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173 results for “quantitative morphology”
FIGURE 9 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 9. Head and mesosoma in lateral view. A: C. maintikibo (CASENT0763877). B: C. efitra (CASENT0453926).
FIGURE 8 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 8. Body in lateral view. A: C. maintikibo (CASENT0763877). B: C. efitra (CASENT0453926). C: C. grandidieri (CASENT0060136).
FIGURE 6 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 6. Head in full-face view, petiole and gastral segments in lateral view. A–B: C. madagascarensis (CASENT0125551, CASENT0101383). C-D: C. descarpentriesi (CASENT0763876).
FIGURE 5 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 5. Head and mesosoma in lateral view. A: C. madagascarensis (CASENT0125551). B: C. mita (CASENT0498906).
FIGURE 4 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 4. Body in dorsal view. A: C. madagascarensis (CASENT0125551). B: C. grandidieri (CASENT0066758).
FIGURE 3 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 3. Scatterplot of PCA analysis in shape space for the members of the C. niveosetosus species group.
FIGURE 1 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 1. Dendrogram of NC-clustering of the eight species recognized in the grandidieri and niveosetosus species groups. Color bars represent the species hypothesis generated by PART using two "hclust" and "kmeans" clustering methods. The corresponding label on the tip of the branch (the species name followed by the specimen code) are given the same color codes.
FIGURE 2 in Taxonomic revision of the Malagasy Camponotus grandidieri and niveosetosus species groups (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 2. Scatterplot of PCA analysis in shape space for the members of the C. grandidieri species group.
Quantitative morphological data on Ramomarthamyces octomerus fungi (Ascomycota)
<p><em>Ramomarthamyces octomerus</em> sp. nov. is described here. This apothecial fungus is described from specimens collected in Mediterranean climate regions in southern Portugal, Spain (Canary Islands), and the Dalmatian region of Croatia. Presumably saprobic, <em>R. octomerus </em>occurs on intact, decorticated wood of <em>Laurus novocanariensis</em> and <em>Olea europaea</em>. Ascospores are cylindric-ellipsoid and seven-septate. Surprisingly, in our four-locus phylogenetic analysis (nuSSU, ITS1-5.8S-ITS2, LSU, mtSSU), this fungus clusters among species of <em>Cyclaneusma</em>, <em>Marthamyces</em>, <em>Naemacyclus</em>, and <em>Ramomarthamyces </em>in a core Marthamycetaceae clade that circumscribes primarily leaf-inhabiting, filiform-spored species. In addition, the asci of <em>R. octomerus</em> possess an amyloid pore, but the reaction varies between specimens collected in the Canary Islands and those collected in Portugal and Croatia. The occurrence of an amyloid reaction in the asci of <em>R. octomerus</em> challenges the characterization of Marthamycetales taxa as possessing inamyloid asci. In our discussion, we provide background and analysis of these notable observations and justify our rationale for retaining <em>R. octomerus </em>in <em>Ramomarthamyces</em> rather than creating a new genus to accommodate it. We also provide notes on the laurel forest habitat of Garajonay National Park on La Gomera island, Canary Islands, Spain, which is a UNESCO World Heritage Site and where the holotype of <em>R. octomerus</em> was collected.</p>
A new distal fibular fragment of Homo floresiensis and the first quantitative comparative analysis of proximal and distal fibular morphology in this species
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Supplementary material 1 from: Griebenow ZH, Jones SC, Eaton TD (2017) Seeking quantitative morphological characters for species identification in soldiers of Puerto Rican Heterotermes (Dictyoptera, Blattaria, Termitoidae, Rhinotermitidae). ZooKeys 725: 17-29. https://doi.org/10.3897/zookeys.725.20010
Definitions of soldier morphometric parameters : Explanation note: Definitions of all morphometric parameters utilized in this study, sensu Roonwal (1969).
FIGURE 30. Camponotus pulcher minor worker CASENT0191639. A in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 30. Camponotus pulcher minor worker CASENT0191639. A: lateral view. B: head in full-face view. C: dorsal view.
FIGURE 31. Camponotus raina minor worker CASENT0499051. A in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 31. Camponotus raina minor worker CASENT0499051. A: lateral view. B: head in full-face view. C: dorsal view.
FIGURE 14 in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 14. Mesosoma in lateral view. A: C. maculiventris (CASENT0082042). B: C. foersteri (CASENT0179450).
FIGURES 21–26 in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURES 21–26. Distribution maps of Camponotus subgenus Mayria in Madagascar. Fig. 21: C. christi; Fig. 22: C. dromedarius; Fig. 23: C. foersteri; Fig. 24: C. lamosy; Fig. 25: C. liandia, Fig. 26: C. lubbocki.
FIGURE 11 in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 11. Mesosoma and petiole node in lateral view. A: C. dromedarius (CASENT0496817). B: C. pulcher (CASENT0191639).
FIGURE 5 in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 5. Mesosoma and petiolar node in lateral view. A: C. manabo (CASENT0496383). B: C. lubbocki (CASENT0486998).
FIGURE 3 in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 3. Mesosoma and petiolar node in lateral view. A: C. repens (CASENT0217300). B: C. lubbocki (CASENT0486998).
FIGURE 17. Camponotus foersteri minor worker CASENT0179450. A in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 17. Camponotus foersteri minor worker CASENT0179450. A: lateral view. B: head in full-face view. C: dorsal view.
FIGURE 1 in Taxonomic revision of the Malagasy Camponotus subgenus Mayria (Hymenoptera, Formicidae) using qualitative and quantitative morphology
FIGURE 1. Dendrogram of NC-PART-clustering of the 14 species recognized in the Camponotus subgenus Mayria. Color bars represent the species hypothesis generated by PART using "hclust" and "kmeans" clustering methods. The corresponding label on the tip of the branch (the species name followed by the collection code) is given the same color code.
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