by Bascom, Carlisle S., Winship, Lawrence J., Bezanilla, Magdalena

    “…Tip-growing cells elongate in a highly polarized manner via focused secretion of flexible cell-wall material. Calcium has been implicated as a vital factor in…”
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    Journal Article
  5. 5

    Heterologous expression of a lycophyte protein enhances angiosperm seedling vigor by Koh, Samuel W H, Diaz-Ardila, Harold Nicholay, Bascom, Carlisle S, Berenguer, Eduardo, Ingram, Gwyneth, Estelle, Mark, Hardtke, Christian S

    Published in Development (Cambridge) (01-11-2022)
    “…Seedling vigor is a key agronomic trait that determines juvenile plant performance. Angiosperm seeds develop inside fruits and are connected to the mother…”
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  6. 6

    Interplay between Ions, the Cytoskeleton, and Cell Wall Properties during Tip Growth1[OPEN] by Bascom, Carlisle S., Hepler, Peter K., Bezanilla, Magdalena

    Published in Plant physiology (Bethesda) (14-11-2017)
    “…Tip growth is a focused and tightly regulated apical explosion that depends on the interconnected activities of ions, the cytoskeleton, and the cell wall…”
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    Journal Article
  7. 7

    Long-Term Growth of Moss in Microfluidic Devices Enables Subcellular Studies in Development1[OPEN] by Bascom, Carlisle S., Wu, Shu-Zon, Nelson, Katherine, Oakey, John, Bezanilla, Magdalena

    Published in Plant physiology (Bethesda) (29-08-2016)
    “…Microfluidic chambers enable imaging of moss development from early to late developmental stages at cellular and subcellular resolution. Key developmental…”
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    Journal Article