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61 results for “Bythinella”
Figure 3. Haplotype networks for cytochrome oxidase I in Bythinella Moquin-Tandon, 1856 (Gastropoda: Rissooidea: Bythinellidae) in Romania: species richness in a glacial refugium
Figure 3. Haplotype networks for cytochrome oxidase I (COI), computed with TCS 1.21; square and ellipse size reflects haplotype frequency; connection limit excluding homoplastic changes was set to 95% (hence excluding some haplotypes from network); haplotypes in squares have biggest outgroup weights.
Figure 1 in Bythinella Moquin-Tandon, 1856 (Gastropoda: Rissooidea: Bythinellidae) in Romania: species richness in a glacial refugium
Figure 1. Sampling localities of Bythinella in Romania. Figure produced using Cartografx Professional Software.
Figure 2. Bayesian phylogram computed for cytochrome oxidase I in Bythinella Moquin-Tandon, 1856 (Gastropoda: Rissooidea: Bythinellidae) in Romania: species richness in a glacial refugium
Figure 2. Bayesian phylogram computed for cytochrome oxidase I (COI) sequences with MRBAYES, Bayesian probabilities for branches are given.
Fig. 2 in Malacological mapping in Austria distribution of the Austrian spring snail Bythinella austriaca (v. F , 1857) in the federal state of Salzburg
Fig. 2: Distribution map of B. austriaca for the federal state of Salzburg. The results presented here are based upon local abundances of the gastropod published in literature and detected during own faunistic mapping campaigns.
Fig. 3 in Malacological mapping in Austria distribution of the Austrian spring snail Bythinella austriaca (v. F , 1857) in the federal state of Salzburg
Fig. 3: Main biotopes colonized by the Austrian spring snail and their statistical evaluations. As can be clearly recognized from the graph, highest probabilities of occurrence and related population densities could be determined for spring brooks, followed by ponds, larger brooks, moors, and intermediately sized lakes.
FIGURE 5 in Identifying species of Bythinella (Caenogastropoda: Rissooidea): A plea for an integrative approach
FIGURE 5. Plot of canonical variates analysis. Locality names represent populations of B. opaca.
Figure 1 in Bythinella charpentieri (Roth, 1855), found again after 165 years (Mollusca: Gastropoda: Bythinellidae)
Figure 1. Bythinella charpentieri from the type locality. Abbreviations: e: eye, p: penis, pa: penial appendix, s: snout, su: sucker, tg: tubular gland.
Figure 3. The hitherto known Bythinella spp. from Peloponnese Peninsula. 1 in Some new Bythinella spp. from southern Greece (Gastropoda: Bythinellidae)
Figure 3. The hitherto known Bythinella spp. from Peloponnese Peninsula. 1: Bythinella kwanti Glöer & Reuselaars, 2020, 2: B. atypicos Reischütz et al., 2008, 3: B. petrosensis Glöer & Reuselaars, 2020, 4: B. liandinaensis Glöer & Reuselaars, 2020, 5: B. beckmanni Reischütz et al., 2008.
Figure 6 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 6 - Bythinella species from western Anatolia: a Bythinella anatolica sp. n. b Bythinella istanbulensis sp. n. c Bythinella magdalenae sp. n. d Bythinella wilkei sp. n.
Figure 3 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 3 - Shell and anatomy of Bythinella istanbulensis sp. n.: a shell b male head and penis in natural position c penis d female genitalia. Scale bars = 1 mm.
Figure 5 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 5 - Shell and anatomy of Bythinella wilkei sp. n.: a shell b male head and penis in natural position c penis d female genitalia. Scale bars = 1 mm.
Figure 2 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 2 - Shell and anatomy of Bythinella anatolica sp. n.: a shell b, c, d male head and various positions of penis e, f, g penes h female genitalia. Scale bars = 1 mm.
Figure 4 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 4 - Shell and anatomy of Bythinella magdalenae sp. n.: a shell b male head and penis in natural position c penis d female genitalia. Scale bars = 1 mm.
Figure 1 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 1 - Shell and anatomy of a Bythinella species (Bythinella anatolica sp. n.). Scale bars = 1 mm.
Figure 7 from: Yıldırım MZ, Kebapçı Ü, Bahadır Koca S, Yüce A (2015) New Bythinella (Gastropoda, Bythinellidae) species from western Turkey. ZooKeys 481: 1-13. https://doi.org/10.3897/zookeys.481.8225
Figure 7 - Map showing the locations of Bythinella species in Turkey and the Eastern Aegean Islands: Bythinella anatolica sp. n. (black triangle), Bythinella istanbulensis sp. n. (closed square), Bythinella kazdaghensis (diamond), Bythinella kosensis (asterix), Bythinella magdalenae sp. n. (closed circle), Bythinella occasiuncula (open circle), Bythinella turca (open triangle), Bythinella wilkei sp. n. (open square).
Figure 6 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 6 - The maximum-likelihood phylogram for the ITS-1 gene. Haplotypes obtained in present work are shown in bold. The COI clades are also shown.
Figure 5 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 5 - The median-joining haplotype network of COI haplotypes for clades I, II and III. Sequences from Falniowski et al. 2009a and Falniowski et al. 2012 are also included. Arrows and the letter C indicate cave haplotypes.
Figure 2 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 2 - Shells of Bythinella. A locality B1 B–C locality B7 D–F locality B5 G–Q locality B10; bar equals 1 mm.
Figure 1 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 1 - Sampling sites used in the present study (red dots) and in phylogenetic analyses (blue dots: Falniowski et al. 2009a; green dots: Falniowski et al 2012). Compare with Table 1. The dotted line indicates an area that was searched but where no Bythinella sites were found.
Figure 3 from: Osikowski A, Georgiev D, Hofman S, Falniowski A (2015) Does the genetic structure of spring snail Bythinella (Caenogastropoda, Truncatelloidea) in Bulgaria reflect geological history? ZooKeys 518: 67-86. https://doi.org/10.3897/zookeys.518.10035
Figure 3 - The maximum-likelihood phylogram for COI gene. Haplotypes obtained in present work are indicated in bold. Arrows and the letter C indicate cave haplotypes.
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