L20 - Hox genes Flashcards

1
Q

what is hox gene

A

establishes orientation of body parts in embryo

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2
Q

what is homeotic mutation

A

transformation of one body part to another,
so correct tissue but in wrong place

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3
Q

example of homeotic mutation in fruit fly

A

3rd thoracic segment mutates into another 2nd thoracic segment
so another set of wings is made

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4
Q

typical characteristics of hox genes

A

evolutionary conserved

transcription factors

homeodomain: acts as a dna binding motif

found clustered in genome

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5
Q

by what mechanism to genes initially duplicated

A

tandem gene duplication

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6
Q

paralogous genes

A

duplicated genes within a single genome

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7
Q

orthologous genes

A

same gene in diff organisms

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8
Q

2 mechanisms subfunctionalisation can occur

A

change in protein sequence

cahnge in the time/place of expression

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9
Q

what happens if duplicated gene isnt subfunctionalised

A

ends up getting removed

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10
Q

what is segmental duplication

A

vry big tandem duplication
like a whole chunk of chromosome is duplicated

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11
Q

what are two ways whole genome duplication events can occur

A

allotetrapolidy
autotetraploidy

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12
Q

allotetraploidy

A

hybridisation between two seperate species that causes 4n cell

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13
Q

autotetraploidy

A

improper meiosis resulting in 2n germ cells
a 2n combines with another 2n germ cell
to give 4n

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14
Q

how would u distinguish between autotetraploidy and allotetraploidy

A

allo has more differences in the genome
naturally cuz it’s two diff species

auto has less differences

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15
Q

2R hypothesis

A

basically says that vertebrates went through 2 whole genome duplication events in their ancestry

each with some gene loss events after

eventually resulting in the gene clusters we see today

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16
Q

how many hox genes in human

A

39
same as mouse
we acc share the same orthologous genes as mice

4 clsuters on 4 diff chromosomes

17
Q

why deos chick have 14 cervical vertebrate but mouse has 7

A

in their hox genes
C5 and C6 fall at the boundary of where cervical ends and thoracic begins

and in a chick, the boundary is at position 14

in a mouse its at position 7

hence hox genes determine positioning and boundaries of anatomical features

18
Q

what body part is affected by mutations in hox genes that control proximal-distal identities

A

limbs
so a mutation can get rid of femurs or ur radius

these genes originally pattern body axis, but during duplication, evolved to pattern limb orientation

19
Q

general rules about vertebrate hox genes:
how are hox genes generated

A

tandem and segmental duplication events

20
Q

general rules about vertebrate hox genes:
what do the ‘spacial domains’ of hox genes indicate

A

anterior posterior orientation
so as you go along, the genes will pattern for more posterior body parts

21
Q

general rules about vertebrate hox genes:
what does it mean when we say hox genes have spatial and temporal colinearity

A

their spatial collinearity is relation between ordering of Hox genes along the chromosome and their expression patterns along the head-tail axis

temporal colinearity is the relaition between the spatial ordering of the cluster and the time that they’re expressed