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263 results for “male and female genitalia”
Figure 9 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 9 Leucoptera coffeella, female genitalia. (A) Ovipositor ventral view. Arrow indicates ovipositor lobe. (B) Sclerite ventral view. Arrow indicates the sclerite's concave end. (C) Corpus bursae ventral view. Arrow indicates spines.
Figure 5 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 5 Leucoptera coffeella, adult male. (A) Male ventral view. White-colored body scales. (B) Male dorsal view. Apex of the wings with black dots surrounded by yellow scales, with a "V" shape facing the posterior region of the body.
Figure 8 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 8 Leucoptera coffeella, adult female. (A) Female ventral view.(B) Female dorsal view. Arrow indicates the apex of the abdomen with a "C" shape facing the anterior region of the body.
Figure 1 in The coffee leaf miner, Leucoptera coffeella (Lepidoptera: Lyonetiidae): identification of the larval instars and description of male and female genitalia
Figure 1 States of Brazil with the incidence of Leucoptera coffeella (red dots). Rondônia (RO), Mato Grosso (MT), Pará (PA), Goiás (GO), Distrito Federal (DF), Bahia (BA), Minas Gerais (MG), Espírito Santo (ES), São Paulo (SP), Rio de Janeiro (RJ), Paraná (PR), Santa Catarina (SC).
Plate 2 in Morphological studies on male and female genitalia of Myrmecaelurus acerbus (Walker, 1853) (Neuroptera: Myrmeleontidae)
Plate 2. (Figures 5-9) SEM micrographs of male genitalia of Myrmecaelurus acerbus (Walker, 1853). 5. Dorsal view,
Plate 3 in Morphological studies on male and female genitalia of Myrmecaelurus acerbus (Walker, 1853) (Neuroptera: Myrmeleontidae)
Plate 3. (Figures 10-13) SEM micrographs of female genitalia of Myrmecaelurus acerbus (Walker, 1853). 10. Lateral view. 11. Magnified part of gonocoxite IX, 12. Sensilla trichoidea on gonocoxite IX, 13. Magnified part of gonocoxite VIII.
Plate 1 in Morphological studies on male and female genitalia of Myrmecaelurus acerbus (Walker, 1853) (Neuroptera: Myrmeleontidae)
Plate 1. (Figures 1-4). Male genitalia of Myrmecaelurus acerbus (Walker, 1853). 1. Lateral view, 2. Gonocoxites IX and XI (ventral view). Female genitalia of Myrmecaelurus acerbus (Walker, 1853). 3. Lateral view, 4. Ventral view.
FIGURE 5. Male genitalia L in Taxonomic status of the genus Lunakia, including a redescription of the male and female genitalia of Lunakia alyssella (Klimesch, 1941) (Lepidoptera, Plutellidae)
FIGURE 5. Male genitalia L. alyssella: a—tegumen appendages, b—socci, c—tuba analis.
FIGURE 3. Male genitalia L in Taxonomic status of the genus Lunakia, including a redescription of the male and female genitalia of Lunakia alyssella (Klimesch, 1941) (Lepidoptera, Plutellidae)
FIGURE 3. Male genitalia L. alyssella: a—general view, b—aedeagus, c—separated valva.
FIGURE 10 in Taxonomic status of the genus Lunakia, including a redescription of the male and female genitalia of Lunakia alyssella (Klimesch, 1941) (Lepidoptera, Plutellidae)
FIGURE 10. Female genitalia (general view): a—E. messingiella, b—E. syenitella.
FIGURE 4. Male genitalia L in Taxonomic status of the genus Lunakia, including a redescription of the male and female genitalia of Lunakia alyssella (Klimesch, 1941) (Lepidoptera, Plutellidae)
FIGURE 4. Male genitalia L. alyssella: a—apex of aedeagus, b—end of aedeagus.
FIGURE 7. Female genitalia L in Taxonomic status of the genus Lunakia, including a redescription of the male and female genitalia of Lunakia alyssella (Klimesch, 1941) (Lepidoptera, Plutellidae)
FIGURE 7. Female genitalia L. alyssella: antrum with subgenital plate.
FIGURE 4 in Pararhigognostis-a new genus for Plutella stichocentra Meyrick, 1932 (Lepidoptera, Plutellidae), with a redescription of its male and female genitalia
FIGURE 4. Pararhigognostis stichocentra, wing venations: A, forewing, B, hindwing.
TABLE 1 in Pararhigognostis-a new genus for Plutella stichocentra Meyrick, 1932 (Lepidoptera, Plutellidae), with a redescription of its male and female genitalia
<p><b>TABLE 1.</b> Summary of differences in characters between the genera <i>Plutella</i>, <i>Plutelloptera</i>, <i>Eidopasia messingiella</i> group, <i>E. syenitella</i> group, <i>Rhigognostis</i> and the new genus <i>Pararhigognostis</i>.</p><table><tbody><tr><th>characters</th><th><i>Plutella</i></th><th><i>Plutelloptera</i></th><th><i>E. messingiella</i> -group</th><th><i>E. syenitella —</i> group</th><th><i>Rhigognostis</i></th><th><i>Pararhigognostis</i></th></tr></tbody><tbody><tr><th>course of R1 vein in foreving</th><td>reaches the costal margin within</td><td>reaches the costal margin beyond pterostigma</td><td></td><td>reaches the costal margin within the pterostigma (Fig. 4A)</td></tr><tr><td>pterostigma</td><td></td><td></td><td></td><td></td></tr><tr><th>course veins of M1 and M3 in hindving</th><td>stalked M1 and M2</td><td></td><td>free (Fig. 4B)</td><td></td><td></td><td></td></tr><tr><th>male</th></tr><tr><th>valva shape</th><td>elongate with rounded apex</td><td>broad, square or trapezoid outline</td><td>broad, obovate</td><td>elongate, rectangular in outline</td><td>elongate, gently rounded apex constricted at 2/3 of its lenght</td><td>elongate, trapezoid (Fig. 6A)</td></tr><tr><th>costal margin of valva</th><td>gently curved</td><td>straight</td><td>slightly bent</td><td>straight</td><td>with a gently rounded, broad apex, constricted at 2/3 of its length</td><td>straight with a very small, hooked top halfway along (Fig. 6A)</td></tr><tr><th>posterior margin of valva</th><td>distinctly elongated</td><td>gently rounded</td><td>rounded, at the ventral margin</td><td>gently rounded</td><td>distinctly elongated</td><td>straight with a small recess one</td></tr><tr><th>ventral margin of valva</th><td>straight</td><td></td><td>slightly convex at 2/3 of its lenght</td><td>straight</td><td>gently rounded</td><td>straight, with a distinct, sclerotized tooth-shaped appendage immediately (Fig. 6A)</td></tr><tr><th>posterior/ costal apex</th><td>oval</td><td>rounded</td><td></td><td>oval</td><td></td><td>rounded (Fig. 6A)</td></tr><tr><th>posterior/ventral apex</th><td>rounded</td><td>raised, rounded with a group of small thorns</td><td>rounded</td><td>oval</td><td>triangular (Fig. 6A)</td></tr><tr><th>sacculus</th><td>fololded with distinct spines</td><td>absent</td><td>deeply folded basally, which two complicated arms which bear stout spines</td><td>long, club-shaped, margins conspicuously denticulate</td><td>absent</td><td></td></tr><tr><th>length of aedeagus as compare to valve</th><td>shorter</td><td></td><td>slightly longer</td><td>shorter</td><td></td><td>twice as long</td></tr><tr><th>shape of aedeagus</th><td>straight</td><td></td><td>curved</td><td></td><td></td><td>straight (Fig. 5B)</td></tr><tr><th>base of aedeagus</th><td>broadened with a pair</td><td>broadened</td><td>slightly dilated</td><td>expanded on one side</td><td>unilaterally extended</td><td>slightly, dilated (Fig. 6C)</td></tr><tr><th>of lateral hooks</th></tr><tr><th>apex of aedeagus</th><td>needle shaped</td><td>narrowed</td><td>slightly wider</td><td>gently tapering</td><td>sharpened</td><td>one-sided sharpened (Fig. 6B)</td></tr><tr><th>aedeagus</th><td>sclerotized</td><td>weakly</td><td>membranous</td><td>sclerotized</td><td>weakly sclerotized</td><td>sclerotized (Fig. 5B)</td></tr><tr><td></td><td>sclerotized</td><td></td><td></td><td></td><td></td></tr><tr><th>cornuti with aedeagus</th><td>absent</td><td></td><td></td><td></td><td>single long dentate, pointed spine</td><td>absent</td></tr><tr><th>tegumen gnathos complex</th><td>gnathal process surrounding of the anal tube</td><td>not isolated</td><td>semi-elliptical</td><td>not isolated</td><td>gnathal process surrounding of the anal tube</td><td>not isolated</td></tr><tr><th>saccus</th><td>large, long strongly sclerotized</td><td>large, shorter, strongly slerotized</td><td>wide, short and slightly curved</td><td>long and narrow</td><td>very long, narrow</td><td>long (Fig. 5A)</td></tr><tr><th>apodema</th><td>absent</td><td></td><td></td><td></td><td>present</td><td>absent</td></tr><tr><th>female</th><td></td><td></td><td></td><td></td><td></td><td></td></tr><tr><th>apophyses posteriores</th><td>thiny, short</td><td>thiny, longer</td><td>thiny, short</td><td></td><td>thiny, very short</td><td>thiny, long (Fig. 7A)</td></tr><tr><th>apophyses anteriores</th><td>thiny, long</td><td>thiny, short</td><td>thiny and curved in half its length</td><td>thiny</td><td>thiny, very short</td><td>thiny, long (Fig. 7A)</td></tr><tr><th>length of a. posteriores as compare to a. anteriores</th><td>shorter</td><td>longer</td><td>slightly longer</td><td>this same lenght</td><td>twice as long</td><td>longer</td></tr><tr><th>antrum</th><td>cup like, thin, only slighty wider than ductus bursa</td><td>cup like, clearly wider than ductus bursae</td><td>elongated, sclerotized</td><td>cup-shaped, membranous</td><td>initially narrow, then strongly distended and round</td><td>narrow and elongated, cup-shaped (Fig. 7B)</td></tr><tr><th>ductus bursae below antrum</th><td>sclerotized</td><td></td><td>membranous</td><td>sclerotized</td><td>only short section sclerotized</td><td>dilated, markedly sclerotized (Fig. 7A)</td></tr><tr><th>ductus bursae</th><td>short, strongly sclerotized, very thin</td><td>very short, sclerotized</td><td>very short, strengthened at the antrum</td><td>not very long, membranous</td><td>long, membranous</td><td>membranous (Fig. 7A)</td></tr><tr><th>bursa copulatrix</th><td>elongate, small,</td><td>elongate, long,</td><td>elongated, irregular</td><td>small, oval,</td><td>large, oval</td><td>small, round</td></tr><tr><th>strengthenedd walls of bursa copulatrix</th><td>membranous</td><td></td><td></td><td>sclerotised, very numerous spines, tiny and short</td><td>membranous, with small teeth or strongly sclerotized</td><td>membranous, with small teeth (Fig. 7A)</td></tr><tr><th>signum</th><td>absent</td><td></td><td></td><td></td><td>present or absent</td><td>absent</td></tr></tbody></table><p>......continued on the next page</p>
Data from: Females of a cannibalistic spider control mutilation of their genitalia by males
When females can mate multiply, the interests of both sexes over female remating may not coincide, leading to selection for adaptations and counter-adaptations in males and females. In several orb-weaving spiders, males damage external structures of the female genitalia during copulation, which hinders the female from remating. We investigated whether females have control over the mutilation of their genitalia in the orb-weaving spider Larinia jeskovi. We found that female sexual cannibalism during copulation reduced the number of insertions a male was able to perform and hence limited the probability of genital mutilation by the male. Genital mutilation did not differ between treatments in which females experienced different availabilities of other males before the mating trial: males absent, males near the female ('vicinity group'), and males in the female's web ('web group'). However, traits of the mating male (size, condition) were significantly correlated with the occurrence of cannibalism during mating in 'web' and 'vicinity' treatments. These results suggest that females have control over mutilation by an early termination of mating, can respond to the availability of potential mates and can alter the probability of mutilation according to certain male traits. Female sexual cannibalism may represent a counter-adaptation to genital mutilation allowing females to mate multiply.
FIGURE 1 in The larva, pupa, and female and male genitalia of Aedes (Howardina) guatemala Berlin, 1969 (Diptera: Culicidae)
FIGURE 1. Collection sites of Aedes (Howardina) guatemala in Chiapas State, Mexico.
Data from: Quantitative genetic insights into the coevolutionary dynamics of male and female genitalia
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Data from: Evolution of male and female genitalia following release from sexual selection
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Data from: Females of a cannibalistic spider control mutilation of their genitalia by males
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Data from: Artificial selection on male genitalia length alters female brain size
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