outline 7 vii. mechanisms of animal development a. cytoplasmic determinants 1. axes of symmetry in...

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NE 7 Mechanisms of Animal Development Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila Cell communication 1. Holtfreter’s work 2. mechanisms of cell recognition 3. induction Morphogens and pattern formation (chick limb bud) Hormones (in amphibian development) 1. pattern of metamorphosis 2. role of thyroxin 3. evidence

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Page 1: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

OUTLINE 7VII. Mechanisms of Animal Development

A. Cytoplasmic determinants1. axes of symmetry in amphibians2. bicoid gene in Drosophila

B. Cell communication1. Holtfreter’s work2. mechanisms of cell recognition3. induction

C. Morphogens and pattern formation (chick limb bud)D. Hormones (in amphibian development)

1. pattern of metamorphosis2. role of thyroxin3. evidence

Page 2: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

OUTLINE 6

VI. Morphogenesis

A. General features of gastrulation

B. Cell movement

1. extension and contraction

2. adhesion

C. Gastrulation in the sea urchin

D. Gastrulation in the frog

E. Three layers of cells

1. ectoderm

2. mesoderm

3. endoderm

F. Neurulation

Page 3: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.9

Gastrulation in theSea urchin

Page 4: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.10 Gastrulation in the frog

Page 5: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

QuickTime™ and aMicrosoft Video 1 decompressorare needed to see this picture.

Frog gastrulation (cross section)

Page 6: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.16 Changes in cell shape during morphogenesis

Page 7: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.11

Neurulation in the frog

Page 8: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

QuickTime™ and aCinepak decompressor

are needed to see this picture.

Gastrulation and neurulation in the frog

Page 9: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.7 Determination of axes of symmetry in the frog

Page 10: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 21.23

Development in the fly

Page 11: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 21.24

Determination of anterior - posterior axis in the fly

Page 12: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

ectoderm endodermmesoderm

3. resegregation

1. dissociation

2. reaggragation

Holtfretter 1955

Page 13: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.22Spemann and Mangold: an organizer

Page 14: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.24 Pattern formation: the chick limb bud

Page 15: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Fig. 47.24Pattern formation: the chick limb bud

Page 16: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Tadpole

AquaticGillsHerbivorousSwimming

Frog

TerrestrialLungsCarnivorousJumping

metamorphosis

Page 17: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication
Page 18: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

20 mm 20 mm

Stage 36

O

C

Stage 27

C

O

Stage 42

O

C

Omnivore Carnivore

Page 19: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Omnivore Carnivore

Comparison of beaks of spadefoot tadpoles

Page 20: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication
Page 21: OUTLINE 7 VII. Mechanisms of Animal Development A. Cytoplasmic determinants 1. axes of symmetry in amphibians 2. bicoid gene in Drosophila B. Cell communication

Carnivore Omnivore

Comparison of digestive systems of spadefoot tadpoles