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Titlebook: Actin: A Dynamic Framework for Multiple Plant Cell Functions; C. J. Staiger,F. Baluška,P. W. Barlow Book 2000 Springer Science+Business Me

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Lucio Tommaso De Paolis,Patrick Bourdotrties seem largely to depend on actin and myosin. Actin filaments (AFs) provide a framework for the spacing of the cortical, lace-like ER elements and of the ER strands. Moreover, AFs are held responsible for the extension of ER tubules and lamellae as well as for their motility. Synchronized moveme
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Lucio Tommaso De Paolis,Patrick Bourdoton, fluence rate and wavelength. Rapid improvements in cell biological techniques, which enable visualization of cytoskeletal organization in plant cells, has made it increasingly evident that actin microfilaments play a critical role in regulating the intracellular movements and anchoring of chloro
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Lucio Tommaso De Paolis,Antonio Mongellisms of oriented tip growth. Cell extension, sensing of and the response to external stimuli are all confined to a small region at the tip, the apical dome. Rhizoids and protonemata of the characean green algae are almost identical in form and both use unique BaSO.-crystal-filled statoliths for their
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Simulation of Tsunami Impact upon Coastlineming makes these cells ideal for studying the properties of actin bundle assembly. A fine network of peripheral actin is also described and its role in vesicle secretion discussed. Wounding studies and treatments with actin agonists have been useful for elucidating further properties of both the rob
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https://doi.org/10.1007/978-3-319-95282-6at directly regulates the activity of actin-binding proteins. Different RHO members function to control distinct forms of F-actin. Plants possess a unique subfamily of RHO GTPase termed Rop. Emerging evidence suggests that Rop also regulates actin organization and thus plays a crucial role in the co
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