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Drosophila – 2 lectures (½ – 1- ½ ) • Cleavage • View -gastrulation, organogen. frame metamorph. • Once we know the embryo, meet the molecules • Because this is a largely ‘solved’ system • Because these genes have key roles in all metazoans • EVERY one of 5000 cleavage state cell has a D/V and A/P ‘molecular address’, and is therefore specified .

Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

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Page 1: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Drosophila – 2 lectures (½ – 1- ½ )

• Cleavage

• View -gastrulation, organogen. frame metamorph.

• Once we know the embryo, meet the molecules• Because this is a largely ‘solved’ system

• Because these genes have key roles in all metazoans

• EVERY one of 5000 cleavage state cell has a D/V and A/P ‘molecular address’, and is therefore specified.

Page 2: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Both axes definedin Drosophila

First to Anterior-Posterior Axis (A-P)

Page 3: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is
Page 4: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is
Page 5: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is
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Bicoid mRNA 1. Bicoid RNA ‘caught’ at the ‘entrance’

2. Unanchored Bicoid RNA returned to the anterior side by dynein on MTs

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Show:Bcd-gastrulation

Gastrulation-dorsal

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In syncitium

For control of Hunchback protein – Bicoid is a transcription factor, but Nanos . . .

Page 16: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Nanos is an RNA binding protein that PREVENTS Hunchback Translation

Page 17: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Gap genes are turned on in broad stripes by maternal genes, each other. ALL TFs.

Hunchback

Gt

Kr

kn

hb (later)

Page 18: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Gt

Kr

kn

hb (later)

Page 19: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Gap genes are turned on in broad stripes by maternal genes, each other

Pair rule genes are turned on in 7 stripes each, harder to conceptualize

Page 20: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Each stripe of theP-R gene has its Own enhancer.

Even-skippedgene – 7 stripes.

Page 21: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Each stripe has its own enhancer, responding to a different combinatorial of Gap and Maternal proteins

Page 22: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is
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Gap genes are turned on in broad stripes by maternal genes, each other

Pair rule genes are all Trascription Factors too – turn on Segment Polarity gene expression

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hh hh hh hh Two morphogens/ligands/organizers in adjacent cells

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No

Active

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The embryoNow has twoAdjacent organizersWhich release a

Morphogen

From syncitium withGradient of 1 (or 2)Morphogens, to seriesOf segments, each

With 2 morphogens

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Both axes definedin Drosophila,

every cell of 5000.Now to D/V

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Figure 23.14 Homologous Pathways Specifying Neural Ectoderm in Protostomes (Drosophila) and Deuterostomes (Xenopus) D/V

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Gastrulation - Drosophila

http://www.flybase.org/data/images/Animation/

AND Course Site (Movies)

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I. RTK pathway Sets follicle cell D/V state

II. Proteolytic cascade Sets embryos’ cell D/V state

III. Toll/Cactus/Doral Sets nuclear D/V state

IV. Dorsal TF thresholds Diff. pathway per D/V address

4 STAGES OF ESTABLISHING DORSAL/VENTRAL – 4 SEQUENTIAL PATHWAYS +

STAGE PATHWAY PATHWAY OUTCOME

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I. RTK pathway Sets follicle cell D/V state

II. Proteolytic cascade Sets embryos’ cell D/V state

III. Toll/Cactus/Doral Sets nuclear D/V state

IV. Dorsal TF thresholds Diff. pathway per D/V address

4 STAGES OF ESTABLISHING DORSAL/VENTRAL – 4 SEQUENTIAL PATHWAYS +

STAGE PATHWAY PATHWAY OUTCOME

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Dorsal fate determined in oocyte, through signaling between oocyte and somatic follicle cells

Page 47: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Gurken protein on future dorsal side of oocyte, facing cells which become dorsal

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Human blood clotting cascade– Also a series of

(extracellular )proteolytic cleavages

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Dorsalized Ventralized

Ventral fates dictated by NUCLEAR presence of the protein Dorsal

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Gradient of Nuclear Dorsal protein imparts D-V IDs to cells

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Twist Protein specifies mesoderm

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Lateral inhibition in neurectoderm to specify neruogenesis: Notch mediated

All Rhomboid expressing cells express Notch, then undergo a stochastic process for ¼ cells to become neuronal

Page 56: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Lateral inhibition in neurectoderm to specify neruogenesis: Notch mediated

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Key factor for Dorsal identities inDrosophila

Key factor for D-V identities inVertebrates

TGF-Beta family

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Figure 23.14 Homologous Pathways Specifying Neural Ectoderm in Protostomes (Drosophila) and Deuterostomes (Xenopus) D/V

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All animals have related developmental histories

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out inevert

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Figure 6.16 Scanning Electron Micrograph of a Compound Eye in Drosophila

Eye disc patterning controlled by ‘reuse’ of the pathways seen in general axis specification

Page 74: Drosophila – 2 lectures (½ – 1- ½ ) Cleavage View -gastrulation, organogen. frame metamorph. Once we know the embryo, meet the molecules Because this is

Figure 6.17 Differentiation of Photoreceptors in the Drosophila Compound Eye

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Figure 6.18 Major Genes Known to be Involved in the Induction of Drosophila Photoreceptors

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