Zebrafish organizer development and germ-layer formation require nodal-related signals

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Zebrafish organizer development and germ-layer formation require nodal-related signals Feldman et al. Nature 1998 Presented by Maggie Bach and Aparna Vidyasagar

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Zebrafish organizer development and germ-layer formation require nodal-related signals Feldman et al. Nature 1998 Presented by Maggie Bach and Aparna Vidyasagar. Outline. Introduction and Background Questions What are the mutant phenotypes? Are the sqt and znr-2 genes one and the same? - PowerPoint PPT Presentation

Transcript of Zebrafish organizer development and germ-layer formation require nodal-related signals

Page 1: Zebrafish organizer development and germ-layer formation require nodal-related signals

Zebrafish organizer development and germ-layer formation require

nodal-related signalsFeldman et al.

Nature 1998

Presented by Maggie Bach and Aparna Vidyasagar

Page 2: Zebrafish organizer development and germ-layer formation require nodal-related signals

Outline

• Introduction and Background

• Questions– What are the mutant phenotypes?– Are the sqt and znr-2 genes one and the

same?– Can sqt induce dorsal mesoderm formation?

• Conclusion

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Big Idea

• Characterize the Squint gene and its role in development

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Definitions

• Blastula - a liquid-filled sphere whose wall is composed of a single layer of cells

• Gastrula - double-walled stage of the embryo resulting from invagination of the blastula; outer layer of cells is the ectoderm and the inner layer differentiates into the mesoderm and endoderm

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Definitions

• Mesoderm – forms bones, muscles, organs

• Endoderm – digestive and respiratory tract

• Ectoderm – epidermis, nervous system

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Fish Embryo before Gastrulation

Scier and Shen, Nature 2000

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Organizer

• Region of dorsal mesoderm

• Induced by other signals

• Expresses nodal-related signals

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Nodal Signals

• Expressed in dorsal region that includes YSL

• Source of mesoderm-inducing factors

• TGF-β related signals

• Related to Activin and Vg1

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gsc

• Goosecoid

• Dorsal mesodermal marker

• Expressed in organizer

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Question 1:

What are the different mutant phenotypes?

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sqt–

• One eye

• Expression of gsc reduced at blastula stages, but gsc expression increases as gastrulation progresses

• Defects in prechordal plate and ventral nervous system

• No Zebrafish organizer region

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cyc–

• One eye

• Not examined specifically; thought to have the same phenotype as sqt–

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sqt– cyc–

• No mesoderm development

• Muscle differentiation can occur in tail

• Lack of gsc expression

• No Zebrafish organizer region

• Morphogenesis of mesoderm and endoderm is abnormal

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Feldman et al. Nature 1998

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Question 2:

Are the sqt and znr-2 genes one and the same?

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Step 1: Genetic mapping

• sqtcz35 mutation maps to linkage group 21 near the zebrafish nodal related-2 (znr 2) gene.

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Step 2: DNA libraries

• DNA probe derived from a partial znr-2 sequence identified a full length znr-2 cDNA clone in a library of blastula and gastrula stages.

• Clone had an ORF of 1,176 bp.• Conceptual Translation revealed a 392

amino acid long protein similar to proteins belonging to the TGF-ß subfamily.

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Step 3: Molecular lesions in sqtcz35

• Molecular lesions showed: A 1.9 kb insertion after codon 30 in the ORF.

• Assaying sqt crosses with this insertion showed that znr-2 was closely linked to sqt.

• 0 recombinants among 111 meioses.

Thus znr-2 is tightly linked to sqt.

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Step 4: Evidence from the goosecoid gene

• sqt/cyc double mutants lack the dorsal mesodermal marker goosecoid (gsc).

• Microinjection of synthetic znr-2 RNA into sqt mutants leads to the restoration of gsc expression.

Thus znr-2 is the sqt gene..

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Question 3:

Does sqt induce dorsal mesoderm formation

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Step 1: gsc expression

• Embryos injected with sqt RNA.

8-32 cell stage of the blastula

Expanded or ectopic gsc expression

1000 cell stage into YSL

Expanded or ectopic gsc expression

Thus extraembryonic expression of sqt can induce dorsal mesoderm formation.

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Conclusions

• Zebrafish nodal related signals are essential in mesoderm and endoderm development.

• Nodal related signals also necessary for induction of dorsal mesoderm and organizer formation.