Table 2 Sample sizes (N), allele frequencies and inbreeding coefficients (FIS) for each locus and percentage polymorphic loci (P), mean number of alleles (A), observed (Ho) and expected (He) heterozygosities and FIS for each population

From: Genetic differentiation reflects geological history in the Azorean land snail, Leptaxis azorica

 

Lae1

Lae3

Lae4

Lae7

Lae8

Lae9

Lae10

Law1

Law2

Law3

Law6

Law8

Law9

Laf1

Laf2

Lam1

Lam2

AAT

9

38

61

18

11

7

13

23

9

29

48

3

10

19

11

19

19

 A

0.056

 B

1.000

0.974

 C

1.000

0.987

0.975

1.000

1.000

1.000

1.000

0.957

0.833

0.638

1.000

1.000

1.000

1.000

1.000

0.026

 D

0.013

0.025

0.043

0.111

0.362

F IS

0.000

−0.017

−0.023

−0.091

0.047

0.000

EST-1

13

39

70

18

11

9

19

24

8

29

43

6

10

18

14

16

18

 A

0.063

 B

0.063

0.056

 C

0.083

 D

1.000

0.962

1.000

1.000

0.682

1.000

1.000

0.646

0.500

0.621

0.628

0.917

0.850

0.083

0.714

0.625

0.694

 E

0.028

 F

0.038

0.318

0.354

0.500

0.379

0.372

0.083

0.150

0.917

0.286

0.219

0.139

 G

0.031

F IS

−0.027

0.000

0.201

−0.448

0.429

0.016

1.000

−0.125

0.653

−0.368

0.786*

0.003

EST-2

13

39

70

18

11

9

19

25

8

29

43

5

10

19

14

16

18

 A

0.031

 B

0.026

0.007

0.198

0.563

0.472

 C

1.000

0.974

0.979

1.000

1.000

1.000

0.947

1.000

1.000

1.000

0.802

0.700

1.000

0.395

0.536

0.406

0.528

 D

0.014

0.053

 E

0.300

0.605

0.464

F IS

−0.013

0.665*

1.000

0.059

0.600

0.254

0.594

0.186

0.025

GPD

10

23

45

18

10

6

16

23

7

27

20

0

7

19

14

8

10

 A

0.250

0.044

0.250

0.250

0.109

0.111

0.025

 B

0.750

1.000

0.956

1.000

0.750

1.000

0.750

0.891

1.000

0.889

0.975

1.000

1.000

1.000

1.000

1.000

F IS

0.250

−0.035

0.250

0.032

0.784

0.636

0.000

GPI

13

36

72

18

10

9

19

25

9

29

43

5

9

15

14

18

17

 A

0.067

0.026

 B

1.000

1.000

1.000

0.944

0.950

0.889

0.974

0.040

0.111

0.052

0.081

0.300

0.389

0.833

1.000

0.895

0.794

 C

0.160

 D

0.056

0.050

0.111

0.026

0.800

0.889

0.948

0.919

0.700

0.611

0.100

 E

0.079

0.206

F IS

1.000

−0.067

0.000

0.768

−0.067

0.659

−0.077

0.600

0.789

−0.111

−0.067

0.484

HBDH

7

38

33

18

10

7

6

22

6

29

21

0

8

15

7

2

10

 A

0.286

0.105

0.219

0.200

0.167

0.023

0.167

0.017

0.095

0.563

 B

0.714

0.895

0.781

1.000

0.800

1.000

0.833

0.977

0.833

0.983

0.905

0.438

1.000

1.000

1.000

0.350

 C

––––—

0.650

F IS

−0.333

0.175

0.464

0.419

1.000

0.000

−0.111

0.000

−0.081

0.774

0.800

IDH

10

38

61

18

9

8

19

23

9

29

32

2

10

17

3

14

13

 A

0.130

0.031

 B

0.105

0.057

0.111

0.111

0.263

0.052

0.118

 C

1.000

0.895

0.943

0.889

0.889

1.000

0.737

0.870

1.000

0.948

0.641

1.000

1.000

0.676

1.000

0.893

1.000

 D

0.036

 E

0.206

 F

0.328

0.071

F IS

−0.104

0.251

1.000

−0.067

−0.059

1.000*

0.659

0.428

0.420

−0.054

LAP

12

26

56

18

9

7

14

22

6

21

21

3

9

15

1

3

11

 A

1.000

1.000

 B

0.077

0.955

1.000

0.056

0.571

0.607

0.295

0.167

0.571

 C

1.000

0.635

0.045

0.611

0.429

0.250

0.068

0.048

0.444

1.000

0.818

 D

0.288

0.333

0.143

0.636

0.833

0.952

0.429

1.000

0.556

0.182

F IS

0.633*

0.380

0.805

1.000

0.879*

0.476

1.000

1.000

0.052

0.590

0.429

PEP-1

13

38

71

18

11

9

18

25

8

29

50

6

10

19

12

18

20

 A

0.056

 B

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

1.000

0.611

0.700

 C

0.333

0.300

F IS

1.000*

1.000*

PGM

13

38

59

18

11

9

18

25

9

29

21

6

10

19

14

8

13

 A

0.026

0.091

0.600

0.722

0.759

0.238

0.600

0.132

 B

0.038

 C

1.000

0.974

1.000

1.000

0.909

1.000

1.000

0.400

0.278

0.138

0.690

1.000

0.400

0.868

1.000

1.000

0.962

 D

0.103

 E

0.071

F IS

−0.014

−0.053

0.020

−0.333

0.317

0.300

−0.200

−0.125

0.000

P

16.67

58.33

50

16.67

58.33

16.67

50

66.67

50

66.67

66.67

40

41.67

41.67

16.67

41.67

66.67

A

1.17

1.67

1.58

1.17

1.67

1.17

1.58

1.83

1.58

1.75

1.83

1.40

1.42

1.58

1.17

1.92

1.92

 

(.11)

(.19)

(.19)

(.11)

(.19)

(.11)

(.19)

(.21)

(.19)

(.18)

(.21)

(.16)

(.15)

(.23)

(.11)

(.38)

(.31)

H o

0.073

0.064

0.040

0.000

0.131

0.019

0.077

0.115

0.183

0.098

0.188

0.057

0.113

0.110

0.065

0.082

0.132

 

(.052)

(.023)

(.017)

(.000)

(.042)

(.019)

(.044)

(.048)

(.075)

(.043)

(.052)

(.029)

(.053)

(.045)

(.049)

(.040)

(.053)

H e

0.070

0.092

0.060

0.026

0.184

0.061

0.151

0.198

0.173

0.157

0.220

0.163

0.194

0.140

0.078

0.166

0.225

 

(.047)

(.044)

(.029)

(.018)

(.058)

(.046)

(.059)

(.060)

(.057)

(.054)

(.063)

(.073)

(.072)

(.057)

(.053)

(.067)

(.064)

F IS

−0.052

0.308

0.342

1.000

0.302

0.715

0.506

0.422

−0.054

0.378

0.144

0.691

0.432

0.225

0.169

0.513

0.422

  1. Standard errors are given in parentheses. FIS values associated with a significant deficit of heterozygotes (after Bonferroni correction) are marked with an asterix (*). Variation at loci SOD and PEP-2 was negligible. Population Law8 was included in the Table because it has a unique allele but was further not used in the analyses (N<6).