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11 results for “Anophelinae”
Figuras 1-3 in Registro de especies de Anopheles Meigen, 1818 (Diptera: Culicidae: Anophelinae) en el municipio Palavecino, estado Lara, Venezuela
Figuras 1-3. Vista lateral de las especies de Anopheles. 1. An. albimanus Wiedemann, 1820. 2. An. marajoara Galvão y Damasceno, 1942. 3. An. pseudopunctipennis Theobald, 1901. / Lateral view of Anopheles species. 1. An. albimanus Wiedemann, 1820. 2. An. marajoara Galvão & Damasceno, 1942. 3. An. pseudopunctipennis Theobald, 1901.
Figura 4 in Registro de especies de Anopheles Meigen, 1818 (Diptera: Culicidae: Anophelinae) en el municipio Palavecino, estado Lara, Venezuela
Figura 4. Localización de ● An. albimanus, ● An. marajoara y ● An. pseudopunctipennis en Venezuela. El estado representado es: Lara (LA). / Location of ● An. albimanus, ● An. marajoara and ● An. pseudopunctipennis in Venezuela. The state represented is: Lara (LA).
FIGURE 7. Seta 2-P in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 7. Seta 2-P of the larva of Ch. rozeboomi. The thickened secondary branches (upper arrow) borne at the ends of the primary branches (lower arrow) is a unique feature of the species (compare with seta 2-P in Figure 2B).
FIGURE 4 in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 4. Hindtibia (anterior view) of (A) Chagasia ablusa and (B) Ch. fajardi showing the presence and absence of semi-erect clusters of dark scales, respectively.
FIGURE 5 in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 5. Hindtarsus (anterior view) of (A) Chagasia bathana, (B) Ch. bonneae, (C) Ch. fajardi, (D) Ch. ablusa and (E) Ch. rozeboomi.
FIGURE 2 in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 2. Fourth-instar larva of Chagasia bonneae: A, head, dorsal (left) and ventral (right) aspects of left side; B, thorax and abdominal segments I–VI, dorsal (left) and ventral (right) aspects of left side; C, abdominal segments VII–X, left side. A, antenna; AMPc, anterior median process; C, cranium; P, prothorax; M, mesothorax; NSG, Nuttall and Shipley's organ; S, spiracular lobe; T, metathorax; TP, tergal plate; I–VIII,X = abdominal segments I–VIII and X; 1–15 = setal numbers for specified areas, e.g., seta 5-C. Scales in mm.
FIGURE 1 in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 1. Pupa and male genitalia of Chagasia bonneae: A, pupa, left side of cephalothorax, dorsal to right; B, pupa, dorsal (left) and ventral (right) aspects of metathorax and abdomen; C, male genitalia, aspects as indicated. Ae, aedeagus; Cl, claspette; CT, cephalothorax; Gc, gonocoxite; Gs, gonostylus; Pa, paddle; T, trumpet; I–IX = abdominal segments I- IX; 1–14 = setal numbers for specified areas, e.g., seta 3-I. Scales in mm.
FIGURE 3 in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 3. Scutum (dorsal view) of (A) Chagasia bonneae and (B) Ch. fajardi. The acrostichal scales (red arrows) are entirely pale in Ch. bonneae and dark posteriorly in Ch. fajardi (some scales have been lost in specimen shown); pale para-supraalar scales (yellow arrows), absent in the former species, are often present in the latter species. Note that the dorsocentral scales on the anterior promontory are distinctly yellow in Ch. bonneae but more or less unicolorous with the other dorsocentral scales in Ch. fajardi.
FIGURE 6 in Review of the genus Chagasia (Diptera: Culicidae: Anophelinae)
FIGURE 6. Wing of Ch. fajardi showing the pale spots that are usually present on the radius (upper arrow) and at the base of media-two (lower arrow).
Data from: Phylogeny of Anophelinae using mitochondrial protein coding genes
Malaria is a vector-borne disease that is a great burden on the poorest and most marginalized communities of the tropical and subtropical world. About 41 species of Anopheline mosquitoes can effectively spread species of Plasmodium parasites that cause human malaria. Proposing a natural classification for the subfamily Anophelinae has been a continuous effort, addressed using both morphology and DNA sequence data. Monophyly of the genus Anopheles, and phylogenetic placement of the genus Bironella, subgenera Kerteszia, Lophopodomyia, and Stethomyia within the subfamily Anophelinae, remain in question. To understand the classification of Anophelinae we inferred the phylogeny of all three genera (Anopheles, Bironella, Chagasia) and major subgenera by analyzing the amino acid sequences of the 13 protein coding genes of 150 newly sequenced mitochondrial genomes of Anophelinae and 18 newly sequenced Culex species as outgroup taxa, supplemented with 23 mitogenomes from GenBank. Our analyses generally place genus Bironella within the genus Anopheles, which implies that the latter as it is currently defined is not monophyletic. With some inconsistencies, Bironella was placed within the major clade that includes Anopheles, Cellia, Kerteszia, Lophopodomyia, Nyssorhynchus, and Stethomyia, which were found to be monophyletic groups within Anophelinae. Our findings provided robust evidence for elevating the monophyletic groupings Kerteszia, Lophopodomyia, Nyssorhynchus, and Stethomyia to genus level; genus Anopheles to include subgenera Anopheles, Baimaia, Cellia and Christya; Anopheles parvus to be placed into a new genus; Nyssorhynchus to be elevated to genus level; the genus Nyssorhynchus to include subgenera Myzorhynchella and Nyssorhynchus; Anopheles atacamensis and Anopheles pictipennis to be transferred from subgenus Nyssorhynchus to subgenus Myzorhynchella; and subgenus Nyssorhynchus to encompass the remaining species of Argyritarsis and Albimanus Sections.
Data from: Phylogeny of Anophelinae using mitochondrial protein coding genes
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