Figure 1: Explanation note: Bayesian inference of partial (domains 1–3) 28S rDNA sequences of the complete taxon set of proteocephalideans performed using MrBayes version 3.1 using the GTR + I + G model of sequence evolution. Two parallel runs were performed for 10,000,000 generations; 8,000,000 generations were discarded as burnin. Branches with posterior probability (pp) support below 95% are collapsed; pp are indicated below branches
Phylogenetic relationships among the 14 major lineages of tapeworms (Platyhelminthes: Cestoidea) wer...
Fig. 2. Proteocephalus sagittus (Grimm, 1872) from Barbatula barbatula, Czech Republic (IPCAS C-33/1...
Mitochondrial 3-gene phylogram of genus Laparocerus Schönherr, 1834 from Macaronesia (Coleoptera, Cu...
Table 1: Explanation note: Leaf stability test results from the post-burnin posterior tree distribut...
Proteocephalidean tapeworms form a diverse group of parasites currently known from 315 valid species...
FIGURE 1. Phylogenetic relationships of tapeworms of the subfamily Acanthotaeniinae (Cestoda: Proteo...
Fig. 1. Bayesian analysis of the concatenated 4-gene alignment (ssrDNA, lsrDNA, rrnL, cox1) construc...
FIGURE 2. Maximum likelihood single-gene phylogenies of Kapsulotaenia based on cox1 (above) and lsrD...
Proteocephalidean tapeworms form a diverse group of parasites currently known from 315 valid species...
Figure 2. Phylogenetic interrelationships of basal groups of Onchoproteocephalidea with focus on the...
Figure 1. Phylogenetic interrelationships of basal groups of Onchoproteocephalidea with focus on the...
FIGURE 5. Kapsulotaenia varia (Beddard, 1913) from Varanus varius, Australia (new material Aus137—A,...
Figure S2. Majority rule consensus tree from a Bayesian analysis of lucifrons group relationships ba...
Figure S1. Majority rule consensus tree from a Bayesian analysis of lucifrons group relationships ba...
Phylogenetic tree of 16S-rDNA : Explanation note: Maximum likelihood (ML) tree based on mitoch...
Phylogenetic relationships among the 14 major lineages of tapeworms (Platyhelminthes: Cestoidea) wer...
Fig. 2. Proteocephalus sagittus (Grimm, 1872) from Barbatula barbatula, Czech Republic (IPCAS C-33/1...
Mitochondrial 3-gene phylogram of genus Laparocerus Schönherr, 1834 from Macaronesia (Coleoptera, Cu...
Table 1: Explanation note: Leaf stability test results from the post-burnin posterior tree distribut...
Proteocephalidean tapeworms form a diverse group of parasites currently known from 315 valid species...
FIGURE 1. Phylogenetic relationships of tapeworms of the subfamily Acanthotaeniinae (Cestoda: Proteo...
Fig. 1. Bayesian analysis of the concatenated 4-gene alignment (ssrDNA, lsrDNA, rrnL, cox1) construc...
FIGURE 2. Maximum likelihood single-gene phylogenies of Kapsulotaenia based on cox1 (above) and lsrD...
Proteocephalidean tapeworms form a diverse group of parasites currently known from 315 valid species...
Figure 2. Phylogenetic interrelationships of basal groups of Onchoproteocephalidea with focus on the...
Figure 1. Phylogenetic interrelationships of basal groups of Onchoproteocephalidea with focus on the...
FIGURE 5. Kapsulotaenia varia (Beddard, 1913) from Varanus varius, Australia (new material Aus137—A,...
Figure S2. Majority rule consensus tree from a Bayesian analysis of lucifrons group relationships ba...
Figure S1. Majority rule consensus tree from a Bayesian analysis of lucifrons group relationships ba...
Phylogenetic tree of 16S-rDNA : Explanation note: Maximum likelihood (ML) tree based on mitoch...
Phylogenetic relationships among the 14 major lineages of tapeworms (Platyhelminthes: Cestoidea) wer...
Fig. 2. Proteocephalus sagittus (Grimm, 1872) from Barbatula barbatula, Czech Republic (IPCAS C-33/1...
Mitochondrial 3-gene phylogram of genus Laparocerus Schönherr, 1834 from Macaronesia (Coleoptera, Cu...