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M Bate

Publications and source records attributed to M Bate.

57 records · Page 4Linked to original sources

Embryonic development of identified neurons: origin and transformation of the H cell.

We describe the origin and the transformation of a single neuron, the H cell, which assumes two different roles during grasshopper embryogenesis. The H cell originates from the single cell division of midline precursor 3 (MP3). In the metathoracic (T3) segment, the H cell first appears as one of a pair of central pioneer fibers and later transforms into an unpaired identified neuron. During the course of its transformation, the H cell loses its original morphology and acquires new morphological and physiological properties. The H cell acquires many of the same phenotypes as the first progeny of the median neuroblast (MNB); the processes of the first MNB progeny contact the soma of the H cell and these cells are electrically coupled prior to the H cell transformation.

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From grasshopper to Drosophila: a common plan for neuronal development.

Little is known about the mechanisms that generate neuronal specificity during development. Whereas the grasshopper embryo has been an ideal system for a cellular analysis of neuronal development, the Drosophila embryo has obvious attributes for a molecular genetic analysis. Here we show that the early Drosophila embryo is a miniature replica of the grasshopper embryo in terms of its identified neurones, their growth cones and their selective fasciculation choices, thus opening the way for a combined cellular and molecular genetic analysis of cell recognition during neuronal development in Drosophila.

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dpp induces mesodermal gene expression in Drosophila.

Inductive interactions between germ layers are an essential feature of the development of many organisms. In several species these interactions are mediated by members of the transforming growth factor-beta (TGF beta) family. In amphibians, different concentrations of activin can induce different types of mesoderm in the animal cap assay. In Drosophila, a member of the TGF beta family, decapentaplegic (dpp), acts as an inductive signal. Midway through embryogenesis, dpp is expressed in the visceral mesoderm, and enhances the expression of the homeotic gene labial in the underlying midgut endoderm. Earlier in development, however, dpp expression is limited to the dorsal ectoderm. At this stage in development, thickveins, a dpp receptor, is expressed in the mesoderm, and this suggests that ectodermal dpp might not only be required for development of dorsal ectoderm, but could also act inductively to mediate pattern formation in the underlying mesoderm. Here we show, by expressing dpp ectopically in the ectoderm and mesoderm and by examining dpp null mutant embryos, that dpp regulates expression of mesodermal genes.

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