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24,097 results for “Hemiptera,”
Maternal effects on the advertisement signals and mate preferences of adult offspring in Enchenopa treehoppers (Hemiptera: Membracidae)
<p>We tested for maternal effects on the mating signals and mate preferences of adult offspring in a plant-feeding insect that communicates via plant-borne vibrational signals. We experimentally manipulated an aspect of the social environment experienced by egg-laying mothers: aggregation density. We detected a strong maternal effect in a male signal trait, with sons of mothers that experienced low aggregation density signaling more. We also detected a weak maternal effect on female mate preferences, with daughters of mothers that experienced low aggregation density being less selective. We discuss the evolutionary consequences of these maternal effects in terms of the signal-preference relationship; the maintenance of variation under selection; whether they may be beneficial for offspring; and potential mechanisms that may be involved in their expression.</p>
Fig. 14 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 14. Known distribution of species of Innobindus Jacobi, 1928. A. artus group and I. oppositus sp. nov. B. licinus group. C. multimaculatus group.
Fig. 1. Female genitalia. A in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 1. Female genitalia. A. Innobindus gimani sp. nov., ♀, paratype (MLM MLM01006), ventral view. B–D. I. loriensis, ♀, paratype (ASCU ASCTHE017056). B. Ventral view. C. Lateral view. D. Caudolateral view.
Fig. 4 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 4. Innobindus loriensis sp. nov., holotype, ♂ (ASCU ASCTHE017059). A. Habitus. B–D. Head and thorax.
Fig. 5 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 5. Innobindus gimani sp. nov., holotype, ♂ (ASCU ASCT00181701). A. Habitus. B–D. Head and thorax.
Fig. 13 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 13. Innobindus oppositus sp. nov., holotype, ♂ (ASCU ASCTHE017104). A. Aedeagus, left lateral view. B. Aedeagus, right lateral view. C–D. Anal tube. E–F. Genital styles.
Fig. 12 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 12. Innobindus geminatus sp. nov., holotype, ♂ (AMS K.594470). A. Aedeagus, left lateral view. B. Aedeagus, ventral view. C. Aedeagus, right lateral view. D–E. Anal tube. F–G. Genital styles.
Fig. 3 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 3. Innobindus kaanti sp. nov., paratype, ♂ (ASCU ASCTHE029135). A. Habitus. B–D. Head and thorax.
Fig. 7 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 7. Innobindus oppositus sp. nov., holotype, ♂ (ASCU ASCTHE017104). A. Habitus. B–D, F. Head and thorax. E. Hindwing.
Fig. 10 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 10. Innobindus loriensis sp. nov., holotype, ♂ (ASCU ASCTHE017059). A. Aedeagus, left lateral view. B. Aedeagus, ventral view. C. Aedeagus, right lateral view. D–E. Anal tube. F –G. Genital styles.
Fig. 11 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 11. Innobindus gimani sp. nov., holotype, ♂ (ASCU ASCT00181701). A. Aedeagus, left lateral view. B. Aedeagus, ventral view. C–D. Anal tube. E–F. Genital styles.
Fig. 9 in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 9. Innobindus kaanti sp. nov., holotype, ♂ (ASCU ASCTHE016807). A. Aedeagus, left lateral view. B. Aedeagus, ventral view. C–D. Anal tube. E–F. Genital styles.
Figure 4 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 4. Percentage of branches with Quesada gigas egg nest in the two areas of the experiment, in different thirds of the coffee plant height and in the collection periods of the branches. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
Figure 3 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 3. Quesada gigas eggs collected from dry coffee-plant branches. Scale: 1 mm. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
Figure 2 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 2. Oviposition by Quesada gigas on a dry coffee-plant branch. A. Female depositing eggs inside the branch. B. Insertion point of ovipositor that was sealed after egg-laying. C. Mass of eggs shown from upper view. D. Mass of eggs shown in lateral view. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
Figure 1 in Oviposition of Quesada gigas (Hemiptera: Cicadidae) in coffee plants
Figure 1. Distribution of the sampling points by block in each analysed area. São Sebastião do Paraíso, Minas Gerais, Brazil. 2008.
Figura 1 in Levantamento de cigarras (Hemiptera: Cicadidae) em área de mata de galeria no município de Israelândia (GO)
Figura 1. Curva de rarefação (Mao Tau) (círculo) e estimativa de espécie (Jackknife 1) (quadrado) obtidos para cigarras coletadas com o uso de armadilha luminosa em área de mata de galeria localizada no município de Israelândia durante o período de agosto de 2017 a julho de 2018. Os pontos indicam o valor médio e as barras o intervalo de confiança a 95%.
Figura 2 in Levantamento de cigarras (Hemiptera: Cicadidae) em área de mata de galeria no município de Israelândia (GO)
Figura 2. Número de cigarras (acima) e de espécies (abaixo) coletadas por mês com o uso de armadilha luminosa em área de mata de galeria localizada no município de Israelândia durante o período de agosto de 2017 a julho de 2018.
Figs. 3-6 in Reconsideration of Baltic Amber "Sinalda" with description of a new genus and species (Hemiptera, Heteroptera, Tingidae)
Figs. 3-6: Parasinalda nov.gen. (3) head and pronotum of P. groehni nov.sp.; (4) head and pronotum of P. baltica nov.comb., male from coll. E. Heiss; (5) P. baltica, female, dorsal view; (6) P. froeschneri nov.comb. holotype female(?), dorsal view. Fig. 7: Sinalda applanata, holotype female, dorsal view. Abbreviations: ant – antenniferous lobes; cpl – unpaired clypeal tubercle; dmt – unpaired dorsomedial tubercle; front – frontal paired tubercles; jug – jugal paired tubercles; occ – occipital paired tubercles. Scale for Figs. 3-4 – 1mm. Figs. 5,6 after GOLUB & POPOV 1998, Fig. 7 – after GOLUB & POPOV 2005.
Figs. 1-2 in Reconsideration of Baltic Amber "Sinalda" with description of a new genus and species (Hemiptera, Heteroptera, Tingidae)
Figs. 1-2: Holotype male of Parasinalda groehni nov.gen., nov.sp.: (1) dorsal view; (2) ventral view.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.