goosecoid Expression in neurectoderm and mesendoderm is disrupted in zebrafish cyclops gastrulas

RNA from goosecoid, a homeobox-containing gene expressed during gastrulation in the anterior mesoderm of vertebrate embryos, can generate organizer activity when injected into ventral mesoderm, resulting in a secondary body axis; it is not yet understood, however, how goosecoid performs its organize...

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Published inDevelopmental biology Vol. 164; no. 2; pp. 420 - 429
Main Authors Thisse, Christine, Thisse, Bernard, Halpern, Marnie E., Postlethwait, John H.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier Inc 01.08.1994
Elsevier
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Abstract RNA from goosecoid, a homeobox-containing gene expressed during gastrulation in the anterior mesoderm of vertebrate embryos, can generate organizer activity when injected into ventral mesoderm, resulting in a secondary body axis; it is not yet understood, however, how goosecoid performs its organizer function. We report here that in the zebrafish gastrula, a domain of goosecoid expression arises in presumptive anterior neurectoderm which lies directly above goosecoid-expressing mesendodermal cells. From this position, goosecoid expression then spreads gradually across the ectodermal layer. In cyclops mutant embryos, which lack a ventral anterior brain, expression of goosecoid is abnormal in the mesendoderm and completely absent in the overlying neurectoderm. These results indicate that cyclops is required for correct specification of the mesendoderm and suggest that goosecoid expression in the ectoderm may result from vertical induction from the mesoderm. We propose that in the gastrula head, goosecoid may be important in organizing the ventral neurectoderm.
AbstractList RNA from goosecoid, a homeobox-containing gene expressed during gastrulation in the anterior mesoderm of vertebrate embryos, can generate organizer activity when injected into ventral mesoderm, resulting in a secondary body axis; it is not yet understood, however, how goosecoid performs its organizer function. We report here that in the zebrafish gastrula, a domain of goosecoid expression arises in presumptive anterior neurectoderm which lies directly above goosecoid-expressing mesendodermal cells. From this position, goosecoid expression then spreads gradually across the ectodermal layer. In cyclops mutant embryos, which lack a ventral anterior brain, expression of goosecoid is abnormal in the mesendoderm and completely absent in the overlying neurectoderm. These results indicate that cyclops is required for correct specification of the mesendoderm and suggest that goosecoid expression in the ectoderm may result from vertical induction from the mesoderm. We propose that in the gastrula head, goosecoid may be important in organizing the ventral neurectoderm.
RNA from goosecoid, a homeobox-containing gene expressed during gastrulation in the anterior mesoderm of vertebrate embryos, can generate organizer activity when injected into ventral mesoderm, resulting in a secondary body axis; it is not yet understood, however, how goosecoid performs its organizer function. We report here that in the zebrafish gastrula, a domain of goosecoid expression arises in presumptive anterior neurectoderm which lies directly above goosecoid-expressing mesendodermal cells. From this position, goosecoid expression then spreads gradually across the ectodermal layer. In cyclops mutant embryos, which lack a ventral anterior brain, expression of goosecoid is abnormal in the mesendoderm and completely absent in the overlying neurectoderm. These results indicate that cyclops is required for correct specification of the mesendoderm and suggest that goosecoid expression in the ectoderm may result from vertical induction from the mesoderm. We propose that in the gastrula head, goosecoid may be important in organizing the ventral neurectoderm.
Author Thisse, Christine
Thisse, Bernard
Halpern, Marnie E.
Postlethwait, John H.
Author_xml – sequence: 1
  givenname: Christine
  surname: Thisse
  fullname: Thisse, Christine
  organization: Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA
– sequence: 2
  givenname: Bernard
  surname: Thisse
  fullname: Thisse, Bernard
  organization: Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA
– sequence: 3
  givenname: Marnie E.
  surname: Halpern
  fullname: Halpern, Marnie E.
  organization: Institute of Neuroscience, University of Oregon, Eugene, Oregon 97403, USA
– sequence: 4
  givenname: John H.
  surname: Postlethwait
  fullname: Postlethwait, John H.
  organization: Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403, USA
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Issue 2
Keywords Embryonic development
Ectoderm
Gastrulation
Organizing center
Mesoderm
Early stage
Gene expression
Freshwater environment
Vertebrata
Brachydanio rerio
Pisces
Embryonic induction
Homeobox sequence
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PublicationPlace_xml – name: Amsterdam
– name: United States
PublicationTitle Developmental biology
PublicationTitleAlternate Dev Biol
PublicationYear 1994
Publisher Elsevier Inc
Elsevier
Publisher_xml – name: Elsevier Inc
– name: Elsevier
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  article-title: The homeobox gene goosecoid controls cell migration in Xenopus embryos
  publication-title: Cell
  doi: 10.1016/0092-8674(93)90069-3
  contributor:
    fullname: Niehrs
– volume: 75
  start-page: 99
  year: 1993
  ident: 10.1006/dbio.1994.1212_bib7
  article-title: Induction of muscle pioneers and floor plate is distinguished by the zebrafish no tail mutation
  publication-title: Cell
  doi: 10.1016/S0092-8674(05)80087-X
  contributor:
    fullname: Halpern
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Snippet RNA from goosecoid, a homeobox-containing gene expressed during gastrulation in the anterior mesoderm of vertebrate embryos, can generate organizer activity...
RNA from goosecoid, a homeobox-containing gene expressed during gastrulation in the anterior mesoderm of vertebrate embryos, can generate organizer activity...
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SubjectTerms Animals
Biological and medical sciences
Cloning, Molecular
cyclops
DNA-Binding Proteins - biosynthesis
DNA-Binding Proteins - genetics
Early stages. Segmentation. Gastrulation. Neurulation
Ectoderm - metabolism
Embryology: invertebrates and vertebrates. Teratology
Freshwater
Fundamental and applied biological sciences. Psychology
Gastrula - metabolism
Goosecoid Protein
Homeodomain Proteins
In Situ Hybridization
Mesoderm - metabolism
Mutation
Neurons
Repressor Proteins
Transcription Factors
Zebrafish - embryology
Zebrafish Proteins
Title goosecoid Expression in neurectoderm and mesendoderm is disrupted in zebrafish cyclops gastrulas
URI https://dx.doi.org/10.1006/dbio.1994.1212
https://www.ncbi.nlm.nih.gov/pubmed/8045345
https://search.proquest.com/docview/16662239
https://search.proquest.com/docview/76628760
Volume 164
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