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77 results for “Diopsidae”
Figures 3-6 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 3-6 Teleopsis ferruginea, ♂, Lunugala 3 head, anterior view 4 thorax, dorsal view 5 abdomen, dorsal view 6 habitus, lateral view (3, 5 larger ♂, 4, 6 smaller ♂). Scale bars: 1 mm.
Figures 24-27 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 24-27 Anterior view of Teleopsis heads 24T. krombeini, ♂, holotype, Thawalamtenne 25T. maculata, ♂, paratype, Hakgala 26T. neglecta sp. nov., unknown sex, paratype, Pundaluoya 27T. sorora sp. nov., ♂, paratype, Roseneath. Scale bars: 0.5 mm.
Figure 62 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figure 62 Eye span plotted against body length for the males of the five Sri Lankan Teleopsis showing the difference in allometric slopes between the dimorphic T. sorora sp. nov., T. krombeini and T. ferruginea and the few data points for the monomorphic T. maculata and T. neglecta sp. nov.
Figures 56-61 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 56-61 Teleopsis sorora sp. nov., ♂, paratype, Udawattakele 56 epandrium with surstyli and cerci, posterior view 57 phallapodeme and aedeagus, lateral view 58 ejaculatory apodeme and sac 59 sternum 5, ventral view 60 synsternum 7+8, ventral view 61 same, details of lateral sections. Scale bars: 0.1 mm.
Figures 52-55 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 52-55 Teleopsis sorora sp. nov., ♀, paratype, Udawattakele 52 abdomen, ventral view 53 terga 8, 10 and cerci, dorsal view 54 subanal plate, ventral view 55 spermathecae. Scale bars: 0.5 mm (52); 0.1 mm (53–55).
Figure 51 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figure 51 Teleopsis sorora sp. nov., eye span plotted against body length. For comparison, the three data points for Teleopsis ferruginea are also indicated.
Figures 41-47 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 41-47 Teleopsis neglecta sp. nov., ♂, holotype, Pundaluoya 41 basal section of abdomen, ventral view 42 phallapodeme and aedeagus, lateral view 43 ejaculatory apodeme and sac 44 epandrium with surstyli and cerci, posterior view 45 sterna 4 and 5, ventral view (arrow indicating the anterior setulae of the otherwise absent sternum 6) 46 synsternum 7+8, ventral view 47 same, details of lateral sections. Scale bars: 0.2 mm (41); 0.1 mm (42–47).
Figures 48-50 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 48-50 Teleopsis sorora sp. nov. 48–49 live photographs by Pieter D.H. Prins, Udawattakele (www.inaturalist.org/observations/36624976) 50 ♂, holotype, Udawattakele, photograph Cobi Feijen. Scale bar: 1 mm.
Figures 36-40 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 36-40 Teleopsis neglecta sp. nov. 36–39 unknown sex, paratype, Pundaluoya 40 ♂, holotype, Pundaluoya 36 head and thorax, dorsal view 37 central head, anterior view 38 thorax, lateral view 39 front femur, lateral view 40 abdomen, ventral (left) and dorsolateral (right) view. Scale bars: 0.5 mm.
Figures 34- 35 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 34- 35 Teleopsis neglecta sp. nov., live photographs 34 by Amila Prasanna Sumanapala, Kalawana (www.inaturalist.org/observations/29425825) 35 by "Baeru", Sinharaja Rainforest (www.inaturalist.org/observations/45907083).
Figures 1- 2 from: Feijen HR, Feijen C (2020) A revision of the genus Teleopsis Rondani (Diptera, Diopsidae) in Sri Lanka with descriptions of two new species and a review of the other stalk-eyed flies from the island. ZooKeys 946: 113-151. https://doi.org/10.3897/zookeys.946.53108
Figures 1- 2 Teleopsis ferruginea, ♀, holotype 1 habitus, dorsal view 2 head, anterior view. Scale bars: 1 mm.
Data from: Phylogenetic utility of different types of molecular data used to infer evolutionary relationships among stalk-eyed flies (Diopsidae)
A phylogenetic hypothesis of relationships among 33 species of stalk-eyed flies was generated from a molecular data set comprised of three mitochondrial and three nuclear gene regions. A combined analysis of all the data equally weighted produced a single most parsimonious cladogram with relatively strong support at the majority of nodes. The phylogenetic utility of different classes of molecular data was also examined. In particular, using a number of different measures of utility in both a combined and separate analysis framework, we focus on the distinction between mitochondrial and nuclear genes, and faster-evolving characters and slower-evolving characters. For the first comparison, by nearly any measure of utility, the nuclear genes are substantially more informative for resolving diopsid relationships than are the mitochondrial genes. The nuclear genes exhibit less homoplasy, are less incongruent both with one another and with the combined data, and contribute more support to the combined analysis topology than the mitochondrial genes. Results from the second comparison, however, provide little evidence of a clear difference in utility. Despite indications of rapid divergence and saturation, faster-evolving characters in both the nuclear and mitochondrial data sets still provide substantial phylogenetic signal. In general, inclusion of the more rapidly evolving data consistently improves the congruence among partitions.
FIGURE 1. T in A morphological and molecular description of a new Te l e o p s i s species (Diptera: Diopsidae) from Thailand
FIGURE 1. T. thaii, habitus, specimen collected at the type locality.
FIGURE 37 in A review of Cyrtodiopsis Frey (Diptera, Diopsidae) from China
FIGURE 37. Distribution of Cyrtodiopsis yunnanensis sp. nov.
FIGURE 36 in A review of Cyrtodiopsis Frey (Diptera, Diopsidae) from China
FIGURE 36. Distribution of Cyrtodiopsis plauta Yang et Chen, 1996
FIGURE 35 in A review of Cyrtodiopsis Frey (Diptera, Diopsidae) from China
FIGURE 35. Distribution of Cyrtodiopsis pseudoconcava sp. nov.
FIGURE 34 in A review of Cyrtodiopsis Frey (Diptera, Diopsidae) from China
FIGURE 34. Distribution of Cyrtodiopsis concava Yang and Chen, 1996
Figure 29 from: Feijen HR, Feijen FAA, Feijen C, Gilles B (2021) A review of Madagopsina Feijen, Feijen & Feijen (Diptera, Diopsidae) with description of a new species, key to the species, and discussion of intrageneric relationships. ZooKeys 1057: 1-21. https://doi.org/10.3897/zookeys.1057.67433
Figure 29 Principal component analysis of wing venation morphometry for the two species of Gracilopsina and six species of Madagopsina: biplot of the first two PCA axes.
Figures 23-28 from: Feijen HR, Feijen FAA, Feijen C, Gilles B (2021) A review of Madagopsina Feijen, Feijen & Feijen (Diptera, Diopsidae) with description of a new species, key to the species, and discussion of intrageneric relationships. ZooKeys 1057: 1-21. https://doi.org/10.3897/zookeys.1057.67433
Figures 23-28 Posterior view of Madagopsina surstyli 23–25M. apollo species group 26–28M. apographica species group 23M. apollo24M. makayensis Feijen, Feijen & Feijen, sp. nov. 25M. parvapollina26M. apographica27M. freidbergi28M. tschirnhausi. Scale bar 0.1 mm (all drawn to the same scale). Figures 25–28 (Feijen et al. 2018, figures 187, 184, 186, 188).
Figures 18-22 from: Feijen HR, Feijen FAA, Feijen C, Gilles B (2021) A review of Madagopsina Feijen, Feijen & Feijen (Diptera, Diopsidae) with description of a new species, key to the species, and discussion of intrageneric relationships. ZooKeys 1057: 1-21. https://doi.org/10.3897/zookeys.1057.67433
Figures 18-22 Madagopsina makayensis Feijen, Feijen & Feijen, sp. nov., ♂, holotype, Makay 18 epandrium with surstyli and cerci, posterior view 19 surstylus, inner view 20 hypandrial clasper, lateral view 21 phallapodeme and phallus, lateral view 22 ejaculatory apodeme and sac. Scale bars: 0.5 mm (18, 21); 0.1 mm (19, 20, 22).
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