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1,186 results for “Scolytinae”
FIGURE 1 in New species and new records of Amasa Lea, 1894 ambrosia beetles from Thailand (Coleoptera: Curculionidae: Scolytinae: Xyleborini)
FIGURE 1. Insect survey localities in Thailand. Red stars indicate surveyed areas, blue stars indicate locations where new species and newly recorded Amasa species were captured. Yellow stars indicate localities of previously recorded Amasa in Thailand. Source: the map was modified from a Royal Forest Department of Thailand map.
Number of gallery arms for oviposition by the tree-killing bark beetle Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae)
<p><em>Polygraphus</em> <em>proximus</em> Blandford (Coleoptera: Curculionidae: Scolytinae) is a non-aggressive monogynous bark beetle. It has caused mass mortality in fir (<em>Abies</em> spp.) forests in the past decade. Although gallery structures made by polygynous beetles may influence their reproductive success, the gallery structure and the number of eggs laid by the monogynous tree-killing bark beetle <em>P</em>. <em>proximus</em> have not been investigated in detail in the natural setting of their native range. We, therefore, investigated the length of mother galleries of <em>P</em>. <em>proximus</em> and the number of eggs oviposited by the beetles in relation to gallery systems with different numbers of arms in Japan. The number of eggs oviposited in two-armed galleries was significantly greater than that observed in one-armed galleries. Additionally, the length of one- or two-armed galleries with no oviposition was significantly shorter than that in galleries consisting of more than two arms. Our results suggest that the optimal number of arms in a gallery system (in terms of the number of eggs oviposited) was two.</p>
FIGURE 1 in Four new species of Arixyleborus Hopkins, 1915, ambrosia beetles from Thailand (Coleoptera: Curculionidae: Scolytinae: Xyleborini)
FIGURE 1. Arixyleborus halabala sp. nov. holotype female A) dorsal view B) lateral view C) postero-lateral view D) frons E) antenna.
FIGURE 2 in Four new species of Arixyleborus Hopkins, 1915, ambrosia beetles from Thailand (Coleoptera: Curculionidae: Scolytinae: Xyleborini)
FIGURE 2. Arixyleborus liratus sp. nov. holotype female A) dorsal view B) lateral view C) postero-lateral view D) frons E) antenna.
FIGURE 3 in Four new species of Arixyleborus Hopkins, 1915, ambrosia beetles from Thailand (Coleoptera: Curculionidae: Scolytinae: Xyleborini)
FIGURE 3. Arixyleborus longicauda sp. nov. holotype female A) dorsal view B) lateral view C) postero-lateral view D) frons E) antenna.
FIGURE 4 in Four new species of Arixyleborus Hopkins, 1915, ambrosia beetles from Thailand (Coleoptera: Curculionidae: Scolytinae: Xyleborini)
FIGURE 4 Arixyleborus vellus sp. nov. holotype female A) dorsal view B) lateral view C) postero-lateral view D) frons E) antenna.
FIGURE 1 in Planiculus angulatus, a new species of xyleborine ambrosia beetle from Thailand (Coleoptera, Curculionidae, Scolytinae, Xyleborini)
FIGURE 1. Planiculus angulatus sp. nov. holotype female A) lateral view B) dorsal view C) postero-lateral view D) frons E) antenna.
FIGURE 9 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 9. Sueus pilosus female paratype (USNMENT01595294), 1.6 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
FIGURE 4 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 4. Sueus chatterjeei sp. nov. female holotype (USNMENT01595085), 2.4 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
FIGURE 8 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 8. Sueus obesus female (Thailand, Suratthani) 2.5 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
FIGURE 3 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 3. Sueus borneensis, female (Indonesia, Sulawesi Utara, RABC) 2.25 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
FIGURE 2 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 2. Phylogeny of Sueus species resulting from the parsimony analysis inferred from COI and CAD DNA sequences. Numbers above branch are bootstrap values, numbers below are posterior probabilities, circles are bootstrap values 90–99%, and squares are posterior probabilities 0.9–0.99.
FIGURE 6 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 6. Sueus insulanus sp. nov. female holotype, 2.0 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
FIGURE 1 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 1. Approximate collection localities of Sueus specimens used in the phylogenetic analysis. Numbers refer to last digits of DNA vouchers in Table 1. Blue square = Sueus niisimai, red circle = Sueus pilosus, yellow oval = Sueus obesus, purple polygon = Sueus insulanus, and orange star = Sueus granulatus.
FIGURE 7 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 7. Sueus niisimai female (MSUC_ARC_320284) 1.7 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
FIGURE 5 in A taxonomic review of Sueus Murayama, 1951 ambrosia beetles (Coleoptera: Curculionidae: Scolytinae: Hyorrhynchini) aided by molecular phylogenetic analyses
FIGURE 5. Sueus granulatus female (MSUC_ARC_320283), 2.43 mm A) dorsal view; B) lateral view; C) frons; D) posterolateral view.
Figs. 92–95 in A phylogenetic and taxonomic assessment of Afrotropical Micracidini (Coleoptera, Scolytinae) reveals a strong diversifying role for Madagascar
Figs. 92–95 Dorsal, lateral and front view of specimens compared to the holotype of Phloeocurus africanus; 92–94 female; 95 male frons
Figs. 56–64 in A phylogenetic and taxonomic assessment of Afrotropical Micracidini (Coleoptera, Scolytinae) reveals a strong diversifying role for Madagascar
Figs. 56–64 Dorsal, lateral and front view of the female holotype of 56, 59, 62 Afromicracis kenyaensis; 57, 60, 63 Afromicracis jasminiae; 58, 61, 64 Microlanurgus bicolor
Figs. 34–41 in A phylogenetic and taxonomic assessment of Afrotropical Micracidini (Coleoptera, Scolytinae) reveals a strong diversifying role for Madagascar
Figs. 34–41 Male genitalia in selected Micracidini. 34 Micracisella nanula; 35 Cactopinus rhois; 36 Phloeocleptes cristatus; 37 Afromicracis sp.; 38 Neomicracis squamigera (with last two sternites and gut remains); 39 Microlanurgus bicolor; 40 Lanurgus podocarpi; 41 Diplotrichus gracilis
Figs. 8–17 in A phylogenetic and taxonomic assessment of Afrotropical Micracidini (Coleoptera, Scolytinae) reveals a strong diversifying role for Madagascar
Figs. 8–17 Antennae of female Micracidini: 8 Leiomicracis aurea; 9 Afromicracis setifer; 10 Dendrochilus sp.; 11 Neomicracis squamigera; 12 Phloeocurus africanus; 13 Lanurgus rhusi; 14 Diplotrichus sp.; 15 Pseudolanurgus sp.; 16 Pseudomicracis sp.; 17 Microlanurgus bicolor
ScienceDex guides
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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