Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.

Homeobox genes encode a large superclass of transcription factors with widespread roles in animal development. Within chordates there are over 100 homeobox genes in the invertebrate cephalochordate amphioxus and over 200 in humans. Set against this general trend of increasing gene number in vertebra...

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Main Authors: Butts, T, Holland, P, Ferrier, D
Format: Journal article
Language:English
Published: 2010
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author Butts, T
Holland, P
Ferrier, D
author_facet Butts, T
Holland, P
Ferrier, D
author_sort Butts, T
collection OXFORD
description Homeobox genes encode a large superclass of transcription factors with widespread roles in animal development. Within chordates there are over 100 homeobox genes in the invertebrate cephalochordate amphioxus and over 200 in humans. Set against this general trend of increasing gene number in vertebrate evolution, some ancient homeobox genes that were present in the last common ancestor of chordates have been lost from vertebrates. Here, we describe the embryonic expression of four amphioxus descendants of these genes--AmphiNedxa, AmphiNedxb, AmphiMsxlx and AmphiNKx7. All four genes are expressed with a striking asymmetry about the left-right axis in the pharyngeal region of neurula embryos, mirroring the pronounced asymmetry of amphioxus embryogenesis. AmphiMsxlx and AmphiNKx7 are also transiently expressed in an anterior neural tube region destined to become the cerebral vesicle. These findings suggest significant rewiring of developmental gene regulatory networks occurred during chordate evolution, coincident with homeobox gene loss. We propose that loss of otherwise widely conserved genes is possible when these genes function in a confined role in development that is subsequently lost or significantly modified during evolution. In the case of these homeobox genes, we propose that this has occurred in relation to the evolution of the chordate pharynx and brain.
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spelling oxford-uuid:645c0877-8d49-4e74-b3bf-c0345b9447692022-03-26T18:18:24ZAncient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:645c0877-8d49-4e74-b3bf-c0345b944769EnglishSymplectic Elements at Oxford2010Butts, THolland, PFerrier, DHomeobox genes encode a large superclass of transcription factors with widespread roles in animal development. Within chordates there are over 100 homeobox genes in the invertebrate cephalochordate amphioxus and over 200 in humans. Set against this general trend of increasing gene number in vertebrate evolution, some ancient homeobox genes that were present in the last common ancestor of chordates have been lost from vertebrates. Here, we describe the embryonic expression of four amphioxus descendants of these genes--AmphiNedxa, AmphiNedxb, AmphiMsxlx and AmphiNKx7. All four genes are expressed with a striking asymmetry about the left-right axis in the pharyngeal region of neurula embryos, mirroring the pronounced asymmetry of amphioxus embryogenesis. AmphiMsxlx and AmphiNKx7 are also transiently expressed in an anterior neural tube region destined to become the cerebral vesicle. These findings suggest significant rewiring of developmental gene regulatory networks occurred during chordate evolution, coincident with homeobox gene loss. We propose that loss of otherwise widely conserved genes is possible when these genes function in a confined role in development that is subsequently lost or significantly modified during evolution. In the case of these homeobox genes, we propose that this has occurred in relation to the evolution of the chordate pharynx and brain.
spellingShingle Butts, T
Holland, P
Ferrier, D
Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.
title Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.
title_full Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.
title_fullStr Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.
title_full_unstemmed Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.
title_short Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.
title_sort ancient homeobox gene loss and the evolution of chordate brain and pharynx development deductions from amphioxus gene expression
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AT hollandp ancienthomeoboxgenelossandtheevolutionofchordatebrainandpharynxdevelopmentdeductionsfromamphioxusgeneexpression
AT ferrierd ancienthomeoboxgenelossandtheevolutionofchordatebrainandpharynxdevelopmentdeductionsfromamphioxusgeneexpression