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Development of the nervous system in hatchlings of Spadella cephaloptera (Chaetognatha), and implications for nervous system evolution in Bilateria
Authors:Rieger Verena  Perez Yvan  Müller Carsten H G  Lacalli Thurston  Hansson Bill S  Harzsch Steffen
Affiliation:1. Zoologisches Institut und Museum, Cytologie und Evolutionsbiologie, Ernst Moritz Arndt Universit?t Greifswald, Soldmannstra?e 23, 17487 Greifswald;2. Department for Evolutionary Neuroethology, Max‐Planck‐Institute for Chemical Ecology, Hans‐Kn?ll‐Str. 8, 07745 Jena, Germany;3. Institut Méditerranéen d’Ecologie et de Paléoécologie UMR CNRS 6116, Université de Provence, 3 Pl Victor Hugo Case 36, 13331 Marseille Cedex 3, France;4. Department of Biology, University of Victoria, Victoria, British Columbia V8W‐3N5, Canada
Abstract:Chaetognaths (arrow worms) play an important role as predators in planktonic food webs. Their phylogenetic position is unresolved, and among the numerous hypotheses, affinities to both protostomes and deuterostomes have been suggested. Many aspects of their life history, including ontogenesis, are poorly understood and, though some aspects of their embryonic and postembryonic development have been described, knowledge of early neural development is still limited. This study sets out to provide new insights into neurogenesis of newly hatched Spadella cephaloptera and their development during the following days, with attention to the two main nervous centers, the brain and the ventral nerve center. These were examined with immunohistological methods and confocal laser-scan microscopic analysis, using antibodies against tubulin, FMRFamide, and synapsin to trace the emergence of neuropils and the establishment of specific peptidergic subsystems. At hatching, the neuronal architecture of the ventral nerve center is already well established, whereas the brain and the associated vestibular ganglia are still rudimentary. The development of the brain proceeds rapidly over the next 6 days to a state that resembles the adult pattern. These data are discussed in relation to the larval life style and behaviors such as feeding. In addition, we compare the larval chaetognath nervous system and that of other bilaterian taxa in order to extract information with phylogenetic value. We conclude that larval neurogenesis in chaetognaths does not suggest an especially close relationship to either deuterostomes or protostomes, but instead displays many apomorphic features.
Keywords:development  evolution  immunohistochemistry  nervous system  neurotransmitter
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