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4,287 results for “Asteraceae”
FIG. 7 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 7. — Lectotype of Saussurea flexuosa Franch., Farges s.n. (P00602848).
FIG. 13 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 13. — Lectotype of Saussurea sutchuenensis Franch., Farges s.n. (P00602916).
FIG. 5 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 5. — Lectotype of Saussurea delavayi Franch., Delavay 996 (P00602833).
FIG. 6 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 6. — Lectotype of Saussurea eriocephala Franch., Delavay 4720 (P00602842).
FIG. 4 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 4. — Lectotype of Saussurea compta Franch., Soulié 620 (P00602826).
FIG. 3 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 3. — Lectotype of Saussurea ciliaris Franch., Delavay 2105 (P00705417).
FIG. 2 in Notes on the typification of fourteen names published by A.R. Franchet in Saussurea DC. (Asteraceae)
FIG. 2. — Lectotype of Saussurea chetchozensis Franch., Delavay 2510 (P00602821).
Figure 9 in Two new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Asteraceae from Brazil
Figure 9. Asphondylia spp.: (A) A. mineira, sp. nov., prothoracic spatula and associated papillae, ventral view, (B-C) A. ajallai Möhn, 1959 (redrawn from Möhn, 1959, original drawings without scale): (B) Hind leg, tarsal claw and empodium, lateral view, (C) prothoracic spatula and associated papillae, ventral view. two pairs of lower facial papillae: one pair setose, the oth- Material examined: Holotype male, BRAZIL, Minas er bare; three pairs of lateral facial papillae: one pair se- Gerais, Serra Negra do Funil, III.2021, B. Mascarenhas tose, two bare; upper cephalic margin thickened lateral- col., 1 male (MNRJ-ENT1-69147). Paratypes: same data ly. Thorax: wrinkled integument (Figs. 8C-D); prothorac- as holotype, 6 females (MNRJ-ENT1-69149, MNRJic spiracle 0.14-0.16 mm long, setiform, slightly curved ENT1-69150, MNRJ-ENT1-69151, MNRJ-ENT1-69152, (N = 4). Abdomen: segments 2-8 with transverse rows MNRJ-ENT1-69153, MNRJ-ENT1-69154), 4 pupal exuviae of crescent dorsal spines posterior row with 12-14 spines (MNRJ-ENT1-69155), 1 larva (MNRJ-ENT1-69148). in the 2nd segment (N = 2), 18-21 in the 3rd (N = 3), 18-25 in the 4th (N = 4), 20-24 in the 5th (N = 4), 19-24 in the 6th Etymology: The name "mineira″ means native of Minas (N = 4), 13-18 in the 7th (N = 4), and 8-9 in the 8th (N = 4) Gerais. (Fig. 8E). Remarks: Asphondylia gaucha and A. mineira are the Larva (part of abdomen missing): Cephalic head 0.12 mm only two described species of Asphondylia associated long, 0.12 mm wide. Prothoracic spatula (Fig. 9A) 0.29 mm with the genus Vernonanthura in Brazil. These species long (N = 1), four-toothed, inner teeth shorter than outer, differ from each other mainly in the length of the female three setose lateral papillae on each side (Fig. 9A). 1st and 2nd flagellomeres (longer in A. mineira than those of A. gaucha), the number of male frontal setae (26-32 Gall: Fusiform, brown, glabrous on stems of in A. gaucha and 10 in A. mineira), shape of male hypo- Vernonanthura polyanthes. proct (deeply bilobed in A. gaucha and slightly bilobed in
Figure 8 in Two new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Asteraceae from Brazil
Figure 8. Asphondylia mineira, sp. nov., pupa: (A) General aspect, (B) Head, ventral view and prothoracic spiracle, c-d) Thorax integument, dorsal view, (C) basal margin, (D) central region, (E) 7th and 8th abdominal segments, dorsal view.
Figure 7 in Two new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Asteraceae from Brazil
Figure 7. Asphondylia mineira, sp. nov., female: (A) Head, frontal view, (B) 3rd flagellomere, (C) Foreleg, tarsomere, lateral view, (D) Midleg, tarsal claw and empodium, lateral view, (E) Wing, (F) abdomen, lateral view.
Figure 6 in Two new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Asteraceae from Brazil
Figure 6. Asphondylia mineira, sp. nov., male: (A) 7th and 8th abdominal segments, dorsal view, (B) Terminalia, dorsal view.
Figure 2 in Two new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Asteraceae from Brazil
Figure 2. Asphondylia gaucha, sp. nov., male: (A) 3rd abdominal segments to terminalia, lateral view, (B) Terminalia, dorsal view.
Figure 1 in Two new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Asteraceae from Brazil
Figure 1. Asphondylia gaucha, sp. nov., male: (A) Head, frontal view, (B) 9th-12th flagellomeres, (C) 5th flagellomere, (D) Hindleg, 1st tarsomere, lateral view, (E) Foreleg, tarsal claw and empodium, lateral view, (F) Wing.
Data from: Systematics of the plumeweeds: The genus Carminatia (Eupatorieae, Asteraceae)
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Tetramolopium stemmermanniae sp. nov. (Asteraceae), a new species found at Pōhakuloa Training Area, Hawaiʻi Island
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Phylogenomics resolves the relationships within Antennaria (Asteraceae, Gnaphalieae) and yields new insights into its morphological character evolution and biogeography
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Evolutionary history and genetic diversity of apomictic allopolyploids in Hieracium s.str. (Asteraceae): morphological versus genomic features
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Primary hybrid zone formation in Tephroseris helenitis (Asteraceae), following postglacial range expansion along the central Northern Alps
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Data from: Complex but clear allopolyploid pattern of subtribe Tussilagininae (Asteraceae: Senecioneae) revealed by robust phylogenomic evidence, with development of a novel homeolog-sorting pipeline
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Development of an efficient CRISPR-mediated genome editing platform in the diploid-polyploid model system Tragopogon (Asteraceae)
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