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35 results for “Groundwater Isopoda”
Fig. 6. A. A in A second species of Stenasellus Dollfus, 1897 (Isopoda, Stenasellidae) from sulfidic groundwater of Iran described using morphological and molecular methods
Fig. 6. A. A four-gene (COI, 16S, 28S and FASTKD4) dated phylogeny of Stenasellidae Dudich, 1924 extracted from the World Aselloidea Phylogeny of Saclier et al. (2024). Terminal nodes are molecular operational taxonomic units (MOTUs) as delimited with the fixed COI threshold method implemented by Lefébure et al. (2006). MOTU numbers are given in parenthesis. Names of genera as follows: B: Balkanostenasellus Cvetkov, 1975; M: Magniezia Lanza, 1966; P: Protelsonia Méhely, 1924; S: Stenasellus Dollfus, 1897. All branches leading to Asellidae Latreille, 1802 (i.e., 384 MOTUs) were collapsed. Blue dots show two of the 17 paleobiogeographic calibration points used to obtain a dated phylogeny of Aselloidea Latreille, 1802. Point 16: divergence time between Stenasellidae and Asellidae (139 Ma; 95% credibility interval: 174–106 Ma); point 17: divergence time between Sardinian species of the S. racovitzai species complex (MOTUs 23 and 46) and their continental relatives in France (25 Ma; 95% credibility interval: 31–19 Ma) (15 other calibration points within Asellidae are not shown). pp are posterior probabilities. B. Map showing the distribution of MOTU occurrence. MOTU numbers as in panel A.
Fig. 3 in A second species of Stenasellus Dollfus, 1897 (Isopoda, Stenasellidae) from sulfidic groundwater of Iran described using morphological and molecular methods
Fig. 3. Stenasellus stygopersicus Jugovic, Malek-Hosseini & Issartel sp. nov., holotype, ♂ (UCBLZ 2012.11.24.80, body length = 11.8 mm). A. Body. B. Antennula. C. Antenna. D. Left mandible. E. Left maxillula. F. Left maxilla. G. Left maxilliped.
Fig. 2. A in A second species of Stenasellus Dollfus, 1897 (Isopoda, Stenasellidae) from sulfidic groundwater of Iran described using morphological and molecular methods
Fig. 2. A. Five specimens of Stenasellus stygopersicus Jugovic, Malek-Hosseini & Issartel sp. nov. in sulfidic water of Chah Kabootari Cave, Iran. B. A specimen of S. tashanicus Khalaji-Pirbalouty, Fatemi, Malek-Hosseini & Kuntner, 2018 in Tashan Cave, Iran. C. Another specimen of S. tashanicus, hanging on the white biofilm floating at the surface of sulfidic water in Tashan Cave, Iran.
Fig. 1 in A second species of Stenasellus Dollfus, 1897 (Isopoda, Stenasellidae) from sulfidic groundwater of Iran described using morphological and molecular methods
Fig. 1. Occurrence of genera of Stenasellidae Dudich, 1924 in Europe, Africa and Asia (occurrence data extracted from the World Asellidae Database, Saclier et al. 2024). The inset shows the location of Chah Kabootari Cave and Tashan Cave in which Stenasellus stygopersicus Jugovic, Malek-Hosseini & Issartel sp. nov. and S. tashanicus Khalaji-Pirbalouty, Fatemi, Malek-Hosseini & Kuntner, 2018 were collected, respectively. Linear distance between the two caves is 1 km.
Fig. 5 in A second species of Stenasellus Dollfus, 1897 (Isopoda, Stenasellidae) from sulfidic groundwater of Iran described using morphological and molecular methods
Fig. 5. Stenasellus stygopersicus Jugovic, Malek-Hosseini & Issartel sp. nov. A–G. Holotype, ♂ (UCBLZ 2012.11.24.80, body length = 11.8 mm). A. Penial processus. B. First left pleopod. C. Second left pleopod. D. Third left pleopod. E. Fourth left pleopod. F. Fifth left pleopod. G. Left uropod. H. Paratype, ♀ (UCBLZ 2012.11.24.87, body length = 22.5 mm), left second pleopod.
Fig. 4 in A second species of Stenasellus Dollfus, 1897 (Isopoda, Stenasellidae) from sulfidic groundwater of Iran described using morphological and molecular methods
Fig. 4. Stenasellus stygopersicus Jugovic, Malek-Hosseini & Issartel sp. nov. A–D. Holotype, ♂ (UCBLZ 2012.11.24.80, body length = 11.8 mm). A. First left pereopod. B. Second left pereopod. C. Third left pereopod. D. Pleotelson. E. Paratype, ♂ (UCBLZ 2012.11.24.84, body length = 11.6 mm), seventh right pereopod.
FIGURE 8 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 8. Haptolana yarraloola sp. nov. Male paratype 4.6 mm, WAM C39324. A–D, pleopods 1–3, 5 respectively; E, uropod; F, uropodal rami apices.
FIGURE 4 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 4. Kagalana tonde sp. nov. Male paratype, 2.5 mm, WAM C39309. A–E, pleopods 1–5 respectively; F, uropod; G, pleopod 2, peduncle mesial margin.
FIGURE 1 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 1. Kagalana tonde sp. nov. A–F, holotype, G, H, male paratype, 2.5 mm, WAM C39309. A, dorsal view; B, lateral view; C, dorsal view, head and pereonite 1; D, pleonites lateral margins; E, sternite 7, showing penial openings; F, frons; G, antennule; H, antenna.
FIGURE 7 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 7. Haptolana yarraloola sp. nov. Male paratype 4.6 mm, WAM C39324. A, pereopod 1; B, pereopod 1, dactylus tip, detail; C, pereopod 2,, distal articles; D, pereopod 7; E, pereopod 7, propodus.
FIGURE 3 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 3. Kagalana tonde sp. nov. Male paratype, 2.5 mm, WAM C39309. A, pereopod 1; B, pereopod 1, propodus; C, pereopod 1, dactylus tip, detail; D, pereopod 2; E, pereopod 2, merus and carpus; F, pereopod 7.
FIGURE 2 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 2. Kagalana tonde sp. nov. Male paratype, 2.5 mm, WAM C39309. A right mandible; B, left mandible incisor; C, molar process; D, maxilla; E, maxillule; F, maxilliped.
FIGURE 5 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 5. Haptolana yarraloola sp. nov. A–E, holotype; F–```H, male paratype 4.6 mm, WAM C39324. A, dorsal view; B, lateral view; C, frons; D, pleonites lateral margins; E, sternite 7, showing penial openings; F, antenna; G, antennule.
FIGURE 6 in New species and a new genus of Cirolanidae (Isopoda: Cymothoida: Crustacea) from groundwater in calcretes in the Pilbarra, northern Western Australia
FIGURE 6. Haptolana yarraloola sp. nov. Male paratype 4.6 mm, WAM C39324. A left mandible; B, right mandible, distal part; C, molar process; D, maxilla; E, maxillule; F, maxilliped.
Figure 5 from: Lagnika M, Kayo RPT, Sonet G, Flot J-F, Martin P (2024) DNA taxonomy reveals high species diversity among the stygobiont genus Metastenasellus (Crustacea, Isopoda) in African groundwater. Subterranean Biology 48: 51-71. https://doi.org/10.3897/subtbiol.48.113022
Figure 5 Molecular phylogeny constructed using the maximum likelihood method and COI gene fragment of Metastenasellus specimens from Benin and Cameroon. Partitions at the right side of the figure represent the results of the species delimitation analyses with single-locus methods (ASAP, GMYC, bPTP). Numbers at nodes are ultrafast bootstrap values (BV). Nodes were considered as supported if BVs were higher or equal to 90 (Hoang et al. 2018). For the sake of clarity, BVs are not shown within MOTUs delimited by ASAP and GMYC.
Figure 4 from: Lagnika M, Kayo RPT, Sonet G, Flot J-F, Martin P (2024) DNA taxonomy reveals high species diversity among the stygobiont genus Metastenasellus (Crustacea, Isopoda) in African groundwater. Subterranean Biology 48: 51-71. https://doi.org/10.3897/subtbiol.48.113022
Figure 4 Location of the 44 stations where Metastenasellus specimens were found in Cameroon and studied for DNA taxonomy (white dots). The numbers connected to the station symbols correspond to the numbering of the different MOTUs identified in this study.
Figure 2 from: Lagnika M, Kayo RPT, Sonet G, Flot J-F, Martin P (2024) DNA taxonomy reveals high species diversity among the stygobiont genus Metastenasellus (Crustacea, Isopoda) in African groundwater. Subterranean Biology 48: 51-71. https://doi.org/10.3897/subtbiol.48.113022
Figure 2 Location of the 19 stations in the Ouémé basin (Benin) from which 57 Metastenasellus specimens were selected for DNA taxonomy. The numbers connected to the station symbols correspond to the numbering of the different MOTUs identified in this study.
Supplementary material 4 from: Malek-Hosseini MJ, Jugovic J, Fatemi Y, Kuntner M, Kostanjšek R, Douady CJ, Malard F (2022) A new obligate groundwater species of Asellus (Isopoda, Asellidae) from Iran. Subterranean Biology 42: 97-124. https://doi.org/10.3897/subtbiol.42.79447
Table S4. COI alignment
Supplementary material 6 from: Malek-Hosseini MJ, Jugovic J, Fatemi Y, Kuntner M, Kostanjšek R, Douady CJ, Malard F (2022) A new obligate groundwater species of Asellus (Isopoda, Asellidae) from Iran. Subterranean Biology 42: 97-124. https://doi.org/10.3897/subtbiol.42.79447
Table S6. Morphological comparison with other Asellus species
Supplementary material 7 from: Malek-Hosseini MJ, Jugovic J, Fatemi Y, Kuntner M, Kostanjšek R, Douady CJ, Malard F (2022) A new obligate groundwater species of Asellus (Isopoda, Asellidae) from Iran. Subterranean Biology 42: 97-124. https://doi.org/10.3897/subtbiol.42.79447
Table S7. Genetic distances among and within MOTUs
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