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467 results for “Incertae sedis”
FIGURE 20 in Observations on the Biology of Afrotropical Hesperiidae (Lepidoptera). Part 5. Hesperiinae incertae sedis: Dicotyledon Feeders
FIGURE 20. Final instar caterpillar of Acada biseriata, collected on Brachystegia spiciformis [TCEC]. 1–3, 21 Jan 2008, Mutinondo Wilderness, Mpika, Zambia; 1, dorsal view; 2, lateral view; 3, detail of head, frontal view. 4, detail of head, dorsofrontal view, 21 Jan 2008, Mufindi, Tanzania.
FIGURE 17 in Observations on the Biology of Afrotropical Hesperiidae (Lepidoptera). Part 5. Hesperiinae incertae sedis: Dicotyledon Feeders
FIGURE 17. Gorgyra mocquerysii pupa, collected as final instar caterpillar 5 Dec 1988 on Agelaea pentagyna (or near), Adiopodoumé, Côte d'Ivoire; pupated 30 Dec; photo 16 Jan 1989; emerged 17 Jan; 13mm; 88/210.
FIGURE 11 in Observations on the Biology of Afrotropical Hesperiidae (Lepidoptera). Part 5. Hesperiinae incertae sedis: Dicotyledon Feeders
FIGURE 11. Adult female Gorgyra johnstoni, collected as caterpillar 13 Dec 1989 on Rourea orientalis, Shimba Hills, Kenya; adult 1 Jan 1990; 89/100B.
FIGURE 5. Rourea thomsonii, a in Observations on the Biology of Afrotropical Hesperiidae (Lepidoptera). Part 5. Hesperiinae incertae sedis: Dicotyledon Feeders
FIGURE 5. Rourea thomsonii, a food plant of Gorgyra bibulus with feeding and leaf shelters (arrows), Gatamayu Forest, Kenya, 4 Jul 1998; 98/201M.
FIGURE 15 in Observations on the Biology of Afrotropical Hesperiidae (Lepidoptera). Part 5. Hesperiinae incertae sedis: Dicotyledon Feeders
FIGURE 15. Pupa of Gorgyra johnstoni, collected 13 Dec 1989 on Rourea orientalis, Shimba Hills, Kenya; pupated 19 Dec 1989; photographed 20 Dec; adult 1 Jan 1990; 14mm; 89/100B.
FIGURE 19 in Observations on the Biology of Afrotropical Hesperiidae (Lepidoptera). Part 5. Hesperiinae incertae sedis: Dicotyledon Feeders
FIGURE 19. Pupa of Gorgyra subflavidus collected as caterpillars on?Khaya sp., Sanje, Udzungwa Mountains National Park, c. 1000m, Tanzania, 1 Feb 2000, TCEC. 1, dorsal view, 15 Feb 2000; 2, dorsolateral view, 10 Feb 2000; 3, lateral view, as #2.
Fig. 4 in Effect of a Parasitic Nematode,Chondronema passaliLeidy (Incertae sedis), on the Size and Strength of the Horned Passalus,Odontotaenius disjunctusIlliger (Coleoptera: Passalidae)
Fig. 4. Average body mass of male (M) and female (F) Odontotaenius disjunctus from Athens and Savannah, Georgia, USA. Error bars represent 95% confidence intervals.
Fig. 1 in Effect of a Parasitic Nematode,Chondronema passaliLeidy (Incertae sedis), on the Size and Strength of the Horned Passalus,Odontotaenius disjunctusIlliger (Coleoptera: Passalidae)
Fig. 1. The horned passalus, Odontotaenius disjunctus (A), and a larval Chondronema passali (B) taken from the body cavity of a beetle.
Fig. 3 in Effect of a Parasitic Nematode,Chondronema passaliLeidy (Incertae sedis), on the Size and Strength of the Horned Passalus,Odontotaenius disjunctusIlliger (Coleoptera: Passalidae)
Fig. 3. Average body mass of male and female Odontotaenius disjunctus with and without infections of Chondronema passali. Error bars represent 95% confidence intervals. Beetles were collected in Athens (n = 40) and Savannah (n = 52), Georgia, USA.
Fig. 2 in Effect of a Parasitic Nematode,Chondronema passaliLeidy (Incertae sedis), on the Size and Strength of the Horned Passalus,Odontotaenius disjunctusIlliger (Coleoptera: Passalidae)
Fig. 2. Schematic of the apparatus used to measure pulling strength of Odontotaenius disjunctus in this study.
FIGURE 2 in Three new species of Tricholomopsis (incertae sedis) from North China based on morphological and molecular data
FIGURE 2. Basidiomes of the three new species. a. Tricholomopsis galeata (BJTC FM1107, holotype); b. Tricholomopsis pallidolutea (BJTC FM1184, holotype); c–d. Tricholomopsis mitirubicunda (BJTC FM649, holotype). Scale bars: a, c, d = 20 mm; b = 10 mm. Photos by: Li Fan.
FIGURE 1 in Three new species of Tricholomopsis (incertae sedis) from North China based on morphological and molecular data
FIGURE 1. Phylogeny derived from Maximum Likelihood analysis of the ITS-nrLSU combined sequences from Tricholomopsis. Pluteus romellii and Phyllotopsis sp. are rooted as outgroups. Bootstrap support values (≥ 70 %) are indicated above the nodes. New species and nodes with Bayesian posterior probabilities values (≥ 0.95) are in bold.
FIGURE 3 in Three new species of Tricholomopsis (incertae sedis) from North China based on morphological and molecular data
FIGURE 3. Microscopic features. Tricholomopsis galeata (BJTC FM1107, holotype) a. Basidiospores b. Cheilocystidia c. Pileipellis elements; Tricholomopsis pallidolutea (BJTC FM1184, holotype) d. Cheilocystidia e. Basidiospores f. Pleurocystidia g. Pileipellis elements; Tricholomopsis mitirubicunda (BJTC FM649, holotype) h. Cheilocystidia i. Basidiospores j. Pleurocystidia k. Pileipellis elements. Scale bars: h = 20 μm; a, b, c, d, f, g, i, j, k = 10 μm; e = 5 μm. Drawings by: Ning Mao.
FIGURE 1 in Rhexodenticula aquatica (Sordariomycetidae genera incertae sedis), a novel hyphomycete from freshwater in Thailand
FIGURE 1. RAxML tree generated from combined LSU, SSU, ITS and TEF sequence data analysis. Bootstrap support values for maximum likelihood (the first value) equal to or greater than 75% and Bayesian posterior probabilities (the second value) equal to or greater than 0.95 are given above or below the nodes. The tree is rooted to Aureobasidium pullulans CBS 584.75 and Dothidea insculpta CBS 189.58. The ex-type strains are indicated in bold and newly introduced taxon is indicated in red.
FIGURE 2 in Rhexodenticula aquatica (Sordariomycetidae genera incertae sedis), a novel hyphomycete from freshwater in Thailand
FIGURE 2. Rhexodenticula aquatica (MFLU 18-1551, holotype) a Colonies on submerged wood. b Conidiogenous cell with conidium. c Conidiophore. d, e Conidiogenous cells. f–j Conidia. Scale bars: b, c, f–j = 15 μm, d, e = 5 μm.
FIGURE 2 in A new species of Volvariella and the first record of Volvariella pulla (Agaricales: incertae sedis) from Thailand
FIGURE 2. Mature basidiome of Volvariella rostricystidiata. (MFLU 19-1528). Scale bar = 5 cm. Photo by P. Sysouphanthong.
FIGURE 1 in A new species of Volvariella and the first record of Volvariella pulla (Agaricales: incertae sedis) from Thailand
FIGURE 1. Phylogenetic tree generated from ML analysis of combined ITS and nrLSU data set for Volvariella with outgroup of three species of Cantharocybe and three species of Cuphophyllus. Boostrap support values (≥70%) and posterior probabilities (≥0.9) (BS/PP) are given above the branches. All terminals are with species name and voucher ID, with the newly generated sequences from this study in bold.
FIGURE 4 in A new species of Volvariella and the first record of Volvariella pulla (Agaricales: incertae sedis) from Thailand
FIGURE 4. Mature basidiome of Volvariella pulla. (MFLU 19-1534). Scale bar = 5 cm. Photo by P. Sysouphanthong.
FIGURE 10 in The genus Ampittia in Africa with the description of a new species (Hesperiinae; Aeromachini) and three new species in the genera Andronymus and Chondrolepis (Hesperiinae, incertae sedis) (Lepidoptera; Hesperiidae)
FIGURE 10. The male holotype of Chondrolepis ducarmei, Democratic Republic of Congo, North Kivu, Bunyatenge (MRAC). Left recto; Right verso (now missing the tip of the abdomen after dissection).
FIGURE 8 in The genus Ampittia in Africa with the description of a new species (Hesperiinae; Aeromachini) and three new species in the genera Andronymus and Chondrolepis (Hesperiinae, incertae sedis) (Lepidoptera; Hesperiidae)
FIGURE 8. Type material of Chondrolepis uluguru from Tanzania, Uluguru Mountains, Nyachilo. A, 3 holotype recto; B, 3 holotype verso; C, Ƥ paratype recto; D Ƥ paratype verso.
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International Brain Laboratory public data
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OpenNeuro
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