evolution of multigene families

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Evolution of multigene families

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Evolution of multigene families. Gene duplication and multigene families. Orthologs - homologs by speciation. Paralogs - homologs by gene duplication. Phylogenetic consequences of duplication, speciation, and gene conversion in gene families. - PowerPoint PPT Presentation

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Page 1: Evolution of multigene families

Evolution of multigene families

Page 2: Evolution of multigene families

• Orthologs - homologs by speciation

• Paralogs - homologs by gene duplication

Gene duplication and multigene families

Page 3: Evolution of multigene families

Phylogenetic consequences of duplication, speciation, and gene conversion in gene families

Page 4: Evolution of multigene families

Identify the evolutionary events indicated by circles

Page 5: Evolution of multigene families

Gene duplication and polyploidization in plants

Poplar

Papaya

Arabidopsis

Page 6: Evolution of multigene families

Retroposon-mediated duplication of IQD12 gene and morphological evolution in tomatoes

Page 7: Evolution of multigene families

Using age distribution of gene duplication events to infer whole-genome duplications

Page 8: Evolution of multigene families

Recent and ancient duplications in the soybean genome

Page 9: Evolution of multigene families

Origin of new gene regulatory functions

Page 10: Evolution of multigene families

Evidence for adaptive evolution in ribonuclease

genes of primates

Page 11: Evolution of multigene families

Evidence for localized gene conversion & concerted evolution in primate globin gene family

Page 12: Evolution of multigene families

Immunoglobulin Vh gene family in vertebrates

Page 13: Evolution of multigene families

The vertebrate major histocompatibility complex (Mhc)

Human

Mouse

Chicken

Frog

DPDNDM DO DQ DRB C X E J H G F

BA BA A AB B BA BA B ABB

K FM OA E D Q T M

II

B A BB BBA B BA

B-G

B BA

B-G

B

rDNA

B B

A BBB

complementHSP70

complementHSP70

complementHSP70

TAPLMP

TAPLMP

LMP

TAP

Class II Class III Class I

I II III I

II I II I II

II I

I

A

Page 14: Evolution of multigene families

Concerted evolution of avian Mhc genes revealed by Genetree analysis

A, species tree B, gene tree

Page 15: Evolution of multigene families

Agph-DAB1Agph-DAB2

Agph1.1Agph1.2Agph1.3

Came.11Came1.2

Came2.1Apco1.1Apco1.2Apco1.3Apco2.1

Apco3.6Apco3.4Apco3.3Apco3.2

Apco2.3Apco2.4

Apco3.5Apco3.1Apco2.2

BLBIBLBIICHKBLBETA

BLBIIIBLBIV

BLBVXHLA-DRB1HLA-DRB7

HLA-DRB2Mus-E

HLA-DOBMaru-DAB1

HLA-DPBMus-A

HLA-DQBXela-DAB

Pore-DXB0.10 substitutions/site

88

88

96

95100

100100

81

96

XenopusPoecilia

mammals

chicken

Scrub Jay

House Finch

Red-winged Blackbird

100

birdsmammals

Phylogeny of bird and mammal Mhc class II B genes (exon3)

Page 16: Evolution of multigene families

The DDC model of subfunctionalization, as illustrated by Hox genes

Page 17: Evolution of multigene families

Complementary expression patterns in duplicated zebrafish engrailed genes

Page 18: Evolution of multigene families

High rate of gene duplication(Lynch)

Page 19: Evolution of multigene families

Using gene order to estimate times of gene duplication in yeast

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Page 20: Evolution of multigene families

Age estimates based on Ks and orthology do not match

Page 21: Evolution of multigene families

Paralogs clustering by species - a telltale sign of concerted evolution