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Regulation of development in meristems/stem cells; Root gravitropism; redox regulation of plant development.
Our lab's interests are in the area of plant development, with an emphasis on meristems, particularly those of roots. We are investigating how the various populations of cells which comprise or surround the meristem interact to control root development, especially patterning. Much of our recent effort has focused on two populations of cells: the root cap, and a region of mitotically inactive cells known as the quiescent center. We have shown that quiescent center formation precedes the organization of a root meristem and have hypothesized that a quiescent center is necessary for meristem organization. Based on characteristics of cells comprising the quiescent center we believe that these cells are true “stem cells” in the animal sense. Much of our current work is directed at understanding the underlying molecular and physiological controls of this “stemness”.
Regulation of development in meristems/stem cells; Root gravitropism; redox regulation of plant development.
Our lab's interests are in the area of plant development, with an emphasis on meristems, particularly those of roots. We are investigating how the various populations of cells which comprise or surround the meristem interact to control root development, especially patterning. Much of our recent effort has focused on two populations of cells: the root cap, and a region of mitotically inactive cells known as the quiescent center. We have shown that quiescent center formation precedes the organization of a root meristem and have hypothesized that a quiescent center is necessary for meristem organization. Based on characteristics of cells comprising the quiescent center we believe that these cells are true “stem cells” in the animal sense. Much of our current work is directed at understanding the underlying molecular and physiological controls of this “stemness”.
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mag(2012)
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BIOINFORMATICSno. 6 (2012): 815-822
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