51
terior-posterior patterning in Drosophi

Anterior-posterior patterning in Drosophila

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Anterior-posterior patterning in Drosophila. 3 head. The fly body plan: Each segment has a unique identity and produces distinct structures. 3 thorax. 8 abdomen. Mutations affecting the antero-posterior axis. 3 independent maternal systems: anterior , posterior , terminal. - PowerPoint PPT Presentation

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Page 1: Anterior-posterior patterning in Drosophila

Anterior-posterior patterning in Drosophila

Page 2: Anterior-posterior patterning in Drosophila

The fly body plan: Each segment has a unique identity and produces distinctstructures

3 head

3 thorax

8 abdomen

Page 3: Anterior-posterior patterning in Drosophila
Page 4: Anterior-posterior patterning in Drosophila

fate map larva

wild-type

anterior bicoid

posterior oskar

terminal torso

Mutations affecting the antero-posterior axis 3 independent maternal systems: anterior, posterior, terminal

single mutants double mutants

triple mutants

additive phenotypes

active systems

A P T

- P T

A - T

A P -

- - -

- P -

- - T

A - -

active systems

Page 5: Anterior-posterior patterning in Drosophila

Maternal effect mutations

Page 6: Anterior-posterior patterning in Drosophila

Zygotic effect mutations

Page 7: Anterior-posterior patterning in Drosophila

Embryo from wild-type mother

Embryo from bicoid mother

bicoid mutant phenotype

Wild-type Bicoid promotes anterior fates and inhibits posterior fates.

Page 8: Anterior-posterior patterning in Drosophila

Wild type

blastoderm fate map

bicoid mutant

Anterior: bicoid is required for head and thorax

abdomen abdomenhead

+ thorax

Page 9: Anterior-posterior patterning in Drosophila

Bicoid mRNA localization in embryo(tethered to microtubules)

Page 10: Anterior-posterior patterning in Drosophila

Nuclei divide without cell division in Drosophila to produce a syncytial blastoderm

embryo

Fig. 9.1

Page 11: Anterior-posterior patterning in Drosophila

Bicoid protein gradient in syncytial blastoderm embryo- diffuses after translation from localized mRNA- protein unstable

Page 12: Anterior-posterior patterning in Drosophila

Transplantation of egg cytoplasm An organizer of the anterior-posterior pattern is located at the anterior pole

wt

rescue of

pattern

wt

head in the center

polarity reversal

wt

thorax at posterior pole

polarity reversal abdomen only

polarity normal

Page 13: Anterior-posterior patterning in Drosophila

bicoid mRNA

bicoid mRNA induces head and thorax

bicoid (bcd) gene encodes a homeo-domain transcription factor

Page 14: Anterior-posterior patterning in Drosophila

Injection of bicoid mRNA:anterior (head) structures at site of injection

no head

& reorganization of polarity

Page 15: Anterior-posterior patterning in Drosophila
Page 16: Anterior-posterior patterning in Drosophila

Bicoid protein: transcriptional and translational regulator

zygotic target genes maternal target mRNA

(promotes anterior fates) (inhibits posterior fates)

Page 17: Anterior-posterior patterning in Drosophila

Transplantation of egg cytoplasm Posterior cytoplasm also has polarizing activity

wt

rescue of

pattern

wt

head in the center

polarity reversal

wt

thorax at posterior pole

polarity reversal

wt

double abdomen

polarity reversal abdomen only

polarity normal

Page 18: Anterior-posterior patterning in Drosophila

fate map larva

wild-type

anterior bicoid

posterior oskar

terminal torso

Mutations affecting the antero-posterior axis 3 independent maternal systems: anterior, posterior, terminal

single mutants double mutants

triple mutants

additive phenotypes

active systems

A P T

- P T

A - T

A P -

- - -

- P -

- - T

A - -

active systems

Page 19: Anterior-posterior patterning in Drosophila

Nanos is the maternal effector of the posterior system

rescue of all posterior-system mutants

by injection of nanos mRNA

mutant rescued rescued

Page 20: Anterior-posterior patterning in Drosophila

Embryonic polarity genes

Page 21: Anterior-posterior patterning in Drosophila
Page 22: Anterior-posterior patterning in Drosophila

Anterior-Posterior pattern formation in flies

Page 23: Anterior-posterior patterning in Drosophila

The Bcd gradient is converted into domains of gene expression

Bcd protein binds differentially to enhancers of target genesDifferent thresholds of Bcd concentration are required to turn on different genes

target genes are zygotically expressed Gap genes

low affinity

high affinity

Page 24: Anterior-posterior patterning in Drosophila

bcd mRNA

Bcd protein

target genes

Bcd gradient and expression domains of target genes

Page 25: Anterior-posterior patterning in Drosophila

Expression patterns of proteins encoded by Gap genes

Bicoid and Nanos regulate Gap gene expression

Page 26: Anterior-posterior patterning in Drosophila

Gap gene mutants lack different body regions

Page 27: Anterior-posterior patterning in Drosophila

Wild type Krüppel hunchback knirps

Gap gene mutants lack different body regions

Page 28: Anterior-posterior patterning in Drosophila

Hunchback Krüppel

The gap genes regulate each other and form domains with distinct combinations of gene expression.

Page 29: Anterior-posterior patterning in Drosophila
Page 30: Anterior-posterior patterning in Drosophila

Anterior-Posterior pattern formation in flies

Page 31: Anterior-posterior patterning in Drosophila
Page 32: Anterior-posterior patterning in Drosophila

Wild type

fushi tarazu mutant

Pair-rule mutants

Page 33: Anterior-posterior patterning in Drosophila

Even-skipped expression pattern

Page 34: Anterior-posterior patterning in Drosophila

08_18_reporter.gene.jpg

Modularity of the Drosophila even-skipped promoter

Page 35: Anterior-posterior patterning in Drosophila

parasegment

Krüppelhunchback giant eve stripe #2

repressorrepressor

activator

1 2 3 4 5

Regulation of expression stripe no. 2 of Even-skipped (eve)

multiple binding sites in enhancer of eve repressorsactivators

Page 36: Anterior-posterior patterning in Drosophila

Regulation of the Second Stripe of Transcription from the even-skipped Gene

Page 37: Anterior-posterior patterning in Drosophila

Regulation of the even-skipped gene

Page 38: Anterior-posterior patterning in Drosophila

Fushi tarazu expression

early

late

Eve, Ftz expression

Refinement of expression domains over time

Page 39: Anterior-posterior patterning in Drosophila

Refined expression domains in distinct cell rows

Page 40: Anterior-posterior patterning in Drosophila

Anterior-Posterior pattern formation in flies

Page 41: Anterior-posterior patterning in Drosophila

Segment polarity mutants

Page 42: Anterior-posterior patterning in Drosophila

Segment polarity mutants

Page 43: Anterior-posterior patterning in Drosophila

Wingless signaling specifies cell fates in the ventral epidermis

arm mutantWild type

AnteriorcellsmakeHair

PosteriorcellsmakeNakedcuticle

Page 44: Anterior-posterior patterning in Drosophila

Expression of segment polarity gene wingless

02 4 6

8

1012

LA

fghg

ap

1 3 57

9

1113

Segment polarity genes – 14 stripes

Page 45: Anterior-posterior patterning in Drosophila

Segments and Parasegments

Page 46: Anterior-posterior patterning in Drosophila

The Even-skipped and Fushi tarazu pair-rule transcription factors activate the segment-polarity gene Engrailed

Page 47: Anterior-posterior patterning in Drosophila

Intercellular feedback maintains pair-rule gene expression states

Page 48: Anterior-posterior patterning in Drosophila

Intercellular feedback maintains pair-rule gene expression states

=Wnt

Page 49: Anterior-posterior patterning in Drosophila

Wnt signaling pathway

-

+ -

-

-

-

-

+

+

+

+

+

Page 50: Anterior-posterior patterning in Drosophila

Gradients of Wingless and Hedgehog pattern each segment

Page 51: Anterior-posterior patterning in Drosophila

Anterior-Posterior pattern formation in flies