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McGUIRE-SYSTEMATICS OF CROTAPHYTID LIZARDS<br />
APPENDIX 6<br />
Lisf of Character Stare Changes by Character<br />
Characters 1-27, 29-30, 32-67, 69-74, 76-83, 86-88 with a<br />
maximum of 24 steps; characters 28,68, 75, and 84-85 with a<br />
maximum ofone step; characten 3 1 and 89-98 with a maximum<br />
of 100 steps. PAUP does not calculate consistency indices for<br />
characters coded using step matrices. Therefore, "n/aW appears<br />
in the CI column for characters 89-98 (allozyme characters coding<br />
using Manhattan distances in step matrices). Arrows with<br />
double lines indicate unambiguous changes, i.e.. those occurring<br />
in all optimizations. Arrows with single lines indicate changes<br />
that do not occur in all optimizations.<br />
(ACCTRAN optimization):<br />
Character chong lists:<br />
Character CI Step, Changes<br />
node A a - f node B<br />
node C f 3 y node D<br />
node C f -. a G. coronat<br />
node I a 1: b node J<br />
node L b 3 y C. insularis<br />
node J b 3 f C, grismeri<br />
node A b - a HYPANC<br />
node A b 3 y node B<br />
node G b -r a node H<br />
node G b Z g C. anfiquus<br />
node E b - a C. retictclafus<br />
node K a 3 b C. bicinctores<br />
node I a Z y C. dickersonae<br />
node G a 3 m C. anliq~tus<br />
node A y * a HYPANC<br />
node B a =: y node C<br />
node A y * a HYPANC<br />
node A a -r c node B<br />
node D c 3 y G. copei<br />
node C c -r a G. coronat<br />
node B c 3 d G. silus<br />
node A a -r y node E<br />
node A ady node E<br />
node A x * a HYPANC<br />
node D x Z y G. copei<br />
node B x + c G. silus<br />
node A x 3 y node E<br />
node G y 3 s C. anliquus<br />
node B a -r y node C<br />
node A a 3 y node B<br />
node D y 3 p G. copei<br />
node A a -r y node E<br />
node A y * a HYPANC<br />
node A a 2 m node B<br />
node B m -+ y node C<br />
node K aZj nodeL<br />
node L j =: y C. insularis<br />
node A e -. x node B<br />
node D x 3 y G. copei<br />
node D x -+ w G. wislizenii<br />
node F e 3 a node G<br />
node J a 3 k C. grisnteri<br />
node F e -. v C. collaris<br />
node I a 3 y C. dickersonae<br />
nodeAazynodeE<br />
node B y =:a node C<br />
Character change lists:<br />
char3Clcr CI Svpr -sn<br />
21 1 .OOO 24 node A a --. y node B<br />
22 0.490 24 node C a Z y G. corona*<br />
24 node A a z y node E<br />
1 node F y -r x C. collaris<br />
23 1.000 24 node A a -r y node E<br />
24 0.857 20 node A c -r w node B<br />
2 nodeBw-ynodeC<br />
1 nodeEc3bnodeF<br />
-<br />
nodeFb-anodeG<br />
node L a Z b C. vestigium<br />
node H a 3 d C. nebnus<br />
node A a -r y node B<br />
node A c * a HYPANC<br />
node A c 3 y node B<br />
nodeFc3bnodeG<br />
nodeKbZgnodeL<br />
node L g 3 y C. insularis<br />
node J b 3 a C. grismeri<br />
node I b 3 d C. dickersonae<br />
node G b 3 a C. anfiquus<br />
node A a =: y node E<br />
node AO- I nodeE<br />
node E 1 -r 2 C. reticulafus<br />
node A y * a HY PANC<br />
node A a 3 y node B<br />
node B A Z C node C<br />
node D C Z B G. wislizenii<br />
nodeAA-LnodeE<br />
nodeEL3HnodeF<br />
node H H 3 L node I<br />
node K L =: M node L<br />
node L M 3 K C. insularis<br />
node J L 3 J C. grismeri<br />
node 1 L =: I C. dickersonae<br />
node G H 3 F C. anfiquus<br />
node F H 3 G C. collaris<br />
node E L 3 E C. reticulalw<br />
node A q a HYPANC<br />
node B q =: w node C<br />
node D w -. v G. wislizenii<br />
node C w 3 y G. coronat<br />
node B q -. n G. silus<br />
node F q =s node G<br />
nodeIs3knodeJ<br />
node L k = a C. insularis<br />
node F q 3 k C. collaris<br />
node A a 3 y node E<br />
node A a -. y node E<br />
node G y 3 s C. anfiqu~u<br />
nodeAa-ynodeE<br />
node A a Z y node B<br />
node D y -, q G. wislizenii<br />
node G a 3 g C. anfiquus<br />
node A a -. y node E<br />
node B a =: u G. Silus<br />
nodeHa3ynodeI<br />
node A e - a HYPANC<br />
node D e 3 h G. cope1