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Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila

The accurate wiring of nervous systems involves precise control over cellular processes like cell division, cell fate specification, and targeting of neurons. The nervous system of Drosophila melanogaster is an excellent model to understand these processes. Drosophila neurons are generated by stem c...

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Autores principales: Sen, Sonia, Biagini, Silvia, Reichert, Heinrich, VijayRaghavan, K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4133724/
https://www.ncbi.nlm.nih.gov/pubmed/24996925
http://dx.doi.org/10.1242/bio.20148524
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author Sen, Sonia
Biagini, Silvia
Reichert, Heinrich
VijayRaghavan, K.
author_facet Sen, Sonia
Biagini, Silvia
Reichert, Heinrich
VijayRaghavan, K.
author_sort Sen, Sonia
collection PubMed
description The accurate wiring of nervous systems involves precise control over cellular processes like cell division, cell fate specification, and targeting of neurons. The nervous system of Drosophila melanogaster is an excellent model to understand these processes. Drosophila neurons are generated by stem cell like precursors called neuroblasts that are formed and specified in a highly stereotypical manner along the neuroectoderm. This stereotypy has been attributed, in part, to the expression and function of transcription factors that act as intrinsic cell fate determinants in the neuroblasts and their progeny during embryogenesis. Here we focus on the lateral neuroblast lineage, ALl1, of the antennal lobe and show that the transcription factor-encoding cephalic gap gene orthodenticle is required in this lineage during postembryonic brain development. We use immunolabelling to demonstrate that Otd is expressed in the neuroblast of this lineage during postembryonic larval stages. Subsequently, we use MARCM clonal mutational methods to show that the majority of the postembryonic neuronal progeny in the ALl1 lineage undergoes apoptosis in the absence of orthodenticle. Moreover, we demonstrate that the neurons that survive in the orthodenticle loss-of-function condition display severe targeting defects in both the proximal (dendritic) and distal (axonal) neurites. These findings indicate that the cephalic gap gene orthodenticle acts as an important intrinsic determinant in the ALl1 neuroblast lineage and, hence, could be a member of a putative combinatorial code involved in specifying the fate and identity of cells in this lineage.
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spelling pubmed-41337242014-09-04 Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila Sen, Sonia Biagini, Silvia Reichert, Heinrich VijayRaghavan, K. Biol Open Research Article The accurate wiring of nervous systems involves precise control over cellular processes like cell division, cell fate specification, and targeting of neurons. The nervous system of Drosophila melanogaster is an excellent model to understand these processes. Drosophila neurons are generated by stem cell like precursors called neuroblasts that are formed and specified in a highly stereotypical manner along the neuroectoderm. This stereotypy has been attributed, in part, to the expression and function of transcription factors that act as intrinsic cell fate determinants in the neuroblasts and their progeny during embryogenesis. Here we focus on the lateral neuroblast lineage, ALl1, of the antennal lobe and show that the transcription factor-encoding cephalic gap gene orthodenticle is required in this lineage during postembryonic brain development. We use immunolabelling to demonstrate that Otd is expressed in the neuroblast of this lineage during postembryonic larval stages. Subsequently, we use MARCM clonal mutational methods to show that the majority of the postembryonic neuronal progeny in the ALl1 lineage undergoes apoptosis in the absence of orthodenticle. Moreover, we demonstrate that the neurons that survive in the orthodenticle loss-of-function condition display severe targeting defects in both the proximal (dendritic) and distal (axonal) neurites. These findings indicate that the cephalic gap gene orthodenticle acts as an important intrinsic determinant in the ALl1 neuroblast lineage and, hence, could be a member of a putative combinatorial code involved in specifying the fate and identity of cells in this lineage. The Company of Biologists 2014-07-04 /pmc/articles/PMC4133724/ /pubmed/24996925 http://dx.doi.org/10.1242/bio.20148524 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Sen, Sonia
Biagini, Silvia
Reichert, Heinrich
VijayRaghavan, K.
Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila
title Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila
title_full Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila
title_fullStr Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila
title_full_unstemmed Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila
title_short Orthodenticle is required for the development of olfactory projection neurons and local interneurons in Drosophila
title_sort orthodenticle is required for the development of olfactory projection neurons and local interneurons in drosophila
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4133724/
https://www.ncbi.nlm.nih.gov/pubmed/24996925
http://dx.doi.org/10.1242/bio.20148524
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