FIGURE 2. Bayesian phylogenetic tree of the genus Odorrana inferred from a fragment of 16S gene. "-" denotes low support by Bayesian posterior probabilities (BPP <95%), and bootstrap support (BS <70%). The scale bar represents 0.05 nucleotide substitutions per site. The seven clades (A-G) were revealed by Chen et al. (2013).Published as part of Liu, Xiaolong, He, Yanhong, Wang, Yufan, Beukema, Wouter, Hou, Shaobin, Li, Yingcun, Che, Jing & Yuan, Zhiyong, 2021, A new frog species of the genus Odorrana (Anura: Ranidae) from Yunnan, China, pp. 263-275 in Zootaxa 4908 (2) on page 268, DOI: 10.11646/zootaxa.4908.2.7, http://zenodo.org/record/443842
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 16S rRNA g...
FIGURE 1. Bayesian phylogenetic tree within the Hylidae family based on 12S and 16S mitochondrial DN...
FIGURE 1. The maximum parsimony tree based on partial 12S and 16S genes. This is one of six most par...
FIGURE 2. Phylogeny of Raorchestes based on mitochondrial 16S rRNA and ND1 genes. Nodal support valu...
FIGURE 2. Phylogram of Raorchestes derived from analyses of concatenated DNA fragments of the mitoch...
FIGURE 2. Fifty-percent majority rule consensus phylogram using Bayesian inference for the Amolops m...
FIGURE 2. Bayesian phylogram of Leptolalax inferred from a 511 bp fragment of the 16S mtDNA gene. "*...
FIGURE 2. Bayesian phylogenetic tree of the genus Nidirana inferred from a fragment of COI gene. "-"...
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 12S rRNA a...
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 16S rRNA a...
FIGURE 2. Bayesian inference and maximum-likelihood phylogenies. Numbers above branches indicate Bay...
Figure 2 - Bayesian phylogram of Kurixalus inferred from 870 bp of 16S rRNA gene. Numbers...
FIGURE 2. Bayesian inference tree of 60 species of Boulenophrys, based on the partial DNA sequences ...
FIGURE 2. Bayesian inference (BI) tree derived from partial sequences of the mitochondrial 16S rRNA ...
Figure 2 Bayesian phylogram of Gracixalus inferred from 543 bp of 16S rRNA gene. Numbers above and b...
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 16S rRNA g...
FIGURE 1. Bayesian phylogenetic tree within the Hylidae family based on 12S and 16S mitochondrial DN...
FIGURE 1. The maximum parsimony tree based on partial 12S and 16S genes. This is one of six most par...
FIGURE 2. Phylogeny of Raorchestes based on mitochondrial 16S rRNA and ND1 genes. Nodal support valu...
FIGURE 2. Phylogram of Raorchestes derived from analyses of concatenated DNA fragments of the mitoch...
FIGURE 2. Fifty-percent majority rule consensus phylogram using Bayesian inference for the Amolops m...
FIGURE 2. Bayesian phylogram of Leptolalax inferred from a 511 bp fragment of the 16S mtDNA gene. "*...
FIGURE 2. Bayesian phylogenetic tree of the genus Nidirana inferred from a fragment of COI gene. "-"...
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 12S rRNA a...
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 16S rRNA a...
FIGURE 2. Bayesian inference and maximum-likelihood phylogenies. Numbers above branches indicate Bay...
Figure 2 - Bayesian phylogram of Kurixalus inferred from 870 bp of 16S rRNA gene. Numbers...
FIGURE 2. Bayesian inference tree of 60 species of Boulenophrys, based on the partial DNA sequences ...
FIGURE 2. Bayesian inference (BI) tree derived from partial sequences of the mitochondrial 16S rRNA ...
Figure 2 Bayesian phylogram of Gracixalus inferred from 543 bp of 16S rRNA gene. Numbers above and b...
FIGURE 2. Bayesian inference tree derived from partial DNA sequences of the mitochondrial 16S rRNA g...
FIGURE 1. Bayesian phylogenetic tree within the Hylidae family based on 12S and 16S mitochondrial DN...
FIGURE 1. The maximum parsimony tree based on partial 12S and 16S genes. This is one of six most par...