Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

66
Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk

Transcript of Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Page 1: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Why are color patterns in red-tailed hawks so polymorphic?

Ferruginous Hawk

Page 2: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Heterozygous advantage in European buzzards (Example 8.2)

Page 3: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 4: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Paper Outline

Page 5: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Today

Chapter 9: Population subdivision

Estimating gene flow

Questions???

Chapter 10 Multiple loci: Gametic disequilibrium

Concept

CausesLinkageSmall population sizeHybridization

Page 6: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Describing gene flow in natural populations

(1) Indirect:

Measure FST and estimate mN withisland model.

2. Direct:

Assign individuals into populations based on their genotype . “Assignment tests” approach.

Page 7: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

(1) Indirect: Long-toed salamander

Tallmon et al. 2000. Genetic differentiation among long-toed salamander (Ambystoma macrodactylum) populations. Copeia 27-35.

Page 8: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 9: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Overall

FST

Page 10: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

mN ≈ 1

Page 11: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 12: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Ne = 123 ± 79

mN ≈ 1 m ≈ 1%

Page 13: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

mN ≈ 1 m ≈ 1%

Under- or over-estimate?

Page 14: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

(2) Direct approach

Genotypes can be used as “genetic tags” to identify the population of origin of individuals and to detect migrants.

Page 15: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Waters, J. M., L. H. Dijkstra, and G. P. Wallis. 2000. Molec. Ecol. 9:1815-1821.

Page 16: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Adult

100 – 150 mm

(matures at 1- 3 years; spawns in estuaries)

Inanga (Galaxias maculatus)

Whitebait

50 mm

(21-23 weeks)

Page 17: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

mtDNA sequence divergence

1%

Migrant haplotype found in NZ

Page 18: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Genetic marking

Genotypes can be used as “genetic tags” to identify the population of origin of individuals and to detect migrants.

“Assignment tests” approach. Assign individuals into populations based on their genotype at many nuclear loci. (See Sections 9.8.4 & 16.4.2).

Page 19: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

See Section 16.4.2

The multiple locus genotype of an individual can be used to “assign” the individual to its most likely population of origin.

Page 20: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

The multiple locus genotype of an individual can be used to “assign” the individual to its most likely population of origin.

Potential source populations

A B C D E Indiv

Page 21: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Which source population is Indiv most likely from? A, B, C, D, E

Potential source populations

A B C D E Indiv

Page 22: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Northwest Science 83:154-162

Genotyped at 16 microsatellite loci to determine if a native or migrant genotype.

Page 23: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Northwest Science 83:154-162

Genotyped at 16 microsatellite loci to determine if a native or migrant genotype.

Page 24: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Mountain lion killed by car in ConnecticutGenotyped at 18 microsatellite loci

Page 25: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 26: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Use of assignment tests in analysis of mixed stock harvest

Page 27: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Chulitna Lodge Beach 99

Idavain Ck 00

Nuyakuk L. 00

Koktuli R. 00

Lower Talarik 00

Margo Ck 01

American Ck 01

Nick-N-Ck 00

Dennis Ck 00

Fuel Island 00

Gibraltar L. 00

Brooks L. 00

Kijik L. 00

HaplotypesTC

Chinkelyes Ck 00

Triangle Island 00

Headwaters Ck. 01

Finger Beach 00

Tommy R 00

Iliamna R 99

Copper R 00

Southeast Ck 00

Tazimina R 01

American Ck 00

Knutsen Bay 00

Cytochrome b SNP

Page 28: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Bristol Bay

Port Moller test fishery (7 day advance warning)

Page 29: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Contract vessel used to test fish Port Moller transect

Page 30: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Bristol Bay

Port Moller test fishery (7 day advance warning)

Day 1

Page 31: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Fin clips taken from fish at each station

Page 32: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Bristol Bay

Port Moller test fishery (7 day advance warning)

Day 3 – Samples to Anchorage

Page 33: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Day 4 – Samples analyzed in Anchorage

Page 34: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 35: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

0

0.05

0.1

0.15

0.2

0.25

0.3

0.35

0.4

6,000,000 fish surplus

Day 5 – Analyses reported

Page 36: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Day 6-7 – Directed Harvest

Page 37: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Chapter 9 Subdivision: Questions???

Which population structure is most likely to lead to long-term persistence?

Page 38: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Summary of Chapter 9

(1) Gene flow decreases divergence among populations and increases genetic variation within populations.

(2) In the absence of selection, divergence is a function of the number of migrants:

(3) Natural selection can ‘swamp’ the effects of gene flow in large populations (e.g., outlier loci).

Page 39: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 40: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

r = 0.5 for unlinked loci on different chromosomes. Loci are linked if r < 0.5

r = recombination rate

Page 41: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Gametic (linkage) disequilibrium

D will be zero if genotypes at the two loci are randomly associated (multiplication rule)

Page 42: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

A locus: p1 = 0.4; q1 = 0.6

B locus: p2 = 0.7; q2 = 0.3

D = (0.40) – (0.4)(0.7) = 0.12

Page 43: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

NOTE: Each locus is in H-W proportions.

D=0[D=0.12]

Page 44: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

When should we be concerned about possible gametic disequilibrium?

(1) Closely linked markers.

(2) Small effective population size

(3) Hybridization

Page 45: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

When should we be concerned about possible gametic disequilibrium?

(1) Closely linked markers.

A neutral marker (e.g., microsatellite locus) can appear to be under selection because it is in gametic disequilibrium with a selected locus.

Page 46: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 47: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Hitchhiking during a selective sweep of advantageous mutatiion

Selected locus

Page 48: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

0.033

CPA112

11 allozyme loci

8 microsatellite loci Outlier Locus

Expected distributions in absence of selection

Page 49: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

When should we be concerned about possible gametic disequilibrium?

(1) Closely linked markers.

(2) Small effective population size

(3) Hybridization

Page 50: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

N = 5

Page 51: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

N = 2 AB/ab Ab/aB p1=0.5 p2=0.5 D=0

AB

ab

Ab

aB

aBaB

aB

ab

ab

ab

Ab

Ab

Ab

ABAB

AB

Random sample of 4 gametes from the gamete pool

N = 2 p1= p2= D=

Page 52: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Example 10.5Siberian jay103 microsatellite loci

Page 53: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

83% loci on different chromosomes show significant gametic disequilibrium.

Even distant loci on the same chromosome are in gametic disequilibrium

Page 54: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Guest Box 10: Phillip Island foxes

Page 55: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

When should we be concerned about possible gametic disequilibrium?

(1) Closely linked markers.

(2) Small effective population size

(3) Hybridization

Page 56: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Gryllus firmus (F) G. pennsylvanicus (P)

Example 10.3: Hybrid zone of field crickets

Page 57: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Yellowstone cutthroat trout

(YCT)

O. c. bouvieri

Rainbow trout

(RT)

O. mykiss

(Illustrations by Joseph R. Tomelleri)

Westslope cutthroat trout

(WCT)

Oncorhynchus clarki lewisi

Page 58: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 59: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

D = coefficient of gametic disequilibrium (measure of nonrandom association of two loci)

Page 60: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Genotypes at eight diagnostic allozyme loci and mtDNA from Forest Lake, Montana.

W = homozygous WCT

WY = heterozygous

Y = homozygous YCT

Page 61: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Hybrid swarm: a population of individuals that all are hybrids by varying numbers of generations of backcrossing with parental types and mating among hybrids.

Page 62: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Decay of gametic disequilibrium

Page 63: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Which of these two hybrid swarms is older?

Note: A, B, and C are linked pairs of loci.

Page 64: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 65: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.
Page 66: Why are color patterns in red- tailed hawks so polymorphic? Ferruginous Hawk.

Bull trout = BL (L= homozygous)

Brook trout = BR (R = homozygous)