FIGURE 3. Timetree of Diploglossidae based on sequences of nine genes: four mitochondrial genes (CytB, ND2, 12S rRNA, and 16S rRNA) and five nuclear genes (AMEL, BDNF, PLPR, RAG1, and ZFP36). Nodes show divergence times in millions of years. A scale bar indicates time (6 million years ago, Mya). We show Bayesian credibility ranges as gray bars at nodes.Published as part of Schools, Molly & Hedges, S. Blair, 2021, Phylogenetics, classification, and biogeography of the Neotropical forest lizards (Squamata, Diploglossidae), pp. 201-257 in Zootaxa 4974 (2) on page 211, DOI: 10.11646/zootaxa.4974.2.1, http://zenodo.org/record/477544
FIGURE 3. Phylogram based on analysis of the combined data set. Values on selected branches refer to...
Figure 1. A, molecular phylogeny from MrBayes. Node labels are posterior probability support values....
FIGURE 4. Map showing the distribution of Diploglossidae. Arrows indicate distribution (from left to...
FIGURE 4A. Timetree of Marisora using the most complete data, from two mitochondrial genes (12S rRNA...
FIGURE 2. Phylogenetic tree of diploglossid lizards based on sequences of nine genes: four mitochond...
FIGURE 1. Phylogenetic tree of lizards of the Cnemidophorus lemniscatus complex from a maximum-likel...
FIGURE 3A. Phylogenetic tree of the genus Marisora from a maximum-likelihood analysis of DNA sequenc...
Figure 4. Cladogram of the tree recovered by analysis based on 512 bp of the 16S mtDNA gene. Values ...
FIGURE 4. Strict consensus of three equally parsimonious trees of 4425 steps from the 1595 included ...
FIGURE 1. Phylogenetic tree of four species of Middle American Sphaerodactylus from a maximum-likeli...
FIGURE 3. Molecular phylogeny of the Phelsuma mutabilis group as calculated from the multi-gene data...
Figure 5 - Phylogeny of Alopoglossinae. Majority rule (50%) consensus tree of 36,000 trees obtained ...
FIGURE 8. Strict consensus of three equally parsimonious trees of 5683 steps from the combined data ...
Schools, Molly, Hedges, S. Blair (2021): Phylogenetics, classification, and biogeography of the Neot...
FIGURE 4. A timetree of Alsophiini. Divergence times and credibility/confidence intervals are shown ...
FIGURE 3. Phylogram based on analysis of the combined data set. Values on selected branches refer to...
Figure 1. A, molecular phylogeny from MrBayes. Node labels are posterior probability support values....
FIGURE 4. Map showing the distribution of Diploglossidae. Arrows indicate distribution (from left to...
FIGURE 4A. Timetree of Marisora using the most complete data, from two mitochondrial genes (12S rRNA...
FIGURE 2. Phylogenetic tree of diploglossid lizards based on sequences of nine genes: four mitochond...
FIGURE 1. Phylogenetic tree of lizards of the Cnemidophorus lemniscatus complex from a maximum-likel...
FIGURE 3A. Phylogenetic tree of the genus Marisora from a maximum-likelihood analysis of DNA sequenc...
Figure 4. Cladogram of the tree recovered by analysis based on 512 bp of the 16S mtDNA gene. Values ...
FIGURE 4. Strict consensus of three equally parsimonious trees of 4425 steps from the 1595 included ...
FIGURE 1. Phylogenetic tree of four species of Middle American Sphaerodactylus from a maximum-likeli...
FIGURE 3. Molecular phylogeny of the Phelsuma mutabilis group as calculated from the multi-gene data...
Figure 5 - Phylogeny of Alopoglossinae. Majority rule (50%) consensus tree of 36,000 trees obtained ...
FIGURE 8. Strict consensus of three equally parsimonious trees of 5683 steps from the combined data ...
Schools, Molly, Hedges, S. Blair (2021): Phylogenetics, classification, and biogeography of the Neot...
FIGURE 4. A timetree of Alsophiini. Divergence times and credibility/confidence intervals are shown ...
FIGURE 3. Phylogram based on analysis of the combined data set. Values on selected branches refer to...
Figure 1. A, molecular phylogeny from MrBayes. Node labels are posterior probability support values....
FIGURE 4. Map showing the distribution of Diploglossidae. Arrows indicate distribution (from left to...