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32 results for “Trophobiosis”
FIGURES 52–63. Xerophytavorus rastrullus gen.n in New leafhopper genera and species (Hemiptera: Cicadellidae) which feed on Velloziaceae from Southern Africa, with a discussion of their trophobiosis
FIGURES 52–63. Xerophytavorus rastrullus gen.n. & sp.n., male. 52, tegmina; 53, foretibia setation; 54, aedeagus and connective, dorsal view; 55, anterior and posterior abdominal apodemes, anterior view; 56, posterior abdominal apodeme, dorsal view; 57, anterior abdominal apodeme, dorsal view; 58, pygofer, dorsally; 59, pygofer, lateral view; 60, process and apical macrosetae cluster on pygofer, ventral view; 61, plate and valve, ventral view; 62, aedeagus, lateral view; 63, style.
FIGURES 22–27 in New leafhopper genera and species (Hemiptera: Cicadellidae) which feed on Velloziaceae from Southern Africa, with a discussion of their trophobiosis
FIGURES 22–27. Images of Xerophyta species, host plants of Xerophytavorus gen.n. and Xerophytacolus gen.n. species. 22, 23, Xerophyta sp. in grassland at Malolotja Nature Reserve, Swaziland; 24, approx. 1 m tall plant in Chimanimani Nature Reserve, Zimbabwe; 25, hairy-leaved Xerophyta sp. in The Downs, Orrie Baragwanath Pass, South Africa; 26, up to 2 m tall plant near Lydenburg, South Africa; 27, habitat at Faerie Glen Nature Reserve, Pretoria, where most trophobiosis observations were made.
FIGURES 88–97. Xerophytacolus claviverpus gen.n in New leafhopper genera and species (Hemiptera: Cicadellidae) which feed on Velloziaceae from Southern Africa, with a discussion of their trophobiosis
FIGURES 88–97. Xerophytacolus claviverpus gen.n. & sp.n., female. 88, sternite 7; 89, valvula, 3; 90–93, valvula 1; 90, whole structure; 91, image of sculpture at apex; 92, line drawing of sculpture medially; 93, line drawing of sculpture at apex; 94–97, valvula 2; 94, whole structure; 95, image of serration at apex; 96, line drawing of serration at apex; 97, line drawing of serration medially.
FIGURES 8–14. Xerophytacolus gen.n. 8–11, Xerophytacolus claviverpus gen.n in New leafhopper genera and species (Hemiptera: Cicadellidae) which feed on Velloziaceae from Southern Africa, with a discussion of their trophobiosis
FIGURES 8–14. Xerophytacolus gen.n. 8–11, Xerophytacolus claviverpus gen.n. & sp.n.; 8, male, face; 9, nymph; 10, male, The Downs, Orrie Baragwanath Pass, South Africa; 11, forewing. 12–14, Xerophytacolus tubuverpus gen.n. & sp.n., Faerie Glen, Pretoria; 12, male; 13, female; 14, nymph.
Figure 6 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 6. Relationship among mean number of ants recruited and stinkbug aggregation size in rocky outcrops, southeastern Brazil.
Figure 3 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 3. Frequency of adults plus nymphs, found on five plant microhabitats contingent with aggregation size, found on 70 randomly selected aggregations in rocky outcrops, southeastern Brazil. Total number of individuals per aggregation class: 1, n = 6; 2 to 10, n = 39; 11 to 50, n = 590; 51 to 100, n = 906; 101 to 200, n = 1293; 201 to 300, n = 1874;> 301, n = 4646).
Figure 7 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 7. Relationship among ant:stinkbug ratio and aggregation size in rocky outcrops, southeastern Brazil.
Figure 5 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 5. Daily variation on ant species recruitment to aggregations in rocky outcrops, southeastern Brazil. Number of aggregations with ant species present on at least one count in parenthesis, points represents mean and whiskers represent standard error.
Figure 1 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 1. Observed distribution of Eurystethus microlobatus aggregations (n = 98; black bars) contingent with Psittacanthus robustus distribution (n = 519, white bars) on five plant size classes in rocky outcrops, southeastern Brazil.
Fig. 1 in New evidences supporting trophobiosis between populations of Edessa rufomarginata (Heteroptera: Pentatomidae) and Camponotus (Hymenoptera: Formicidae) ants
Fig. 1. Record of a Camponotus rufipes ant consuming honeydew produced by a fourth instar nymph of E. rufomarginata. In (1), the ant is tapping its antennae onto the end of the nymph's abdomen, a process that continues in (2). In (3), the ant finally receives a tiny droplet of sugary exudate from the nymph. However, after promptly consuming it, in (4) it continues to tap its antennae on the nymph's abdomen. In (5), it received a bigger amount of exudate from the nymph prompt consumed in (6). After consuming the liquid, the ant continued to tap the nymph's abdomen. The arrows within some of the photos indicate the presence of the honeydew droplets within the ant's mandibles. Photos by Sebastían Sendoya.
Figure 2 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 2. Distribution of Eurystethus microlobatus aggregations (n = 98) and population (n = 9350) on seven aggregation size classes in rocky outcrops, southeastern Brazil.
Figure 4 in Trophobiosis between ants and Eurystethus microlobatus Ruckes 1966 (Hemiptera: Heteroptera: Pentatomidae) a cryptic, gregarious and subsocial stinkbug
Figure 4. The stinkbug Eurystethus microlobatus on its host plant Psittacanthus robustus in campos rupestres, southeastern Brazil. (A) Stinkbug aggregation on haustorial root highly camouflaged within host bark. (B) Stinkbug clump on secondary shoot. (C) Gregarious adults copulating and forming a shield over younger instars. (D) Female stinkbug guarding oviposition on primary shoot. Ants attending stinkbugs: (E) Camponotus rufipes, (F) Camponotus melanoticus, (G) Camponotus crassus, (H) Cephalotes pusillus.
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