By George Witman
Quantity three experiences almost every little thing that's recognized approximately mobile motility and behaviour in Chlamydomonas. global specialists in each one sector specialize in mitosis and cytokinesis; flagellar meeting and motility; intraflagellar shipping; dynein; the constitution and serve as of centrioles/basal our bodies and their linked buildings; ciliary signaling; mating and gamete fusion; photobehaviors; and Chlamydomonas as a version for figuring out human ailments of the cilium. the amount is richly illustrated and is supplemented by means of an internet site containing either vintage and formerly unpublished video clips of phone motility in Chlamydomonas. a distinct and particularly important function is the inclusion of tables directory the recognized proteins (with NCBI accession numbers) for every constitution mentioned, and the recognized mutations that impact every one constitution and approach. simply because Chlamydomonas has been the premiere version for investigating the functionality and behaviour of cilia and flagella, the chapters summarize the present kingdom of information in those components because it applies to all ciliated organisms. therefore, this quantity may be a necessary resource for all scholars and researchers drawn to phone motility. * crucial connection with a version species for the research of mechanisms of motility in unfastened residing cells* contains equipment for Chlamydomonas motility research.* spouse site with video clips illustrates the marvels of the Chlamydomonas flagella in motion
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Additional resources for The Chlamydomonas Sourcebook: Cell Motility and Behavior, Volume 3, Second Edition
5 III. 18 IV. 26 V. 41 Wayne R. Riekhof and Christoph Benning I. 41 II. 44 III. 49 IV. 59 V. 69 Emilio Fernández, Ángel Llamas and Aurora Galván I. 70 II. 70 III. 81 IV. 85 V. 115 Olivier Vallon and Martin H. Spalding I. 116 II. 116 III. 142 IV. 146 V. 159 David Gonzalez-Ballester and Arthur R. Grossman I. 159 II. 160 III. 171 IV. 189 Jeffrey Moseley and Arthur R. Grossman I. 190 II. 192 III. 195 IV. 198 V. 205 VI. 207 VII. 217 Matthew C. Posewitz, Alexandra Dubini, Jonathan E. Meuser, Michael Seibert and Maria L.
309 Contents of Volume 2 edited by David B. 1 Steven G. Ball and Philippe Deschamps I. 2 algae II. 5 III. 18 IV. 26 V. 41 Wayne R. Riekhof and Christoph Benning I. 41 II. 44 III. 49 IV. 59 V. 69 Emilio Fernández, Ángel Llamas and Aurora Galván I. 70 II. 70 III. 81 IV. 85 V. 115 Olivier Vallon and Martin H. Spalding I. 116 II. 116 III. 142 IV. 146 V. 159 David Gonzalez-Ballester and Arthur R. Grossman I. 159 II. 160 III. 171 IV. 189 Jeffrey Moseley and Arthur R. Grossman I. 190 II. 192 III. 195 IV.
1049 VII. 1053 xxxix This page intentionally left blank CHAPTER 1 A Stroll through Time with Chlamydomonas Joel Rosenbaum Department of Molecular, Cellular and Developmental Biology Yale University, New Haven, Connecticut, USA I ﬁrst met Chlamydomonas in 1966 at The University of Chicago. I had been working with the protistan Ochromonas because it was able to take up amino acids and I was interested in doing pulse-labeling studies to determine the ﬂagellar growth zone. We were lucky to be able to show that 65–70% of the tritiated leucine-labeled ﬂagellar proteins added on at the tip of the Ochromonas ﬂagellum.
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