Lab 3 - early development and model systems - xenopus and zebrafish Flashcards

1
Q

What makes zebrafish a good model organism?

A
  • transparent
  • eggs are not bound in jelly
  • large number of eggs
  • mutagenesis
  • molecule biology techniques
  • vertebrate
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2
Q

What makes xenopus a good model organism?

A
  • differentiation of animal and vegetal pole
  • egg is large, allows for egg fractionation (isolation of proteins)
  • vertebrate
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3
Q

What are some disadvantages of xenopus and zebrafish

A
  • costly
  • generate slowly
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4
Q

What is the egg type and cleavage type of xenopus?

A

egg type = mesolecithal
cleavage type = unequal holoblastic, radial

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5
Q

What is the egg type and cleavage type of zebrafish?

A

egg type = extreme teloecithal
cleavage type = discoidal meroblastic

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6
Q

Describe some characteristics of frog cleavage

A
  1. sperm entry determines the D-V axis
    - point of sperm entry = V
    - grey crescent = D
  2. animal pole –> micromeres
  3. vegetal pole –> macromeres
  4. grey crescent –> blastopore –> dorsal lip of blastopore = dorsal organizer
  5. blastocoel –> gives space for future development, signaling barrier
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7
Q

Describe some characterisitics of zebrafish cleavage

A
  1. no blastocoel
  2. cytoplasm –> blastodisc
  3. yolk syncytial layer –> nuclei are above but open to the yolk
  4. cleavage occurs on top of yolk
  5. blastula will slowly lose connections with the yolk
  6. first cell movement = epiboly
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8
Q

Describe the steps of frog gastrulation

A
  1. cells at the AP divide and rapidly migrate down to the dorsal lip of the blastopore (epiboly)
  2. at the dorsal lip the cells enter the interior (involution)
  3. endodermal cells are pulled towards the AP (involution)
  4. C&E –> new cavity (archenteron)
  5. neural plate is induced in ectoderm and extends anteriorly from the blastopore (delamination)
  6. mesoderm will form notochord which induces formation of the neural tube (delamination)
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9
Q

Describe zebrafish gastrulation

A
  1. involution –> epiblast + hypoblast = future mesoderm
  2. epiboly of ectoderm
    - C&E occurs at the shield
  3. shield forms at 50% epiboly (shield = dorsal organizer, presumptive tail)
  4. yolk plug forms at 90% epiboly
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10
Q

Describe neuralation of the frog

A
  1. notochord (meso) induces ectoderm to thicken and form neural plate
  2. neural plate begins to hinge and enclose
  3. early nerula –> neural plate hasn’t enclosed yet
  4. mid neurula –> neural ridge + groove
    - delamination of mesoderm –> somatic meso + splanchnic meso
  5. late neurula –> neural tube
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11
Q

Describe eye formation

A
  1. neural ectoderm evaginates outwards –> optic vesicle
  2. optic vesicle induces epidermis to become the lens placode (neural - non-neural induction)
  3. lens placode induces formation of neural retina (non-neural neural induction)
    - steps 2 and 3 = recipricol induction
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12
Q

Describe some characterisitcs of zebrafish neuralation and somatogenesis

A
  • co-occur
  • somites formed by paraxial meso
  • neural plate –> neural kneel –> neural rod –> neural tube
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13
Q

What is the function of BMP

A
  • expressed in the ventral axis
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14
Q

Name two BMP inhibitors and their sources

A

DMH1 = external
chordin = produced by the shield

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