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 in | Developmental biology Vol. 164; no. 2; pp. 420 - 429 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Amsterdam
Elsevier Inc
01.08.1994
Elsevier |
Subjects | |
Online Access | Get full text |
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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. |
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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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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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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 |
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