The Evolution of Eukaryotic Cilia and Flagella as Motile and Sensory Organelles
- 31 December 2006
- book chapter
- Published by Springer Nature
- Vol. 607, 130-140
- https://doi.org/10.1007/978-0-387-74021-8_11
Abstract
Eukaryotic cilia and flagella are motile organelles built on a scaffold of doublet microtubules and powered by dynein ATPase motors. Some thirty years ago, two competing views were presented to explain how the complex machinery of these motile organelles had evolved. Overwhelming evidence now refutes the hypothesis that they are the modified remnants of symbiotic spirochaete-like prokaryotes, and supports the hypothesis that they arose from a simpler cytoplasmic microtubule-based intracellular transport system. However, because intermediate stages in flagellar evolution have not been found in living eukaryotes, a clear understanding of their early evolution has been elusive. Recent progress in understanding phylogenetic relationships among present day eukaryotes and in sequence analysis of flagellar proteins have begun to provide a clearer picture of the origins of doublet and triplet microtubules, flagellar dynein motors, and the 9+2 microtubule architecture common to these organelles. We summarize evidence that the last common ancestor of all eukaryotic organisms possessed a 9+2 flagellum that was used for gliding motility along surfaces, beating motility to generate fluid flow, and localized distribution of sensory receptors, and trace possible earlier stages in the evolution of these characteristics.Keywords
This publication has 68 references indexed in Scilit:
- ATP Production inChlamydomonas reinhardtiiFlagella by Glycolytic EnzymesMolecular Biology of the Cell, 2005
- The Genome of the African Trypanosome Trypanosoma bruceiScience, 2005
- Proteomic analysis of a eukaryotic ciliumThe Journal of cell biology, 2005
- Bend propagation drives central pair rotation in Chlamydomonas reinhardtii flagellaThe Journal of cell biology, 2004
- Evolutionary history and higher order classification of AAA+ ATPasesJournal of Structural Biology, 2003
- The radial spokes and central apparatus: Mechano‐chemical transducers that regulate flagellar motilityCell Motility, 2003
- Reconstruction of the projection periodicity and surface architecture of the flagellar central pair complexCell Motility, 2003
- Intraflagellar transportCurrent Biology, 2002
- Ciliary reversal without rotation of axonemal structures in ctenophore comb plates.The Journal of cell biology, 1981
- Rotation and twist of the central-pair microtubules in the cilia of Paramecium.The Journal of cell biology, 1980