FIGURE 4. Phylogenetic tree for 6 selected stomatopod species of the family Nannosquillidae, with Squilla mantis (Squillidae) used as outgroup, obtained by Maximum Likelihood analysis of 16S rRNA sequences (GTR+I+Γ substitution model); bootstrap probability values shown in nodes.Published as part of Ďuriš, Zdeněk, 2018, Madeirasquilla tuerkayi, a new genus and species of mantis shrimps from Madeira Island, eastern Atlantic (Crustacea: Stomatopoda: Nannosquillidae), pp. 553-562 in Zootaxa 4399 (4) on page 560, DOI: 10.11646/zootaxa.4399.4.5, http://zenodo.org/record/120687
FIGURE 4. The 50% majority-rule consensus tree from the Bayesian analysis of the partial cytochrome ...
FIGURE 9. Maximum Likelihood (ML) tree, showing relationships among five species of Eumunida, based ...
FIGURE 1. Phylogenetic consensus tree among hermit crab species obtained from sequences of 16S rRNA,...
FIGURE 1. Madeirasquilla tuerkayi gen. et sp. nov., holotype, male. A, anterior part of body, dorsal...
FIGURE 2. Madeirasquilla tuerkayi gen. et sp. nov., holotype, male. A, telson, lateral aspect (right...
FIGURE 4. Phylogenetic tree of genus Lysmata (Risso, 1816), including Lysmata lipkei Okuno & Fiedler...
FIGURE 3. Colour patterns of Madeirasquilla tuerkayi gen. et sp. nov. (A, B), and Platysquilla euseb...
FIGURE 4. Left: Phylogenetic tree obtained from maximum likelihood analysis (ML) of 16S sequences of...
FIGURE 8. Phylogenetic tree for four species of Metabetaeus and Salmoneus aduncus Komai, 2022 used a...
FIGURE 7. The phylogenetic tree topology for Urocaridella arabianensis n. sp. with congener species ...
FIGURE 8. The phylogenetic tree topology for Urocaridella arabianensis n. sp. with congener species ...
Figure 2. Maximum likelihood phylogenetic tree topology derived from the combined 16S rRNA + COI seq...
Fig. 2. Bayesian inference phylogenetic tree of the species studied. Numbers above branches are Baye...
FIGURE 4. Neighbour-joining (NJ) tree based on 16S rRNA sequences. The bootstrap values are NJ/ML at...
FIGURE 3. Phylogenetic tree obtained with Bayesian (consensus) and Maximum Likelihood methods. Paren...
FIGURE 4. The 50% majority-rule consensus tree from the Bayesian analysis of the partial cytochrome ...
FIGURE 9. Maximum Likelihood (ML) tree, showing relationships among five species of Eumunida, based ...
FIGURE 1. Phylogenetic consensus tree among hermit crab species obtained from sequences of 16S rRNA,...
FIGURE 1. Madeirasquilla tuerkayi gen. et sp. nov., holotype, male. A, anterior part of body, dorsal...
FIGURE 2. Madeirasquilla tuerkayi gen. et sp. nov., holotype, male. A, telson, lateral aspect (right...
FIGURE 4. Phylogenetic tree of genus Lysmata (Risso, 1816), including Lysmata lipkei Okuno & Fiedler...
FIGURE 3. Colour patterns of Madeirasquilla tuerkayi gen. et sp. nov. (A, B), and Platysquilla euseb...
FIGURE 4. Left: Phylogenetic tree obtained from maximum likelihood analysis (ML) of 16S sequences of...
FIGURE 8. Phylogenetic tree for four species of Metabetaeus and Salmoneus aduncus Komai, 2022 used a...
FIGURE 7. The phylogenetic tree topology for Urocaridella arabianensis n. sp. with congener species ...
FIGURE 8. The phylogenetic tree topology for Urocaridella arabianensis n. sp. with congener species ...
Figure 2. Maximum likelihood phylogenetic tree topology derived from the combined 16S rRNA + COI seq...
Fig. 2. Bayesian inference phylogenetic tree of the species studied. Numbers above branches are Baye...
FIGURE 4. Neighbour-joining (NJ) tree based on 16S rRNA sequences. The bootstrap values are NJ/ML at...
FIGURE 3. Phylogenetic tree obtained with Bayesian (consensus) and Maximum Likelihood methods. Paren...
FIGURE 4. The 50% majority-rule consensus tree from the Bayesian analysis of the partial cytochrome ...
FIGURE 9. Maximum Likelihood (ML) tree, showing relationships among five species of Eumunida, based ...
FIGURE 1. Phylogenetic consensus tree among hermit crab species obtained from sequences of 16S rRNA,...