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McGUIRE-SYSTEMATICS OF CROTAPHYTID LIZARDS<br />
steps Cham<br />
node E a 3 h node F<br />
nodeFh=:ynodeG<br />
node H a 2 y node I<br />
node G a 3 y C. antiquus<br />
node E a 3 y C. reticulatus<br />
node H y =: a C. nebrius<br />
node F y S a C. collaris<br />
node H a =: x C. nebrius<br />
node A a 4 y node B<br />
nodeJ a Z p node K<br />
node K p --r s C. bicinnores<br />
node L p 2 u C. b4estigium<br />
node H a 3 s C. nebrius<br />
node F a 3 c C. collaris<br />
node K 0 3 I node L<br />
node I 0 Z 3 C. dickersonae<br />
node H 0 3 2 C. nebriw<br />
node E 0 -* 4 node F<br />
node 1 4 Z 3 C. dickersonae<br />
node H 4 =: 2 C. nebrius<br />
node E 0<br />
-<br />
+ I C. reticulatus<br />
node E a Z y node F<br />
node D a y G. wislizenii<br />
node A a 3 y node E<br />
nodeE I j2nodeF<br />
node J 2 -, 3 node K<br />
node K 3 -, 4 C. bicinctores<br />
node E I<br />
-<br />
+ 7 C, reticulatus<br />
node A 1 + 6 node E<br />
node G 6 1 node H<br />
node E 6 S 7 C. reticulatus<br />
node A 1 + 6 node E<br />
node K 6 -, 4 C. bicinctores<br />
node L 6 -. 3 C. vestigium<br />
node I 6 -, 2 C. dickersonae<br />
node H 6 Z 5 C. nebrius<br />
node E 6 -, 7 C. reticulatus<br />
node I I S 2 C. dickersonae<br />
node H I 3 5 C. nebrius<br />
node F I 3 6 C. collaris<br />
node I 1 S 2 C. dickersonae<br />
node H 1 S 5 C. nebrius<br />
node F 1 S 6 C. collaris<br />
nodeA 1 +2nodeE<br />
nodeJ 2 4 3 node K<br />
nodeA Id2nodeE<br />
node 1 2 -. 5 node J<br />
node J 5 -. 4 node K<br />
~hnncter change lists:<br />
Chamnn CI stcpr Chanen<br />
96 n/a<br />
29<br />
4 1<br />
6<br />
2<br />
71<br />
node L 4 -r 3 C. iqestigiunt<br />
node H 2 -. 5 C. nebrius<br />
node F 2 3 6 C. collaris<br />
node E 2 -. 7 C. reticutatus<br />
nodeA146nodeE<br />
97<br />
98<br />
n/a<br />
n/a<br />
9<br />
7 1<br />
43<br />
4 1<br />
29<br />
8<br />
7<br />
50<br />
100<br />
node K 6 3: 4 C. bicinctores<br />
node L 6 + 3 C. vesfigium<br />
node 1 6 S 2 C. dickersonae<br />
node H 6 2 5 C. nebrius<br />
node E 6 Z 7 C. reticufatus<br />
node K 1 3 4 C. bicinctores<br />
node I I Z 2 C. dickersonae<br />
node E 1 Z 7 C. rericulatus<br />
node A I + 3 node E<br />
100<br />
6 1<br />
node K 3 Z 4 C. bicinctores<br />
node 1 3 S 2 C. dickersonae<br />
100 node F 3 S 6 C. collaris<br />
APF-ENolx 7<br />
Scleral Ossicle Data<br />
Scleral ossicle numbers and patterns of overlap were assessed<br />
in the listed specimens. All crotaphytids examined match the<br />
apparently plesiomorphic iguanian condition in which ossicles<br />
I, 6, and 8 are positive and 4,7, and 10 are negative (Underwood,<br />
1970; de Queiroz, 1982). Only one set of scleral ossicles (one eye)<br />
was examined in the specimens followed by asterisks.<br />
Crotaphyrur:<br />
bicinctores REE 293 1 , 2932,2934<br />
antiqurcs TNHC 53 155*, 53 156,53 159<br />
collaris REE 2875,2944,2952'<br />
dickersonae REE 2777,2904,2905<br />
grismeri MZFC 6648,6649. 6650.<br />
insularis REE 2794-2796<br />
nebritu REE 2937,294 1,2942,2943<br />
miculaius REE 29 10, 291 1, 2913.<br />
vestigium REE 2820,2825,2826<br />
Gambelia:<br />
copei REE 2798,2802,2804<br />
silus CAS 22713,22742.. 141328.<br />
ivislizenii REE 2789*, 2790,2791,2792,29161, 2917.<br />
291S2. 2919.2920<br />
Ossiclcs 1 nnd 14 or the n 1 scleral nng arc partial1 overlapping.<br />
Ouielcs1 and 14ofrhcn$ddq~d 13pndkof11tc\rftri~~arrp;uri.~y<br />
ovcrlnpping.