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35 results for “Cryptocarya”
FIG. 2 in Novitates neocaledonicae IV: Three new species of Cryptocarya R.Br. (Lauraceae)
FIG. 2. — Distribution of Cryptocarya adpressa Munzinger & McPherson, sp. nov.: █, herbarium specimens; █, are observations (no voucher) from the NC-PIPPIN network (Ibanez et al. 2014). Abbreviation and areas: T, type specimen; grey areas, ultramafic substrates; dotted areas, protected regions; slanting lines, represent low elevation dense humid forest on volcano-sedimentary substrate (Jaffré et al. 2012).
Herbarium specimen image of Cryptocarya impressa Miq., part of the collection of Naturalis Biodiversity Center
Part of a training dataset of scanned herbarium specimens. The data paper and a summary landing page will be published on Zenodo as it gets published.<br><br>Content of this deposition:<br><br>- A JSON-LD datafile listing the label data associated with this herbarium specimen. The Darwin and Dublin Core data standards are used for most values.<br>- A JPEG image file of the scanned herbarium sheet.<br>- Two PNG files containing segmented image overlays of the scanned herbarium sheet. The _all extension indicates that all labels, color charts and pieces of text have received a different color against a black background color. The _sel extension indicates that these elements are white if they're barcode labels, yellow if they're color charts and red if they're anything else.
FIG. 5 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 5. — Cryptocara ovoidea Munzinger & McPherson, sp. nov.: A, fruiting branch; B, fruit; C, terminal vegetative bud; D, detail of venation; E, leaf; F, flower; G, longitudinal section of flower; H, exterior tepal and stamen of whorl I; I, interior tepal and stamen of whorl II; J, flower with two tepals removed; K, stamen of whorl III; L, gland; M, staminode, adaxial side; A-E, Munzinger et al. 5178; F-M, Dabome 2. Drawings: Laurence Ramon. Scale bars: A, 2 cm; B, E, 1 cm; C, H, I, K-M 1 mm; D, 5 mm; F, G, J, 2 mm.
FIG. 2 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 2. — Field pictures of Cryptocarya conduplicata Munzinger & McPherson, sp. nov.: A, trunk and slash; B, flushing and flowering branch; C, flower; D, branch with young fruits; E, F, branch with nearly mature fruits; G, mature fruit in cross-section; A, D, Munzinger et al. 5874; B, Munzinger et al. 6545; C, Munzinger et al. 6481; E, Butin 87; F, G, Munzinger et al. 8101. Photographs: A-E, P. Lowry; F, G, D. Fleurot.
FIG. 7 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 7. — Leaves of four species of Cryptocarya R.Br. observed the same day on Aoupinié (left to right), C. elliptica Schltr., C. longifolia Kosterm., C. pluricostata Kosterm. and C. ovoidea Munzinger & McPherson, sp. nov. Photo: Jérôme Munzinger.
FIG. 4 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 4. — Comparison of general aspect, angle of leaf presentation, and lenticels aspect between C. aristata (to the left in A and B, to the right in C) and C. conduplicata Munzinger & McPherson, sp. nov. (Munzinger et al. 6545, to the right in A and B, to the left C). Photographs: A, J. Munzinger; B, C, P. Lowry.
FIG. 1 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 1. — Cryptocara conduplicata Munzinger & McPherson, sp. nov.: A, flowering branch; B, lenticels on young twigs; C, leaf in lateral view; D, abaxial face; E, flower from above; F, flower in lateral view; G, external tepal, adaxial face; H, external tepal, abaxial face (Munzinger et al. 6545); I, stamen of whorl I; J, stamen of whorl III with glands; K, isolated gland; L, staminode, abaxial face; M, staminode, adaxial face; N, gynoecium; O, schematic view of the longitudinal section of the hypanthium and ovary; P, young fruit; Q, ripe fruit in herb.; R, mature fresh fruit; S, fruit in transversal section; T, ripe fruit. Photos: A, from photograph in the field of Munzinger et al. 6481; B, McPherson 19131; C, Veillon 555; D, from photograph in the field of Munzinger et al. 6534; E, from photograph in the field of Munzinger et al. 6545; F-O, Munzinger et al. 6545; P, Munzinger et al. 5874; Q, Veillon 4230; R, after a field photograph not vouchered; S, T, from photograph in the field of Munzinger et al. 8101. Drawings: Laurence Ramon. Scale bars: A-D, 1 cm; E, F, M, N, 1 mm; M, N, 1 mm; G-I, K, L, O, 0.5 mm; P-T, 1 cm.
FIG. 3 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 3. — Distribution of Cryptocarya conduplicata Munzinger & McPherson, sp. nov. () and Cryptocarya ovoidea Munzinger & McPherson, sp. nov. (). Full circles or squares are herbarium specimens, empty circles are observations (no voucher) from the NC-PIPPN network (Ibanez et al. 2014) and botanical expeditions (Munzinger 2013; Munzinger et al. 2018). Abbreviation: T, indicates Type specimen. Grey represents ultramafic substrates, slanting lines represent low elevation dense humid forest (Jaffré et al. 2012).
FIG. 6 in Novitates neocaledonicae XII: Two additional new species of Cryptocarya R.Br. from New Caledonia
FIG. 6. — Cryptocara ovoidea Munzinger & McPherson, sp. nov.: A, habit; B, leaf abaxial surface. Photos: Jérôme Munzinger.
FIGURE 6 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 6. Third-instar female nymph of Phyllococcus cryptocaryae Percy, Watson & Hodgson, sp. n. A. Trilocular pore; B. Dorsal view of anal plates showing cerarian setae; Ci. Oral collar tubular duct on third-instar nymph; Cii. Oral collar duct on pharate adult female within second-instar nymph; D. Spinose seta along inner margin of anal plate; E. Seta on elongate setal socket on ventral surface of anal plate; G. Ventral view of posterior end of abdomen, showing position of anus; H. Ventral seta with convex setal socket; K. Simple pore; M. Spinose cerarian seta; N. Very small dorsal setae on shield.
FIGURE 4. A in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 4. A. Galls of triozid psyllid, Paurotriozana adaptata Caldwell, distributed along midrib and veins on underside of leaves of Cryptocarya mannii (arrow indicates vacated gall cavity); B. Pa. adaptata, last-instar immature psyllid with dorsal surface close to surface of the gall; C. Illustration showing the shape of the psyllid gall in cross section (dotted line indicates position of the dorsal surface of the immature psyllid); D. Adult female Ph. cryptocaryae after removal from gall chamber (arrow indicates oval anal shield); E. Illustration showing the shape of the mealybug gall in cross section (dotted line indicates position of the dorsal surface of the anal shield); F. Cryptocarya mannii leaf showing protrusions on the upper leaf surface caused by the galls of Ph. cryptocaryae. Photographs by Karl Magnacca.
FIGURE 1. A in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 1. A. Galls of Phyllococcus oahuensis (Ehrhorn) on a leaf of Touchardia sandwicensis, found on Maui in 2007; B. Closer view of galls of Ph. oahuensis. Photographs by Karl Magnacca.
FIGURE 5 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 5. Adult female of Phyllococcus cryptocaryae Percy, Watson & Hodgson, sp. n. A. Trilocular pore; B. Dorsal view of anal plates; C. Oral collar tubular duct; D. Spinose seta along posterior margin of anal plate; E. Stiff seta on elongate, boss-like setal socket on ventral surface of anal plate; F. Shape of anal ring; G. Ventral view of posterior end of abdomen, showing anal lobes, position of anus and large vulva (v); H. Seta on posterior of abdomen with convex setal socket; J. End of tarsus plus claw; K. Simple pore; L. Dorsal seta.
FIGURE 3 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 3. Adult male Phyllococcus oahuensis (Ehrhorn). A. Dorsal ocular sclerite, showing dorsal simple eye (d) and ocellus (o); D. Fleshy seta on leg; E. Hair-like seta on leg; F. Dorsal view of posterior half of penial sheath; G. Ventral view of penial sheath; H. Metatibia + tarsus; J. Loculate pores.
FIGURE 2 in The endemic Hawaiian mealybug genus Phyllococcus Ehrhorn, 1916 (Hemiptera: Coccomorpha: Pseudococcidae): redescription of the type species and description of a new species on an endangered host plant, Cryptocarya mannii (Lauraceae)
FIGURE 2. Adult female of Phyllococcus oahuensis (Ehrhorn). A. Trilocular pore; B. Dorsal and ventral views of anal plates; E. Spinules on anal plates and margins of dorsal shield; F. Margin of dorsal shield; L. Dorsal seta; K. Simple pores; M. Anterior view of hind leg; S. Spiracle; Z. Illustration of gall by Ferris (in Zimmerman 1948: 160, fig. 93).
FIGURE 3 in A phylogenetic analysis of the Cryptocarya group (Lauraceae), and relationships of Dahlgrenodendron, Sinopora, Triadodaphne, and Yasunia
FIGURE 3. Result of the ITS Bayesian analysis. Numbers above the clades are posterior probabilities, numbers below the clades are bootstrap percentages from the MP analysis based on the same matrix. Clades with <50% bootstrap support are marked with "--". An "x" indicates that there is a different clade with ≥50% support in the bootstrap consensus of the maximum parsimony analysis. Clade numbers used in the text are indicated near the base of each clade. Black circles mark clades that are present in all analyses, black squares indicate clades that are compatible with all Bayesian and maximum parsimony analyses, black diamonds indicate clades conflicting with the result from the trnK intron data set.
FIGURE 2 in A phylogenetic analysis of the Cryptocarya group (Lauraceae), and relationships of Dahlgrenodendron, Sinopora, Triadodaphne, and Yasunia
FIGURE 2. Result of the trnK Bayesian analysis. Numbers above the clades are posterior probabilities, numbers below clades are bootstrap percentages from the MP analysis. Clades with <50% bootstrap support are marked with "--". Clade numbers used in the text are indicated near the base of each clade. Black circles mark clades that are present in all analyses, black squares indicate clades that are compatible with all Bayesian and Maximum Parsimony analyses, black diamonds indicate clades conflicting with the result from the ITS data set.
FIGURE 1 in A phylogenetic analysis of the Cryptocarya group (Lauraceae), and relationships of Dahlgrenodendron, Sinopora, Triadodaphne, and Yasunia
FIGURE 1. Results of the combined Bayesian trnK and ITS analysis. Numbers above the clades are posterior probabilities, numbers below clades are bootstrap percentages from the MP analysis based on the same matrix. Clades with <50% bootstrap support are marked with "--". An "x" indicates that there is a different clade with ≥50% support in the bootstrap consensus of the maximum parsimony analysis. Clade numbers used in the text are indicated near the base of each clade. Black circles mark clades that are present in all analyses, black squares indicate clades that are compatible with all Bayesian and maximum parsimony analyses. Diamonds mark conflicting clades; white diamonds indicate clades from the ITS data set that conflict with the result from the trnK intron data set, black diamonds indicate clades from the trnK intron data set that conflict with the result from the ITS data set.
FIGURE 4 in A phylogenetic analysis of the Cryptocarya group (Lauraceae), and relationships of Dahlgrenodendron, Sinopora, Triadodaphne, and Yasunia
FIGURE 4. Bootstrap consensus of the maximum likelihood combined analysis. Numbers next to the nodes are likelihood bootstrap percentages, the black diamond indicating clade 65 that was retrieved in the ML analysis only.
FIGURE 8 in Leaf cuticle in Brazilian species of Cryptocarya (Lauraceae)
FIGURE 8. SEM micrographs of Cryptocarya (abaxial view). Cryptocarya moschata. A. Thomas 4752. Cryptocarya riedeliana. B. Farias 80; C. Kollmann 4413; D. Moraes 3126; E. Moraes 4716. Cryptocarya saligna. F. Magnago 1471; G. Moraes 3182; H. Moraes 3226. Cryptocarya sellowiana. I–J. Luz 196. Cryptocarya subcorymbosa. K. Moraes 5161. Cryptocarya aschersoniana. L. Brotto 2550. Cryptocarya velloziana. M. Braga s.n.; N. Lombardi 8950; O. Moraes 2621. Cryptocarya wiedensis. P. Kollmann 2464. Scale bar = 50 μm.
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