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1,342 results for “pest”
Figure 2 in Lepidoptera pests of sapodilla (Manilkara zapota (L.) van Royen) in south Florida, with some comments on life history and natural control
Figure 2. Adults of Lepidoptera pests of sapodilla. The unlabeled images in the top half of the figure are to scale, whereas the labeled images in the bottom half of the figure have been resized. A) Dichrorampha sapodilla Heppner. B) Comotia torsicornis Dyar. C) Holcocera crassicornella Dietz. D) Zamagiria laidion (Zeller). E) Pyroderces badia (Hodges). F) Phidotricha erigens Ragonot. G) Banisia myrsusalis Walker. H) Banisia argutula Whalley. I) Electrostrymon angelia (Hewitson). J) Erinnyis ello (Linnaeus).
Figure 3 in Lepidoptera pests of sapodilla (Manilkara zapota (L.) van Royen) in south Florida, with some comments on life history and natural control
Figure 3. Ombrothermic diagram comparing abundances of species and climate variables. L-Abu= Lepidoptera abundances; T-Pre= Total monthly precipitation; A-Tem= Monthly average temperatures; T-Low= Monthly average low temperatures; T-Hig= Monthly average high temperatures.
Figure 1 in Lepidoptera pests of sapodilla (Manilkara zapota (L.) van Royen) in south Florida, with some comments on life history and natural control
Figure 1. Larvae of Lepidoptera pests of sapodilla. A) Dichrorampha sapodilla Heppner. B) Comotia torsicornis Dyar. C) Holcocera crassicornella Dietz. D) Zamagiria laidion (Zeller). E) Electrostrymon angelia (Hewitson). F) Phidotricha erigens Ragonot. G) Banisia myrsusalis Walker. H) Banisia argutula Whalley. I) Pyroderces badia (Hodges). J) Erinnyis ello (Linnaeus).
Figure 12 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 12. Main hosts of Poecilocloeus coffeaphilus n. sp. Left: "Cascarillo" Ladenbergia oblongifolia (Rubiaceae). Right: Pat'egallina Oreopanax floribundum (Araliaceae) defoliated by grasshoppers.
Figure 11 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 11. Evaluation of the mortality percentage in adults of Poecilocloeus coffeaphilus n. sp. by the nematode Mermis sp. A) Adults in growing cages. B) Mortality of adults. C) Adults of Mermis sp. emerged from the grasshoppers.
Figure 8 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 8. Natural enemies of Poecilocloeus coffeaphilus n. sp. A) Leaf mantis Acanthops centralis. B) Leaf mantis Acontista cordillerae. C) Nematode Mermis sp., parasite of P. coffeaphilus adults. D) Assassin bug Zelus vespiformis. E) Entomopathogenic fungi Beauveria bassiana on adult of Poecilocloeus coffeaphilus. F) Beauveria bassiana on P. coffeaphilus nymph.
Figure 10 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 10. Laboratory pathogenicity tests with entomopathogenic fungi on Poecilocloeus coffeaphilus n. sp. A) Nymphs in muslin cages. B) Strain of Metarhizium acridum in a PDA growing medium. C-F) Nymphs of Poecilocloeus coffeaphilus dead and parasitized with Metarhizium acridum.
Figure 6 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 6. Damage caused by nymphs of Poecilocloeus coffeaphilus n. sp. in the foliage of coffee trees. A-C, E, F) Scrapings on the leaf blade. D) Chewed-on and wilted apical shoots.
Figure 3. Poecilocloeus coffeaphilus n in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 3. Poecilocloeus coffeaphilus n. sp. (female). A) Habitus in lateral view. B) Frons. C) Head and pronotum in lateral view. D–F) Terminalia in dorsal, ventral and lateral view respectively.
Figure 2. Poecilocloeus coffeaphilus n in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 2. Poecilocloeus coffeaphilus n. sp. (male). A) Frons. B) Head and pronotum in lateral view. C) Terminalia, dorsal view. D) Rinsed with KOH, showing the divergent aedeagus valves. E) Terminalia, lateral view. F-G) Phallic complex showing the different positions of the epiphallus and the convergent aedeagus valves. F) Dorsal view. G) Lateral view.
Figure 4. Poecilocloeus coffeaphilus n in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 4. Poecilocloeus coffeaphilus n. sp. (male). A) Adult male, lateral view. B) Dorsal view with right wing spread.
Figure 1 in A new Colombian pest species of the genus Poecilocloeus Bruner (Orthoptera: Acrididae: Proctolabinae) on coffee, with a key to the Neotropical species
Figure 1. Map showing the distribution of the Poecilocloeus fruticolus species group in South America.
Figure 5 in Phorodon cannabis Passerini (Hemiptera: Aphididae), a newly recognized pest in North America found on industrial hemp
Figure 5. Phorodon humuli (Schrank). a) Alate vivipara photomicrograph. b) Antennal segments II–VI. c) Siphunculus. d) Head and antennal segment I (left side dorsum; right side venter). e) Cauda dorsum.
Figure 3. Phorodon cannabis Passerini. a in Phorodon cannabis Passerini (Hemiptera: Aphididae), a newly recognized pest in North America found on industrial hemp
Figure 3. Phorodon cannabis Passerini. a) Alate vivipara photomicrograph. b) Antennal segments II-VI. c) Siphunculus. d) Head and antennal segment I (left side dorsum; right side venter). e) Cauda dorsum. f) Enlargement of dorsal abdominal spatulate setae.
Dataset_Dryocosmus_Torymus_Article recommended by PCI Zoology: The open bar is closed: restructuration of a native parasitoid community following successful control of an invasive pest.
<p>This Dataset has been used for the analyses within the paper recommended by PCI Zoology and entitled:</p> <p>"The open bar is closed: restructuration of a native parasitoid community following successful control of an invasive pest."<br> </p> <p> </p>
Figure 7 from: Triapitsyn SV, Adachi-Hagimori T, Rugman-Jones PF, Kado N, Sawamura N, Narai Y (2020) Egg parasitoids of Arboridia apicalis (Nawa, 1913) (Hemiptera, Cicadellidae), a leafhopper pest of grapevines in Japan, with description of a new species of Anagrus Haliday, 1833 (Hymenoptera, Mymaridae). ZooKeys 945: 129-152. https://doi.org/10.3897/zookeys.945.51865
Figure 7 Relationship of Anagrus arboridiae sp. nov. with other members of the A. atomus species group for which reliable DNA sequences are available, based on a 587 bp fragment of COI. Optimal NJ tree with the sum of branch length = 0.34117946. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches and the tree is drawn to scale, with branch lengths indicating uncorrected p-distance. Analyses conducted in MEGA 6.06.
Figure 6 from: Triapitsyn SV, Adachi-Hagimori T, Rugman-Jones PF, Kado N, Sawamura N, Narai Y (2020) Egg parasitoids of Arboridia apicalis (Nawa, 1913) (Hemiptera, Cicadellidae), a leafhopper pest of grapevines in Japan, with description of a new species of Anagrus Haliday, 1833 (Hymenoptera, Mymaridae). ZooKeys 945: 129-152. https://doi.org/10.3897/zookeys.945.51865
Figure 6 Habitus in lateral view aOligosita sp. female (Taisha, Izumo, Shimane Prefecture, Honshu Island, Japan) bAphelinoidea (Aphelinoidea) sp. male (Unnan, Shimane Prefecture, Honshu Island, Japan).
Figure 2 from: Triapitsyn SV, Adachi-Hagimori T, Rugman-Jones PF, Kado N, Sawamura N, Narai Y (2020) Egg parasitoids of Arboridia apicalis (Nawa, 1913) (Hemiptera, Cicadellidae), a leafhopper pest of grapevines in Japan, with description of a new species of Anagrus Haliday, 1833 (Hymenoptera, Mymaridae). ZooKeys 945: 129-152. https://doi.org/10.3897/zookeys.945.51865
Figure 2 Anagrus arboridiae sp. nov. (paratypes from Unnan, Shimane Prefecture, Honshu Island, Japan) a habitus of female (lateral view) b habitus of male (dorsal view).
Figure 5 from: Triapitsyn SV, Adachi-Hagimori T, Rugman-Jones PF, Kado N, Sawamura N, Narai Y (2020) Egg parasitoids of Arboridia apicalis (Nawa, 1913) (Hemiptera, Cicadellidae), a leafhopper pest of grapevines in Japan, with description of a new species of Anagrus Haliday, 1833 (Hymenoptera, Mymaridae). ZooKeys 945: 129-152. https://doi.org/10.3897/zookeys.945.51865
Figure 5 Oligosita pallida (Taisha, Izumo, Shimane Prefecture, Honshu Island, Japan) a habitus of female (lateral view) b habitus of male (dorsolateral view).
Figure 4 from: Triapitsyn SV, Adachi-Hagimori T, Rugman-Jones PF, Kado N, Sawamura N, Narai Y (2020) Egg parasitoids of Arboridia apicalis (Nawa, 1913) (Hemiptera, Cicadellidae), a leafhopper pest of grapevines in Japan, with description of a new species of Anagrus Haliday, 1833 (Hymenoptera, Mymaridae). ZooKeys 945: 129-152. https://doi.org/10.3897/zookeys.945.51865
Figure 4 Anagrus arboridiae sp. nov. male (paratypes from Unnan, Shimane Prefecture, Honshu Island, Japan) a antenna b fore wing c genitalia (lateral view).
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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.