A new type of DNA chart introduced in Second Site presents data in a more intuitive viewing format than the usual grid. Below you'll find abbreviated DNA signatures overlaid on a traditional descendant chart built with traditional genealogical ("paper") evidence. This overlay chart includes calculated yDNA signatures for ancestors derived from the test results of their descendants.

For the MRCA (Most Recent Common Ancestor), a derived signature is often called a modal signature. This DNA Overlay Chart, however, does not derive DNA signatures using the statistical mode — i.e., it does not choose the values that occur the most frequently in the set of markers. Instead, it uses a "maximum parsimony" method described by Alvy Ray Smith. The rules are designed to choose marker values that would produce the observed test results of descendants via the minimum number of mutations.

The Second Site program which built this chart derives probable DNA signatures. It is possible for unlikely mutation sequences to occur, such as multiple mutations occurring in the same generation, which obscure the DNA signature of the father. All methods for deriving DNA signatures are subject to uncertainty, but the maximum parsimony method reduces the possibility that a bias in the test results (many people tested from one branch of the family) will unduly influence the derived DNA signature of the MRCA.

 

{14,15},{24,25},{38,39},{12,15}
{14,15},{24,25},{38,39},{12,15}
14,25,38,12
Eliakim/5c Brooks
Herrick/6c Brooks
Sheldon Herrick/7c Brooks
Charles Byron/8c Brooks
James Garfield/9c Brooks
WBB 196525
14,25,38,12
15,24,39,15
Thomas/5c Brooks
Thomas Jefferson/6c Brooks
Cook/7c Brooks
Grant/8c Brooks
Elza Edgar/9c Brooks
LEB 75867
15,24,39,15
12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667
3
9
3
3
9
0
1
9
/
3
9
4
3
9
1
3
8
5
a
3
8
5
b
4
2
6
3
8
8
4
3
9
3
8
9
-
1
3
9
2
3
8
9
-
2
4
5
8
4
5
9
a
4
5
9
b
4
5
5
4
5
4
4
4
7
4
3
7
4
4
8
4
4
9
4
6
4
a
4
6
4
b
4
6
4
c
4
6
4
d
4
6
0
Y

G
A
T
A

H
4
Y
C
A

I
I

a
Y
C
A

I
I

b
4
5
6
6
0
7
5
7
6
5
7
0
C
D
Y
a
C
D
Y
b
4
4
2
4
3
8
5
3
1
5
7
8
3
9
5
-
S
1
a
3
9
5
-
S
1
b
5
9
0
5
3
7
6
4
1
4
7
2
4
0
6
-
S
1
5
1
1
4
2
5
4
1
3
-
a
4
1
3
-
b
5
5
7
5
9
4
4
3
6
4
9
0
5
3
4
4
5
0
4
4
4
4
8
1
5
2
0
4
4
6
6
1
7
5
6
8
4
8
7
5
7
2
6
4
0
4
9
2
5
6
5
1324141011{14,15}121212131330188101111{24,25}15193113141717111119231514161938{38,39}121211915168101081010122323161013{12,15}1581324201412111312111312
Haplogroup: R1b1a2
12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667
3
9
3
3
9
0
1
9
/
3
9
4
3
9
1
3
8
5
a
3
8
5
b
4
2
6
3
8
8
4
3
9
3
8
9
-
1
3
9
2
3
8
9
-
2
4
5
8
4
5
9
a
4
5
9
b
4
5
5
4
5
4
4
4
7
4
3
7
4
4
8
4
4
9
4
6
4
a
4
6
4
b
4
6
4
c
4
6
4
d
4
6
0
Y

G
A
T
A

H
4
Y
C
A

I
I

a
Y
C
A

I
I

b
4
5
6
6
0
7
5
7
6
5
7
0
C
D
Y
a
C
D
Y
b
4
4
2
4
3
8
5
3
1
5
7
8
3
9
5
-
S
1
a
3
9
5
-
S
1
b
5
9
0
5
3
7
6
4
1
4
7
2
4
0
6
-
S
1
5
1
1
4
2
5
4
1
3
-
a
4
1
3
-
b
5
5
7
5
9
4
4
3
6
4
9
0
5
3
4
4
5
0
4
4
4
4
8
1
5
2
0
4
4
6
6
1
7
5
6
8
4
8
7
5
7
2
6
4
0
4
9
2
5
6
5
132414101114121212131330188101111251519311314171711111923151416193838121211915168101081010122323161013121581324201412111312111312
Haplogroup: R1b1a2
12345678910111213141516171819202122232425262728293031323334353637383940414243444546474849505152535455565758596061626364656667
3
9
3
3
9
0
1
9
/
3
9
4
3
9
1
3
8
5
a
3
8
5
b
4
2
6
3
8
8
4
3
9
3
8
9
-
1
3
9
2
3
8
9
-
2
4
5
8
4
5
9
a
4
5
9
b
4
5
5
4
5
4
4
4
7
4
3
7
4
4
8
4
4
9
4
6
4
a
4
6
4
b
4
6
4
c
4
6
4
d
4
6
0
Y

G
A
T
A

H
4
Y
C
A

I
I

a
Y
C
A

I
I

b
4
5
6
6
0
7
5
7
6
5
7
0
C
D
Y
a
C
D
Y
b
4
4
2
4
3
8
5
3
1
5
7
8
3
9
5
-
S
1
a
3
9
5
-
S
1
b
5
9
0
5
3
7
6
4
1
4
7
2
4
0
6
-
S
1
5
1
1
4
2
5
4
1
3
-
a
4
1
3
-
b
5
5
7
5
9
4
4
3
6
4
9
0
5
3
4
4
5
0
4
4
4
4
8
1
5
2
0
4
4
6
6
1
7
5
6
8
4
8
7
5
7
2
6
4
0
4
9
2
5
6
5
132414101115121212131330188101111241519311314171711111923151416193839121211915168101081010122323161013151581324201412111312111312
Male