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Dataset results
18 results for “Rhinonycteridae”
On following pages 3 Yemen Tr dent Bat (Traenops parvus), 4 Alf can Tndent Bet (Tnaenops efer) 5 Rufous Tr dent Bat (Trıaenops menamena) 6 Percve sTndent Bat (C/oeots perc val) 7 Grand d er sTndent Bat (Pararnaenops auntus). 8 Trouessarfs Tr dent Bat (Paratr aenops furcula). 9 Paul an s Tr dent Bat (Pararnaenops pau am) in Rhinonycteridae
On following pages 3 Yemen Tr dent Bat (Traenops parvus), 4 Alf can Tndent Bet (Tnaenops efer) 5 Rufous Tr dent Bat (Trıaenops menamena) 6 Percve sTndent Bat (C/oeots perc val) 7 Grand d er sTndent Bat (Pararnaenops auntus). 8 Trouessarfs Tr dent Bat (Paratr aenops furcula). 9 Paul an s Tr dent Bat (Pararnaenops pau am)
Distribution. Endemic to Madagascar, where it occurs at elevations of 50-200 m in the most exueme N; S distributional limits lie at c. 14 S between Ambilobe and Antsohihy. in Rhinonycteridae
Distribution. Endemic to Madagascar, where it occurs at elevations of 50-200 m in the most exueme N; S distributional limits lie at c. 14 S between Ambilobe and Antsohihy.
Distribution. SE Kenya, Mafia I (Tanzania), SE DR Congo, Zambia, Mozambique, Zimbabue, SE Botswana, NE South Africa, and Swaziland. in Rhinonycteridae
Distribution. SE Kenya, Mafia I (Tanzania), SE DR Congo, Zambia, Mozambique, Zimbabue, SE Botswana, NE South Africa, and Swaziland.
Distribution. Endemic to Madagascar, mostly in lower and drier W part but occasionally reported from Northern, Central, and Southern Highlands. in Rhinonycteridae
Distribution. Endemic to Madagascar, mostly in lower and drier W part but occasionally reported from Northern, Central, and Southern Highlands.
Distribution. Found in two disjunct regions: largest part in savanna belt of East Africa from Ethiopia, Djibouti, and Somalia S through Kenya, Tanzania (including Pemba and Unguja in Zanzibar Archipelago), extreme SE Zambia, and E Zimbabwe to C Mozambique, with W stretch to E Central African Republic and NE DR Congo; smallest part includes SW Republic of the Congo and extreme NW Angola. in Rhinonycteridae
Distribution. Found in two disjunct regions: largest part in savanna belt of East Africa from Ethiopia, Djibouti, and Somalia S through Kenya, Tanzania (including Pemba and Unguja in Zanzibar Archipelago), extreme SE Zambia, and E Zimbabwe to C Mozambique, with W stretch to E Central African Republic and NE DR Congo; smallest part includes SW Republic of the Congo and extreme NW Angola.
Distribution. Endemic to a belt of c 300 km along coast of S Arabia; known from three sites in EYemen and one site in SW Oman. in Rhinonycteridae
Distribution. Endemic to a belt of c 300 km along coast of S Arabia; known from three sites in EYemen and one site in SW Oman.
Distribution. Narrow belt along W 8c S in Rhinonycteridae
Distribution. Narrow belt along W 8c S coast ofYemen, SW 8c NE Oman, E United Arab Emirates, S lran, and S Pakistan.
Distribution. Endemic to Australia, in two di ¶ unct regions separated by Great Sandy Desert: W region is smallcst and comprises the W part of Pilbara region of Westem Australia, and E region largest and includes NE Western Australia (Kimberley region), N Northern Territory, and NW Queensland. in Rhinonycteridae
Distribution. Endemic to Australia, in two di ¶ unct regions separated by Great Sandy Desert: W region is smallcst and comprises the W part of Pilbara region of Westem Australia, and E region largest and includes NE Western Australia (Kimberley region), N Northern Territory, and NW Queensland.
Figure 6 in Genetic, morphological and acoustic differentiation of African trident bats (Rhinonycteridae: Triaenops)
Figure 6. Principal components analysis based on call frequencies of recorded Triaenops individuals (EndF, minimum frequency; FME, peak frequency; StartF, maximum frequency) and grouped by counties. Triaenops afer (Kilifi, Kwale and Laikipia) and Triaenops afer* (Nakuru). The first two principal components (PCs) account for 99.8% of the variation.
Figure 2 in Genetic, morphological and acoustic differentiation of African trident bats (Rhinonycteridae: Triaenops)
Figure 2. Maximum likelihood phylogeny of mitochondrial cytochrome b sequences of Rhinonycteridae. The phylogeny was inferred in IQ-TREE, and its topology was similar to the Bayesian phylogeny calculated in MRBAYES. Filled red circles on nodes denote bootstrap values ≥ 70% and Bayesian posterior probabilities (PP) ≥ 0.95. Filled black circles indicate bootstrap ≥ 70% and PP <0.95. Open circles indicate bootstrap <70% and PP ≥ 0.95. Unmarked nodes indicate bootstrap <70% and PP <0.95.
Figure 5 in Genetic, morphological and acoustic differentiation of African trident bats (Rhinonycteridae: Triaenops)
Figure 5. Linear discriminant function axes (DF1 and DF2) of craniodental and mandibular variables performed for all Triaenops samples after cross-validation tests. The density plot for the first and the second linear discriminants (LD1 and LD2, respectively) are presented on the right.
Figure 1 in Genetic, morphological and acoustic differentiation of African trident bats (Rhinonycteridae: Triaenops)
Figure 1. Distribution of genetic samples used in this study: inverted triangles, Paratriaenops auritus; triangles, Paratriaenops furcula; open squares, Triaenops afer; asterisk, Triaenops afer*; black circles, Triaenops menamena; blue circles, Triaenops parvus; open stars, Triaenops persicus.
Figure 4 in Genetic, morphological and acoustic differentiation of African trident bats (Rhinonycteridae: Triaenops)
Figure 4. Bayesian phylogeny of Rhinonycteridae based on four nuclear introns. The phylogeny was inferred in MRBAYES, and its topology closely resembled the maximum likelihood phylogeny calculated in IQ-TREE. Filled red circles on nodes denote bootstrap bootstrap values ≥ 70% and Bayesian posterior probabilities (PP) ≥ 0.95. Filled black circles indicate bootstrap ≥ 70% and PP <0.95. Open circles indicate bootstrap <70% and PP ≥ 0.95. Unmarked nodes indicate bootstrap <70% and PP <0.95.
Figure 3 in Genetic, morphological and acoustic differentiation of African trident bats (Rhinonycteridae: Triaenops)
Figure 3. Substitution network plot for Cytb inferred in POPART v.1.7 for Triaenops afer, Triaenops afer*, Triaenops parvus and Triaenops persicus.
Distribution. Known only from Picard Aldabra Atoll, Western Seychelles. in Rhinonycteridae
Distribution. Known only from Picard Aldabra Atoll, Western Seychelles.
Distribution. Endemic to Madagascar, where occurs in a narrow belt along most of W coast. in Rhinonycteridae
Distribution. Endemic to Madagascar, where occurs in a narrow belt along most of W coast.
• Afrotropical, Australasian, and marginally Palearctic Regions. in Rhinonycteridae
• Afrotropical, Australasian, and marginally Palearctic Regions.
• 6-12 cm. in Rhinonycteridae
• 6-12 cm.
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