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Molecular Genetics of Axial Patterning, Growth and Disease in Drosophila Eye / edited by Amit Singh, Madhuri Kango-Singh

Contributor(s): Singh, Amit, editor literario | Kango-Singh, Madhuri, editor literario | SpringerLink (Online service)
Material type: materialTypeLabelE-bookSeries: (Biomedical and Life Sciences (Springer-11642)).Publisher: Cham, Switzerland : Springer International Publishing, 2020Edition: Second edition.Description: 1 recurso en línea (XIV, 368 páginas) : 81 ilustraciones, 73 ilustraciones a color.ISBN: 9783030422462.Subject: Drosofílidos | Genética humanaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Early eye development: Specification and Determination -- Generation of third dimension: Axial patterning in the developing Drosophila eye -- Catching the Next Wave: Patterning of the Drosophila eye by the Morphogenetic Furrow -- Ghost in the Machine- the Peripodail Epithelium -- Cell Polarity in Drosophila Retina -- Negative regulation for neural patterning in the Drosophila eye -- Adhesion and the cytoskeleton in the Drosophila pupaleye -- Drosophila eye as a model to study regulation of growth control: The discovery of size control pathways -- Drosophila cancer modeling using the eye imaginal discs -- Recent contributions of the Drosophila eye to unraveling the basis of neurodegeneration -- Genetic regulation of early eye development in non-dipteran insects -- Eyes for an eye: A comparative account on compound eye of Drosophila melanogaster with vertebrate eye -- Index.
Abstract: Drosophila melanogaster (fruit fly) is a highly versatile model with a genetic legacy of more than a century. It provides powerful genetic, cellular, biochemical and molecular biology tools to address many questions extending from basic biology to human diseases. One of the most important questions in biology is how a multi-cellular organism develops from a single-celled embryo. The discovery of the genes responsible for pattern formation has helped refine this question and has led to other questions, such as the role of various genetic and cell biological pathways in regulating the process of pattern formation and growth during organogenesis. The Drosophila eye model has been extensively used to study molecular genetic mechanisms involved in patterning and growth. Since the genetic machinery involved in the Drosophila eye is similar to humans, it has been used to model human diseases and homology to eyes in other taxa. This updated second edition covers current progress in the study of molecular genetic mechanisms of pattern formation, mutations in axial patterning, genetic regulation of growth, and more using the Drosophila eye as a model.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería QL537.D76 2020 EB (Browse shelf(Opens below)) Acceso electrónico eBook.25062095
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Early eye development: Specification and Determination -- Generation of third dimension: Axial patterning in the developing Drosophila eye -- Catching the Next Wave: Patterning of the Drosophila eye by the Morphogenetic Furrow -- Ghost in the Machine- the Peripodail Epithelium -- Cell Polarity in Drosophila Retina -- Negative regulation for neural patterning in the Drosophila eye -- Adhesion and the cytoskeleton in the Drosophila pupaleye -- Drosophila eye as a model to study regulation of growth control: The discovery of size control pathways -- Drosophila cancer modeling using the eye imaginal discs -- Recent contributions of the Drosophila eye to unraveling the basis of neurodegeneration -- Genetic regulation of early eye development in non-dipteran insects -- Eyes for an eye: A comparative account on compound eye of Drosophila melanogaster with vertebrate eye -- Index.

Drosophila melanogaster (fruit fly) is a highly versatile model with a genetic legacy of more than a century. It provides powerful genetic, cellular, biochemical and molecular biology tools to address many questions extending from basic biology to human diseases. One of the most important questions in biology is how a multi-cellular organism develops from a single-celled embryo. The discovery of the genes responsible for pattern formation has helped refine this question and has led to other questions, such as the role of various genetic and cell biological pathways in regulating the process of pattern formation and growth during organogenesis. The Drosophila eye model has been extensively used to study molecular genetic mechanisms involved in patterning and growth. Since the genetic machinery involved in the Drosophila eye is similar to humans, it has been used to model human diseases and homology to eyes in other taxa. This updated second edition covers current progress in the study of molecular genetic mechanisms of pattern formation, mutations in axial patterning, genetic regulation of growth, and more using the Drosophila eye as a model.

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