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651 results for “Pseudococcidae”
Figure 3 in A new genus and species of Phenacoccinae (Hemiptera: Coccomorpha: Pseudococcidae) from northwestern China
Figure 3. First-instar nymph of Sananococcus nanophytoni sp. nov. A. Quinquelocular pore; B. Ventral seta; C. Trilocular pore; D. Dorsal seta; E. Discoidal pore; F. Anal lobe cerarius.
Figure 2 in A new genus and species of Phenacoccinae (Hemiptera: Coccomorpha: Pseudococcidae) from northwestern China
Figure 2. Adult male of Sananicoccus nanophytoni sp. nov. A. Trilocular pore; B. 4-locular pore; C. 5-locular pore; D. Genital segment.
Figure 1 in A new genus and species of Phenacoccinae (Hemiptera: Coccomorpha: Pseudococcidae) from northwestern China
Figure 1. Adult female of Sananicoccus nanophytoni sp. nov. A. Antennae; B. Quinquelocular pore; C. Multilocular pores; D. Tubular duct on venter; E. Hind femur and tibia; F. Claw; G. Ventral seta; H. Cerarii; I. Trilocular pore; J. Simple pore; K. Small type of tubular duct on dorsum; L. Large type of tubular duct on dorsum; M. Dorsal seta; N. Anal lobe cerarius.
Fig. 1 in A New Species Of Geococcus (Homoptera: Coccoidae: Pseudococcidae)
Fig. 1. Adult female of G. baloghi KIANEK et KONCZNÉ BENEDICTY sp. n., with an addition of a stout, blunted seta on the head of G. coffeae (a), and a blunted seta on anal lobes of the G. radicum (b)
Fig. 8 in Description Of New Genera And Species In The Tribe Rhizoecini (Homoptera, Coccoidea, Pseudococcidae)
Fig. 8. Coccidella globocula (HAMBLETON, 1946) (modified after WILLIAMS & GRANARA DE WILLINK 1992)
Fig. 1 in An update on mealybugs and scale insects (Hemiptera) on native epiphytic orchids in South Florida, including a new record for Pseudococcus microcirculus (Pseudococcidae)
Fig. 1. (a) Debris deposited by ants around the base of Prosthechea cochleata where orchid mealybugs were concealed; (b) removal of an orchid leaf sheath on a new shoot reveals a large population of mealybugs on P. cochleata; and (c) 2 orchid mealybugs on the inflorescence of Polystachya concreta.
Figs. 2–8 in Invasion of the main cocoa-producing region of South America by Maconellicoccus hirsutus (Hemiptera: Pseudococcidae)
Figs. 2–8. Infestation of Maconellicoccus hirsutus on cocoa plants. 2. Adults, nymphs, and eggs; 3. damage to cocoa shoots; 4. developing sooty mold; 5, 6. Infested cocoa flowers; 7. M. hirsutus infesting young cocoa fruit; 8. M. hirsutus infesting mature cocoa fruit.
Fig. 1 in Invasion of the main cocoa-producing region of South America by Maconellicoccus hirsutus (Hemiptera: Pseudococcidae)
Fig. 1. Range of Maconellicoccus hirsutus in cocoa orchards in the states of Bahia and Espírito Santo, Brazil, Feb 2013 to Feb 2014.
Figure 3 in Compatibility between the predators Cryptolaemus montrouzieri (Coleoptera: Coccinellidae) and Chrysoperla externa (Neuroptera: Chrysopidae) in the control of Planococcus citri (Hemiptera: Pseudococcidae) associated with rose crop
Figure 3 Behavior of Chrysoperla externa and Cryptolaemus montrouzieri acting in combination, against adult females of Planococcus citri. *Time averages (%) followed by the same letters do not differ by Tukey's Test, P <0.05. Lowercase letters compare predators within each category; uppercase letters compare each predator individually across categories.
Figure 2 in Compatibility between the predators Cryptolaemus montrouzieri (Coleoptera: Coccinellidae) and Chrysoperla externa (Neuroptera: Chrysopidae) in the control of Planococcus citri (Hemiptera: Pseudococcidae) associated with rose crop
Figure 2Behavior of Chrysoperla externa against nymphs and adult females of Planococcus citri. Time averages (%) followed by the same letter do not differ by Tukey's test, P <0.05.
Figure 4 in Compatibility between the predators Cryptolaemus montrouzieri (Coleoptera: Coccinellidae) and Chrysoperla externa (Neuroptera: Chrysopidae) in the control of Planococcus citri (Hemiptera: Pseudococcidae) associated with rose crop
Figure 4 Behavior of Chrysoperla externa and Cryptolaemus montrouzieri acting in combination, against first instar nymphs of Planococcus citri. *Time averages (%) followed by the same letters do not differ by Tukey's Test, P <0.05. Lowercase letters compare predators within each category; uppercase letters compare each predator individually across categories.
Fig. 3. Survivorship curves for B in Biology of Blepyrus clavicornis (Compere) (Hymenoptera: Encyrtidae), a parasitoid of Pseudococcus viburni (Signoret) (Hemiptera: Pseudococcidae)
Fig. 3. Survivorship curves for B. clavicornis. Influence of food on longevity, for three treatments: 100% honey, honey diluted 50:50 in water, and water alone (control) (ANOVA: F = 17.58; df = 2; p <0.001).
Figure 3 in The determination some biological parameters of Phenacoccus madeirensis Green (Hemiptera: Pseudococcidae) on vegetable plants
Figure 3. Survival ratio and life table parameters of Phenacoccus madeirensis on Eggplant (Adana Topağı).
Fig 3 in Alternatives to a pyrethroid for controlling Madeira mealybug (Hemiptera: Pseudococcidae) on coleus cuttings
Fig 3. Mean number of Phenacoccus madeirensis on coleus cuttings at d 0, 1, 7, and 14 afer cuttings were agitated for 60 s in a dip containing 1% Natur'l oil, 1%, Mavrik Aquaflow® (22.3% tau-fluvalinate in water), or distilled water.
Fig. 42 in Complex of primary and secondary parasitoids (Hymenoptera: Encyrtidae and Signiphoridae) of Hypogeococcus spp. mealybugs (Hemiptera: Pseudococcidae) in the New World
Fig. 42. Phylogenetic placement of Tetracneminae specimens inferred from ML analysis of concatenated sequences of 28S and COI. The analysis was conducted in RAxML and branch support, expressed as a percentage, was assessed with 1,000 rapid bootstrap replicates. Clade 1 = Leptomastidea hypogeococci; clade 2 = Anagyrus cachamai; clade 3 = Anagyrus quilmes. Encyrtus spp. (the outgroup) belong to the subfamily Encyrtinae.
Fig 2 in Alternatives to a pyrethroid for controlling Madeira mealybug (Hemiptera: Pseudococcidae) on coleus cuttings
Fig 2. Cumulative mean (± SE) percent mortality of Phenacoccus madeirensis on d 1, 3, 7, and 14 resulting from a 1% Natur'l oil dip of 1, 15, 30, 60, or 120 s duration. Different letters indicate significant differences between treatment durations on the successive days (Tukey-Kramer least squares means for multiple comparisons, P <0.05).
Fig 1 in Alternatives to a pyrethroid for controlling Madeira mealybug (Hemiptera: Pseudococcidae) on coleus cuttings
Fig 1. Cumulative mean (± SE) percent mortality of Phenacoccus madeirensis on d 1, 3, 7, and 14 resulting from 30 s biorational product dips and distilled water. Different letters indicate significant differences between treatments on the successive days (Tukey-Kramer least squares means for multiple comparisons, P <0.05).
Figs. 27–33 in Complex of primary and secondary parasitoids (Hymenoptera: Encyrtidae and Signiphoridae) of Hypogeococcus spp. mealybugs (Hemiptera: Pseudococcidae) in the New World
Figs. 27–33. Cheiloneurus sp. near banksi (Rockley, Christ Church Parish, Barbados): 27, female antenna; 28, female head (frontal view); 29, female mesosoma and metasoma; 30, female fore wing; 31, male antenna; 32, male fore wing; 33, male genitalia.
Figs. 34–36 in Complex of primary and secondary parasitoids (Hymenoptera: Encyrtidae and Signiphoridae) of Hypogeococcus spp. mealybugs (Hemiptera: Pseudococcidae) in the New World
Figs. 34–36. Prochiloneurus spp. males (34–35, P. argentinensis, Loreto, Misiones, Argentina [photographs courtesy of D. A. Aquino]; 36, P. narendrani, Mona Island, Puerto Rico): 34, habitus; 35, antennae; 36, habitus.
Fig. 1. A in Complex of primary and secondary parasitoids (Hymenoptera: Encyrtidae and Signiphoridae) of Hypogeococcus spp. mealybugs (Hemiptera: Pseudococcidae) in the New World
Fig. 1. A gall-like formation caused by the feeding of Harrisia cactus mealybug, Hypogeococcus sp., on Stenocereus fimbriatus columnar cactus in Caja de Muertos Island, Puerto Rico.
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.