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704 results for “Malacostraca”
Figure 11 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 11 ACirolana yucatana cephalon BC. yucatana pereopod II CC. yucatana pleotelson and uropods. Drawings were adapted from Botosaneanu & Iliffe 2000.
Figure 10 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 10 ACirolana yunca cephalon with rostrum BC. yunca nails of pereopod III dactylus (adapted from Botosaneanu & Iliffe 2000) CC. yunca pleotelson and uropods.
Figure 18 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 18 ATuluweckelia cernua anterior body part BT. cernua gnathopod 2, schematic drawing (Mer = merus, Car = carpus, Pr = propodus, C = coxa) CT. cernua uropod III.
Figure 22 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 22 ATyphlatya dzilamensis rostrum and eyestalks BT. dzilamensis pereopod III schematic drawing CT. dzilamensis carapace and abdomen schematic drawing.
Figure 13 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 13 AHaptolana bowmani cephalon with rostrum BH. bowmani pereopod III CH. bowmani pleotelson and uropods. Drawings were adapted from Botosaneanu & Iliffe 1997.
Figure 17 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 17 AMayaweckelia troglomorpha notched spine teeth of gnathopod 1 propodus BM. troglomorpha gnathopod 1 schematic drawing (Ish = ischium, Mer = merus, Car = carpus, Pr = propodus) CM. troglomorpha epimeral plates 1-3 (Ep = epimeral plates).
Figure 5 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 5 AStygiomysis cokei carapace with appendages BS. cokei telson CS. cokei uropod protopodal process.
Figure 9 from: Angyal D, Simões N, Mascaró M (2020) Uptaded checklist, historical overview and illustrated guide to the stygobiont Malacostraca (Arthropoda: Crustacea) species of Yucatan (Mexico). Subterranean Biology 36: 83-108. https://doi.org/10.3897/subtbiol.36.53558
Figure 9 ACurassanthura yucatanensis habitus BC. yucatanensis propodus of pereopod I CC. yucatanensis pleonites. Drawings were adatpted from Álvarez et al. 2019.
Data from: Tetraconatan phylogeny with special focus on Malacostraca and Branchiopoda—Highlighting the strength of taxon-specific matrices in phylogenomics
Understanding the evolution of Tetraconata or Pancrustacea —the clade that includes crustaceans and insects—requires a well-resolved hypothesis regarding the relationships within and among its constituent taxa. Herein, we assembled a taxon-rich phylogenomic data set focusing on crustacean lineages based solely on genomes and new-generation Illumina-generated transcriptomes, including 89 representatives of Tetraconata. This constitutes the first phylogenomic study specifically addressing internal relationships of Malacostraca (with 26 species included) and Branchiopoda (36 species). Seven matrices comprising 81 to 684 orthogroups and 17,690 to 242,530 amino acid positions were assembled and analysed under five different analytical approaches. To maximize gene occupancy and to improve resolution, taxon-specific matrices were designed for Malacostraca and Branchiopoda. Key tetraconatan taxa (i.e., Oligostraca, Multicrustacea, Branchiopoda, Malacostraca, Thecostraca, Copepoda, Hexapoda) were monophyletic and well supported. Within Branchiopoda Phyllopoda, Diplostraca, Cladoceromorpha and Cladocera were monophyletic. Within Malacostraca the clades Eumalacostraca, Decapoda and Reptantia were well supported. Recovery of Caridoida or Peracarida was highly depending on the analysis for the complete matrix but were consistently recovered monophyletic in the malacostracan-specific matrix. From such examples, we demonstrate that taxon-specific matrices and particular evolutionary models and analytical methods, namely CAT-GTR and Dayhoff recoding, outperform other approaches in resolving certain recalcitrant nodes in phylogenomic analyses.
FIGURE 8 in New Cumacea species (Malacostraca, Peracarida) from the deepwater area of the Sea of Japan (Collections of the 52 Cruise by the R / V « Vityaz », 1972)
FIGURE 8. Campylaspis pisum sp. nov. A — maxilliped III; B — pereopod I; C — pereopod II.
FIGURE 6 in New Cumacea species (Malacostraca, Peracarida) from the deepwater area of the Sea of Japan (Collections of the 52 Cruise by the R / V « Vityaz », 1972)
FIGURE 6. Eudorella bathyalis sp. nov. A — maxilliped III; B — pereopod I; C —telson and uropod.
FIGURE 15 in New deepsea species of Macrostylidae (Asellota: Isopoda: Malacostraca) from the Angola Basin off Namibia, South West Africa
FIGURE 15. Macrostylis abyssalis sp. nov. paratype Ψ (2 mm), pereopods 3–7, pleopods 3–5, uropod.
FIGURE 17 in New deepsea species of Macrostylidae (Asellota: Isopoda: Malacostraca) from the Angola Basin off Namibia, South West Africa
FIGURE 17. Macrostylis longispinis sp. nov. holotype ɗ (2.5 mm), pereopods 1–6.
FIGURE 10 in New deepsea species of Macrostylidae (Asellota: Isopoda: Malacostraca) from the Angola Basin off Namibia, South West Africa
FIGURE 10. Macrostylis angolensis sp. nov., holotype Ψ (2.2 mm), pereopods 1, 2, 5, 6.
FIGURE 7 in New deepsea species of Macrostylidae (Asellota: Isopoda: Malacostraca) from the Angola Basin off Namibia, South West Africa
FIGURE 7. Macrostylis longipedis sp. nov., holotype ɗ (2.5 mm), pereopods 1–5.
FIGURE 5 in New deepsea species of Macrostylidae (Asellota: Isopoda: Malacostraca) from the Angola Basin off Namibia, South West Africa
FIGURE 5. Macrostylis robusta sp. nov., paratype Ψ (3.1.mm), pereopods 3, 6, 7.
FIGURE 2 in New deepsea species of Macrostylidae (Asellota: Isopoda: Malacostraca) from the Angola Basin off Namibia, South West Africa
FIGURE 2. Macrostylis robusta sp. nov., holotype (2.3 mm), pereopods 2–6.
FIGURE 7 in Apseudomorpha (Malacostraca: Tanaidacea) of the ANDEEP III Antarctic Expedition
FIGURE 7. Langapseudes sp. Male. A, Body dorsal view; B, Body lateral view. Scale line = 5 mm
FIGURE 23. Habrobathynella vidua n in A taxonomic revision of the genus Habrobathynella Schminke, 1973, with the description of four new species from southeastern India (Crustacea, Malacostraca, Bathynellacea)
FIGURE 23. Habrobathynella vidua n. sp., holotype female. (a–e) Th. I–V.
FIGURE 24. Habrobathynella vidua n in A taxonomic revision of the genus Habrobathynella Schminke, 1973, with the description of four new species from southeastern India (Crustacea, Malacostraca, Bathynellacea)
FIGURE 24. Habrobathynella vidua n. sp., holotype female. (a–b) Th. VI–VII.
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