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263 results for “acacia”
FIGURES 45–47 in New Tortricidae (Lepidoptera) from East Africa with an account of the tortricid fauna of acacia in the Kenyan Rift Valley
FIGURES 45–47. Female genitalia of Paraeccopsis. 45. P. variegana, sp. n. 46. P. exhilarata (Meyrick). 47. P. addis Aarvik, sp. n.
FIGURES 26–33 in New Tortricidae (Lepidoptera) from East Africa with an account of the tortricid fauna of acacia in the Kenyan Rift Valley
FIGURES 26–33. Adults of Age, Coniostola and Eucosmocydia. 26. A. onychistica Diakonoff. 27. C. stereoma (Meyrick). 28. C. flavitinctana, sp. n. 29. C. rufitinctana, sp. n. 30. C. laikipiana, sp. n. 31. E. pharangodes (Meyrick). 32, 33. E. prolixa Razowski & Wojtusiak.
FIGURES 67–68 in New Tortricidae (Lepidoptera) from East Africa with an account of the tortricid fauna of acacia in the Kenyan Rift Valley
FIGURES 67–68. Female genitalia of Eucosmocydia. 67. E. pharangodes (Meyrick). 68. E. prolixa Razowski & Wojtusiak.
FIGURE 3 in Contarinia manii sp. n. (Diptera, Cecidomyiidae): inducer of a remarkable gall on Acacia ferruginea in southern India
FIGURE 3. Galls of Contarinia ramachandrani on Acacia ferruginea. Photograph by Dr. Saminathan Amerjothy.
FIGURES 7–8 in A review of the Pseudomyrmex ferrugineus and Pseudomyrmex goeldii species groups: acacia-ants and relatives (Hymenoptera: Formicidae)
FIGURES 7–8. Pseudomyrmex goeldii group, workers, full-face dorsal view of head (a) and lateral profile of body (b). 7, P. obtusus, Venezuela (CASENT0794100); 8, P. parvulus, Brazil (CASENT0762994). Images from AntWeb (www.antweb.org); photographer Matthew Prebus.
FIGURES 4–6 in A review of the Pseudomyrmex ferrugineus and Pseudomyrmex goeldii species groups: acacia-ants and relatives (Hymenoptera: Formicidae)
FIGURES 4–6. Pseudomyrmex goeldii group, workers, full-face dorsal view of head (a) and lateral profile of body (b). 4, P. goeldii, Brazil (CASENT0907543); 5, P. laevifrons, Bolivia (CASENT0762973); 6, P. micans, Peru (CASENT0794101). Images from AntWeb (www.antweb.org); photographers Will Ericson (4) and Matthew Prebus (5, 6).
FIGURES 2–3 in A review of the Pseudomyrmex ferrugineus and Pseudomyrmex goeldii species groups: acacia-ants and relatives (Hymenoptera: Formicidae)
FIGURES 2–3. Pseudomyrmex ferrugineus group, workers, full-face dorsal view of head (a) and lateral profile of body (b). 2, P. evitus, Costa Rica (INBIOCRI001271962); 3, P. feralis, Guatemala (CASENT0794097). Images from AntWeb (www.antweb.org); photographer Matthew Prebus.
FIGURE 1 in A review of the Pseudomyrmex ferrugineus and Pseudomyrmex goeldii species groups: acacia-ants and relatives (Hymenoptera: Formicidae)
FIGURE 1. Phylogenetic relationships in the Pseudomyrmex ferrugineus group and related species, based on maximum likelihood (ML) analysis of 1,672 UCE (ultra-conserved element) loci (from Ward & Branstetter 2017). Bootstrap support is 100% at all nodes except the two whose support values are shown. Obligate acacia-ants are in red font, and can be seen to comprise two clades within the P. ferrugineus group. Two species (P. ferrugineus, P. mixtecus) are paraphyletic, consistent with a recent origin of their sister species by peripatric speciation (Ward & Branstetter 2017). The P. goeldii group is represented by three of its five species: P. laevifrons, P. micans and P. obtusus.
FIGURES 4, 5 in Contarinia manii sp. n. (Diptera, Cecidomyiidae): inducer of a remarkable gall on Acacia ferruginea in southern India
FIGURES 4, 5. Contarinia manii sp. nov., 4, female wing. Wing length = 1.2 mm; 5, head, male, frontal view, scale bar = 0.1 mm.
FIGURES 1, 2 in Contarinia manii sp. n. (Diptera, Cecidomyiidae): inducer of a remarkable gall on Acacia ferruginea in southern India
FIGURES 1, 2. Contarinia manii sp. nov., 1, a single gall formed from two contiguous leaflets of Acacia ferruginea; 2, section through a single gall showing a third instar larva in the cavity formed between the upper and lower sections of the gall; gall length 4–5 mm. Photographs by Dr. Odette Rohfritsch.
FIGURES 6–9 in Contarinia manii sp. n. (Diptera, Cecidomyiidae): inducer of a remarkable gall on Acacia ferruginea in southern India
FIGURES 6–9. Contarinia manii sp. nov., 6, female, lateral view showing retracted ovipositor. scale bar = 0.1 mm; 7, female, cerci at tip of ovipositor, dorsal view, scale bar = 0.01 mm; 8, male genitalia, dorsal view, scale bar = 0.05 mm; 9, sternal spatula of third instar larva, scale bar = 0.01 mm.
Species TX OK Distribution Map FH Hosts Scolytini Scolytina Scolytus fagi Walsh 1? SENA 33 ph Celtis, Quercus Scolytus multistriatus (Marsham) 1 1 EX 34 ph Ulmus Scolytus muticus Say 1 1 SENA 35 ph Celtis Scolytus quadrispinosus Say 1 1* SENA 37 ph Carya Scolytus rugulosus (Muller) 1 1 EX 38 ph Prunus Scolytus schevyrewi Semenov 1 1 EX 36 ph Ulmus Hexacolina Pycnarthrum hispidum (Ferrari) 1 MEX+NT 39 ph Ficus Micracina Hylocurus binodatus Wood 1 SENA xy Hylocurus flaglerensis Blackman 1* SENA 41 xy Hylocurus floridensis Atkinson 1* SENA 40 xy Hylocurus langstoni (Blackman) 1 1* SENA 42 xy Hylocurus parkinsoniae Blackman 1 MEX+NT 40 xy Hylocurus rudis (LeConte) 1 1 SENA 43 xy polyphagous Hylocurus schwarzi Blackman 1 SENA 41 xy Micracis suturalis LeConte? 1* SENA 44 xy polyphagous Micracis swainei Blackman 1? SENA 44 xy polyphagous Micracisella nanula (LeConte) 1 1 SENA 45 my polyphagous Micracisella opacithorax (Schedl) 1 MEX+NT 45 my polyphagous Pseudothysanoes acaciae (Blackman) 1 MEX+NT 46 ph Legume trees Pseudothysanoes dislocatus (Blackman) 1 SENA 46 ph Carya Pseudothysanoes frondicolens Wood 1* SWNA 47 ph Yucca Pseudothysanoes heliura Wood 1 MEX+NT 47 xy Pseudothysanoes huachucae Blackman 1 SWNA 48 ph Quercus in Atlas and checklist of the bark and ambrosia beetles of Texas and Oklahoma (Curculionidae: Scolytinae and Platypodinae)
Species TX OK Distribution Map FH Hosts Scolytini Scolytina Scolytus fagi Walsh 1? SENA 33 ph Celtis, Quercus Scolytus multistriatus (Marsham) 1 1 EX 34 ph Ulmus Scolytus muticus Say 1 1 SENA 35 ph Celtis Scolytus quadrispinosus Say 1 1* SENA 37 ph Carya Scolytus rugulosus (Muller) 1 1 EX 38 ph Prunus Scolytus schevyrewi Semenov 1 1 EX 36 ph Ulmus Hexacolina Pycnarthrum hispidum (Ferrari) 1 MEX+NT 39 ph Ficus Micracina Hylocurus binodatus Wood 1 SENA xy Hylocurus flaglerensis Blackman 1* SENA 41 xy Hylocurus floridensis Atkinson 1* SENA 40 xy Hylocurus langstoni (Blackman) 1 1* SENA 42 xy Hylocurus parkinsoniae Blackman 1 MEX+NT 40 xy Hylocurus rudis (LeConte) 1 1 SENA 43 xy polyphagous Hylocurus schwarzi Blackman 1 SENA 41 xy Micracis suturalis LeConte? 1* SENA 44 xy polyphagous Micracis swainei Blackman 1? SENA 44 xy polyphagous Micracisella nanula (LeConte) 1 1 SENA 45 my polyphagous Micracisella opacithorax (Schedl) 1 MEX+NT 45 my polyphagous Pseudothysanoes acaciae (Blackman) 1 MEX+NT 46 ph Legume trees Pseudothysanoes dislocatus (Blackman) 1 SENA 46 ph Carya Pseudothysanoes frondicolens Wood 1* SWNA 47 ph Yucca Pseudothysanoes heliura Wood 1 MEX+NT 47 xy Pseudothysanoes huachucae Blackman 1 SWNA 48 ph Quercus
FIGURE 2 in Lectotypes resolve the taxonomic entanglement of the Acacia Pied Barbet Tricholaema leucomelas (Piciformes: Lybiidae) and Pied Puffbird Notharchus tectus (Piciformes: Bucconidae)
FIGURE 2. Scan of page 43 in Boddaert (1783). As shown, the two boxes of text were evidently switched (likely by the typesetter), resulting in the application of the novel names Bucco leucomelas and Bucco tectus to the wrong Pl. Enl. figures. Except for the references in both boxes to Brisson's (1760) "Barbu", the text in the upper box matches the figure in Pl. Enl. 688- 2, and the text in the lower box matches the figure in Pl. Enl. 688-1. Image courtesy of Smithsonian Libraries and Biodiversity Heritage Library.
FIGURE 1 in Lectotypes resolve the taxonomic entanglement of the Acacia Pied Barbet Tricholaema leucomelas (Piciformes: Lybiidae) and Pied Puffbird Notharchus tectus (Piciformes: Bucconidae)
FIGURE 1. (Left) "Le Barbu de l'Isle de Luçon" from Sonnerat (1776, Pl. 34), which depicts an Acacia Pied Barbet that is a syntype of Bucco niger Gmelin, 1788. (Right) Pl. Enl. 688-1, which depicts (1) an Acacia Pied Barbet that is a syntype of Tricholaema leucomelas (Boddaert), a syntype of Bucco niger Gmelin, 1788, and the holotype of Bucco rufifrons Stephens, 1815; and (2) Pl. Enl. 688-2, which depicts a Pied Puffbird that is the holotype of Notharchus tectus (Boddaert) and B. melanoleuca Gmelin, 1788. Images courtesy of the New York Botanical Garden and Biodiversity Heritage Library.
Fig. 3 in Bradyrhizobium altum sp. nov., Bradyrhizobium oropedii sp. nov. and Bradyrhizobium acaciae sp. nov. from South Africa show locally restricted and pantropical nodA phylogeographic patterns
Fig. 3. Aheatmap illustrating the Average Nucleotide Identity (ANIb) similarity between Bradyrhizobium type strains within the B. elkanii supergroup. ANIb pairwise values were calculated using BLAST in JSpecies. Strains of the species investigated here are indicated in their respective colours. The black boxes around the strains highlight the strains investigated in this study and their closest relatives.
Fig. 2 in Bradyrhizobium altum sp. nov., Bradyrhizobium oropedii sp. nov. and Bradyrhizobium acaciae sp. nov. from South Africa show locally restricted and pantropical nodA phylogeographic patterns
Fig. 2. Cladogram inferred from the concatenated (atpD, dnaK, glnII, gyrB and rpoB) maximum-likelihood phylogeny. Only type strains from the B. elkanii supergroup were included in the analysis. Bradyrhizobium japonicum USDA6T was used as an outgroup. Bootstrap support values were inferred from 1000 replicates and only values greater than 60% are indicated in bold at the nodes, while branch lengths (i.e. indicative of the nucleotide substitutions per site) are shown below the branches. Strains of the species investigated here are indicated in their respective colours. For each taxon, the legume tribe, host and geographic location from where it was isolated is also listed, including their nodA clade affiliation. Bradyrhizobium species with no available nodA sequence is indicated as "na" under nodA Clade. The P and Cin brackets behind the Tribe indicate subfamily Papilionoideae or Caesalpinioideae, while Mindicates the Mimosoid Clade within the Caesalpinioideae. The closest town names from which the South African strains were isolated were also included under geographic location.
Fig. 1 in Bradyrhizobium altum sp. nov., Bradyrhizobium oropedii sp. nov. and Bradyrhizobium acaciae sp. nov. from South Africa show locally restricted and pantropical nodA phylogeographic patterns
Fig. 1. Individual maximum-likelihood phylogenies of atpD, dnaK, glnII, gyrB and rpoB housekeeping genes. These phylogenies only include Bradyrhizobium type strains from the B. elkanii supergroup, although the atpD phylogeny did not include B. ripae WT4T, B. erythrophlei CCBAU 53325T, and B. ferriligni CCBAU 51502T due to the lack of sequence data. In each phylogeny B. japonicum USDA6T was used as the outgroup. Strains of the species investigated in this study are indicated in colour. Bootstrap values were inferred from 1000 replicates and only those greater than 60% are shown on the nodes. The scalebars indicates nucleotide substitutions per site.
FIGURE. Selected species from the flora of Quiçama National Park. A. Adansonia digitata. B. Euphorbia candelabrum. C. Acacia welwitschii. D. Hyphaene guineensis. E. Rhizophora racemosa. F. Guibourtia carrissoana var. gossweileri. G. Tessmannia camoneana. H. Sterculia setigera. I. Carissa spinarum. J. Boscia urens. K. Maerua angolensis. L. Grewia villosa. M. Sesuvium crithmoides. N. Aloe zebrina. O. Barleria elegans. P. Setaria welwitschii. (Photographs by the authors). in An annotated checklist of the vascular flora of Quiçama National Park, Angola
FIGURE. Selected species from the flora of Quiçama National Park. A. Adansonia digitata. B. Euphorbia candelabrum. C. Acacia welwitschii. D. Hyphaene guineensis. E. Rhizophora racemosa. F. Guibourtia carrissoana var. gossweileri. G. Tessmannia camoneana. H. Sterculia setigera. I. Carissa spinarum. J. Boscia urens. K. Maerua angolensis. L. Grewia villosa. M. Sesuvium crithmoides. N. Aloe zebrina. O. Barleria elegans. P. Setaria welwitschii. (Photographs by the authors).
Supplementary material 4 from: Magona N, Richardson DM, Le Roux JJ, Kritzinger-Klopper S, Wilson JRU (2018) Even well-studied groups of alien species might be poorly inventoried: Australian Acacia species in South Africa as a case study. NeoBiota 39: 1-29. https://doi.org/10.3897/neobiota.39.23135
Details of the forestry trial at Damara Farm, South Africa, that included many species of wattles not previously recorded from South Africa :
Supplementary material 3 from: Magona N, Richardson DM, Le Roux JJ, Kritzinger-Klopper S, Wilson JRU (2018) Even well-studied groups of alien species might be poorly inventoried: Australian Acacia species in South Africa as a case study. NeoBiota 39: 1-29. https://doi.org/10.3897/neobiota.39.23135
Records of naturalised populations of wattles as per the Southern African Plant Invaders Atlas (date accessed: January 2017) :
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