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First published online February 2, 2004
doi: 10.1242/10.1242/dev.00981


Development 131, 891-902 (2004)
Published by The Company of Biologists 2004


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Paraxial mesoderm specifies zebrafish primary motoneuron subtype identity

Katharine E. Lewis* and Judith S. Eisen{dagger}

Institute of Neuroscience, 1254 University of Oregon, Eugene, OR 97403, USA

{dagger} Author for correspondence (e-mail: eisen{at}uoneuro.uoregon.edu)

Accepted 12 November 2003

We provide the first analysis of how a segmentally reiterated pattern of neurons is specified along the anteroposterior axis of the vertebrate spinal cord by investigating how zebrafish primary motoneurons are patterned. Two identified primary motoneuron subtypes, MiP and CaP, occupy distinct locations within the ventral neural tube relative to overlying somites, express different genes and innervate different muscle territories. In all vertebrates examined so far, paraxial mesoderm-derived signals specify distinct motoneuron subpopulations in specific anteroposterior regions of the spinal cord. We show that signals from paraxial mesoderm also control the much finer-grained segmental patterning of zebrafish primary motoneurons. We examined primary motoneuron specification in several zebrafish mutants that have distinct effects on paraxial mesoderm development. Our findings suggest that in the absence of signals from paraxial mesoderm, primary motoneurons have a hybrid identity with respect to gene expression, and that under these conditions the CaP axon trajectory may be dominant.

Key words: Somites, Motoneurons, MiP, CaP, Zebrafish, Spinal cord, Trilobite, Knypek, No tail, Spadetail, Fused somites, You-too, After eight, b380, b567


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© The Company of Biologists Ltd 2004