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Titlebook: Eukaryotic Membranes and Cytoskeleton; Origins and Evolutio Gáspár Jékely Book 2007 The Editor(s) (if applicable) and The Author(s), under

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Big Data Analytics und Connected Cars,olution of multicellular organisms. We conclude that only the metazoan lineage evolved multicellularity without loosing the ancestral association of three basic cellular functions of the basal body/ axoneme or the derived centrosome organelle, namely sensation, motion and division.
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Online-Kommunikation von Unternehmen,crotubules, 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,
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The Early Eukaryotic Fossil Record,tion when direct evidence for important biological innovations occurs in the fossil record such as multicellularity, sex, photosynthesis, biomineralization, prédation, and heterotrophy. Members of extant clades can be recognized and include bangiophyte red algae, xanthophyte algae, cladophorale gree
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The Diversity Of Eukaryotes And The Root Of The Eukaryotic Tree,imentary mitochondrial organelles in all analysed Archezoa. Today a consensus that divides the extant eukaryotes into six major groups is replacing Woese’s paradigm, which needs, however, further confirmation. Recendy, a molecular dating study based on a large phylogenomic dataset with a relaxed mol
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Origin of Eukaryotic Endomembranes: A Critical Evaluation of Different Model Scenarios, origin of nuclear pore complexes also severely challenge such models. I also criticize a scenario of de novo vesicle formation at the origin of the endomembrane system. I contrast these scenarios to traditional and revised autogenous models according to which eukaryotic endomembranes evolved by the
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Origins and Evolution of Cotranslational Transport to the ER,hreaded. All the essential components of the system have been identified. Recent structural and biochemical studies have unveiled some of the intricate regulatory circuitry of the process. These studies also shed light on the accessory components unique to eukaryotes, pointing to early events in euk
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An Evolutionary Perspective on Eukaryotic Membrane Trafficking,de a perspective that suggests that while the core CPC and SNARE machineries have diversified modestly in the course of eukaryotic evolution, the Rab GTPase family expanded substantially to emerge as a key driving force in endomembrane specialization. The Rab GTPases appear to have provided the foun
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