FIG. 3. Maximum likelihood tree based on CYT-B sequences and reconstructed with IQ-tree. Sequences of R. hipposideros were used as outgroups. Bootstrap support levels are explained in the box; the scale indicates nucleotide substitutions per site. Newly sequenced taxa are associated with their GenBank accession numbers (see Table 2 and Supplementary Appendix S3 for more details), while the species groups to which they belong appear to the right of the tree. The clade representing the new species (sp. nov.) is highlighted in greyPublished as part of Curran, Michael, Kopp, Mirjam, Ruedi, Manuel & Bayliss, Julian, 2022, A New Species of Horseshoe Bat (Chiroptera: Rhinolophidae) from Mount Namuli, Mozambique, pp. 18-40 in Acta Chiropterologica ...
FIG. 8. Bayesian tree based on based on 41 cyt b sequences of bats from East and Southeast Asia usin...
Figure 3. Maximum likelihood phylogeny of mitochondrial cytochrome b sequences of Vespertilionidae: ...
FIG. 6. Maximum likelihood tree based on DNA barcodes of the six currently known species in the trif...
FIG. 5. Head shape (a and b) and noseleaf (c and d) of holotypes of R. maendeleo SMF 79.643 and R. n...
FIG. 1. Regional overview (A) and zoom in of the study area on Mount Namuli (B), showing specimen co...
FIG. 7. Mandibles of the holotype of R. namuli sp. nov.Published as part of Curran, Michael, Kopp, M...
Figure 2. Bayesian tree of partial Cytb sequences, with nodal support values based on Bayesian proba...
Fig. 4 a Bayesian phylogeny of Rhinolophus based on four nuclear introns. The phylogeny was inferred...
FIG. 4. Live photographs of R. namuli sp. nov. in the field (♀, MHNG 1971.067), illustrating pelage ...
FIG. 6. Cranium in dorsoventral (top), lateral (middle) and ventrodorsal (bottom; only for MHNG 1971...
FIG. 8. Baculum of the holotype (MHNG 1971.168) of R. namuli sp. nov. in dorsal-ventral (a), ventral...
FIG. 2. PCA biplot for selected (A) craniodental and (B) external measurements. Ellipses represent 9...
Examination of historical and recent collections of small Rhinolophus bats revealed cryptic taxonomi...
FIG. 9. Echolocation callof R. namuli sp. nov. (X, MHNG 1971.067; recordedat Mount Namuli, Zambesia ...
Figure 3. Haplotype network using minimum-spanning inference method based on 667 base pairs of Cytb....
FIG. 8. Bayesian tree based on based on 41 cyt b sequences of bats from East and Southeast Asia usin...
Figure 3. Maximum likelihood phylogeny of mitochondrial cytochrome b sequences of Vespertilionidae: ...
FIG. 6. Maximum likelihood tree based on DNA barcodes of the six currently known species in the trif...
FIG. 5. Head shape (a and b) and noseleaf (c and d) of holotypes of R. maendeleo SMF 79.643 and R. n...
FIG. 1. Regional overview (A) and zoom in of the study area on Mount Namuli (B), showing specimen co...
FIG. 7. Mandibles of the holotype of R. namuli sp. nov.Published as part of Curran, Michael, Kopp, M...
Figure 2. Bayesian tree of partial Cytb sequences, with nodal support values based on Bayesian proba...
Fig. 4 a Bayesian phylogeny of Rhinolophus based on four nuclear introns. The phylogeny was inferred...
FIG. 4. Live photographs of R. namuli sp. nov. in the field (♀, MHNG 1971.067), illustrating pelage ...
FIG. 6. Cranium in dorsoventral (top), lateral (middle) and ventrodorsal (bottom; only for MHNG 1971...
FIG. 8. Baculum of the holotype (MHNG 1971.168) of R. namuli sp. nov. in dorsal-ventral (a), ventral...
FIG. 2. PCA biplot for selected (A) craniodental and (B) external measurements. Ellipses represent 9...
Examination of historical and recent collections of small Rhinolophus bats revealed cryptic taxonomi...
FIG. 9. Echolocation callof R. namuli sp. nov. (X, MHNG 1971.067; recordedat Mount Namuli, Zambesia ...
Figure 3. Haplotype network using minimum-spanning inference method based on 667 base pairs of Cytb....
FIG. 8. Bayesian tree based on based on 41 cyt b sequences of bats from East and Southeast Asia usin...
Figure 3. Maximum likelihood phylogeny of mitochondrial cytochrome b sequences of Vespertilionidae: ...
FIG. 6. Maximum likelihood tree based on DNA barcodes of the six currently known species in the trif...