FIGURE 2. Inferred phylogenetic relationships within the sworderi complex. The phylogram is a Maximum Likelihood topology with Bayesian posterior probabilities and Maximum Likelihood bootstrap values, respectively. The green circles indicate instances of independent evolution of karst ecosystem ecology
FIGURE 1. Phylogram based on the Bayesian analysis. Number above and below branches are MP/ML bootst...
FIGURE 5. Left: limestone forest habitat and karst tower of the type locality of Cyrtodactylus hidup...
FIGURE 2. BEAST chronogram of the Cyrtodactylus pulchellus complex. Black dots represent nodes suppo...
FIGURE 4. Type series of Cyrtodactylus gunungsenyumensis sp. nov. from Gunung Senyum, Hutan Lipur Gu...
FIGURE 2. Inferred phylogenetic relationships of the Cyrtodactylys sworderi complex based on 1502 bp...
FIGURE 4. Habitat at the type locality, Gua Kanthan, Perak, Peninsular Malaysia. Upper: eroded and c...
Figure 2. Bayesian topology of the six species groups and Cyrtodactylus tigroides of the Indochinese...
FIGURE 1. Distribution of the species of the Cyrotdactylus sworderi complex in Peninsular Malaysia. ...
FIGURE 1. Inferred phylogenetic relationships of C. petani sp. nov. The tree is a Maximum likelihood...
Abstract By studying ecomorophology in the context of phylogeny, researchers can pars...
FIGURE 3. Upper: adult male holotype of Cyrtodactylus guakanthanensis sp. nov. (LSUHC 11322) from Gu...
FIGURE 1. Distribution of the species of the Cyrtodactylus pulchellus complex from the Thai-Malay Pe...
FIGURE 4. Type series of Cyrtodactylus hidupselamanya sp. nov. from Felda Chiku 7, Kelantan, Peninsu...
FIGURE 2. Maximum-likelihood phylogram of the Hemiphyllodactylus harterti group with Bayesian poster...
FIGURE 1. Location of Cyrtodactylus tebuensis sp. nov. at Gunung Tebu, Terengganu and distribution o...
FIGURE 1. Phylogram based on the Bayesian analysis. Number above and below branches are MP/ML bootst...
FIGURE 5. Left: limestone forest habitat and karst tower of the type locality of Cyrtodactylus hidup...
FIGURE 2. BEAST chronogram of the Cyrtodactylus pulchellus complex. Black dots represent nodes suppo...
FIGURE 4. Type series of Cyrtodactylus gunungsenyumensis sp. nov. from Gunung Senyum, Hutan Lipur Gu...
FIGURE 2. Inferred phylogenetic relationships of the Cyrtodactylys sworderi complex based on 1502 bp...
FIGURE 4. Habitat at the type locality, Gua Kanthan, Perak, Peninsular Malaysia. Upper: eroded and c...
Figure 2. Bayesian topology of the six species groups and Cyrtodactylus tigroides of the Indochinese...
FIGURE 1. Distribution of the species of the Cyrotdactylus sworderi complex in Peninsular Malaysia. ...
FIGURE 1. Inferred phylogenetic relationships of C. petani sp. nov. The tree is a Maximum likelihood...
Abstract By studying ecomorophology in the context of phylogeny, researchers can pars...
FIGURE 3. Upper: adult male holotype of Cyrtodactylus guakanthanensis sp. nov. (LSUHC 11322) from Gu...
FIGURE 1. Distribution of the species of the Cyrtodactylus pulchellus complex from the Thai-Malay Pe...
FIGURE 4. Type series of Cyrtodactylus hidupselamanya sp. nov. from Felda Chiku 7, Kelantan, Peninsu...
FIGURE 2. Maximum-likelihood phylogram of the Hemiphyllodactylus harterti group with Bayesian poster...
FIGURE 1. Location of Cyrtodactylus tebuensis sp. nov. at Gunung Tebu, Terengganu and distribution o...
FIGURE 1. Phylogram based on the Bayesian analysis. Number above and below branches are MP/ML bootst...
FIGURE 5. Left: limestone forest habitat and karst tower of the type locality of Cyrtodactylus hidup...
FIGURE 2. BEAST chronogram of the Cyrtodactylus pulchellus complex. Black dots represent nodes suppo...