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2,775 results for “G×E”

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FIGURE 12 in A Comparative Study Of The Ovaries In Some Brazilian Bees (Hymenoptera; Apoidea) G F M J E S Abstract

FIGURE 12. Relationship between the oocyte size and intertegular distance of bees (Linear regression). Numbers regards to number of the species listed in the Table 1

opennotspecifiedDec 2004View details →
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FIGURE 1 in A Comparative Study Of The Ovaries In Some Brazilian Bees (Hymenoptera; Apoidea) G F M J E S Abstract

FIGURE 1. Longitudinal section of the germarium position of Melipona quadrifasciata. The anterior region have undifferentiated cells and the posterior region have many oocyte-nurse cell complexes; o: young oocyte; on: oocyte nucleus; uc: undifferentiated cells; pm: peritoneal membrane; T: trachea; tp: tunica propria. Bar = 10 µm.

opennotspecifiedDec 2004View details →
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FIGURE 9 in A Comparative Study Of The Ovaries In Some Brazilian Bees (Hymenoptera; Apoidea) G F M J E S Abstract

FIGURE 9: Longitudinal section of a mature follicle of Epicharis affinis, Methyl Green Pyronin, observed under phase contrast microscope. Notice the follicular cells (E) with extensive cellular projections (p) that penetrate the thick corion (c); en: follicular epithelial cell nucleus; F: fat body cells. Bar = 10 µm.

opennotspecifiedDec 2004View details →
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FIGURA 1 in Frugivoria E Dispersão De Sementes Pelo Lagarto Teiú Tupinambis Merianae (Reptilia: Teiidae) E R C M G Abstract

FIGURA 1. Porcentagem de germinação das sementes de Eugenia uniflora, Genipa americana, Cereus peruvianus e Solanum viarum coletadas de frutos frescos (controle) e das fezes do teiú (tratamento).

opennotspecifiedDec 2004View details →
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FIGURE 1 A, B, C, E, G, H in Two new species of the genus Criotettix Bolivar, 1887 (Orthoptera: Tetrigidae: Scelimeninae) from India

FIGURE 1 A, B, C, E, G, H. Criotettix gidhavensis sp. nov. female A, dorsal view; B, lateral view; C, frontal ridge; E, tegmen; G, Ovipositor; H, posterior angle of lateral lobe of pronotum; D, F, Criotettix bispinosus (Dalman, 1818) D, frontal ridge; F, tegmen.

opennotspecifiedJan 2018View details →
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FIGURE 22. Anthidiellum otavicum, MALE. A. FAcE. B. HABItUS, DORSAL. c. T6–T7, DORSAL VIEW. D. S5, VENtRAL VIEW. E. GONOStyLUS. F. S8. g. S7. H. S6. I. S5 in Taxonomic revision of the sub-Saharan Anthidiellum Cockerell (Apoidea: Megachilidae: Anthidiini)

FIGURE 22. Anthidiellum otavicum, MALE. A. FAcE. B. HABItUS, DORSAL. c. T6–T7, DORSAL VIEW. D. S5, VENtRAL VIEW. E. GONOStyLUS. F. S8. g. S7. H. S6. I. S5.

opennotspecifiedMar 2018View details →
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FIGURE 13. Anthidiellum zebra, MALE. A. FAcE. B. HABItUS, DORSAL. c. T6–T7, DORSAL VIEW. D. S5, VENtRAL VIEW. E. GONOStyLUS. F. S8. g. S7. H. S6. I. S5 in Taxonomic revision of the sub-Saharan Anthidiellum Cockerell (Apoidea: Megachilidae: Anthidiini)

FIGURE 13. Anthidiellum zebra, MALE. A. FAcE. B. HABItUS, DORSAL. c. T6–T7, DORSAL VIEW. D. S5, VENtRAL VIEW. E. GONOStyLUS. F. S8. g. S7. H. S6. I. S5.

opennotspecifiedMar 2018View details →
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Supplementary material 2 from: Kirichenko N, Triberti P, Kobayashi S, Hirowatari T, Doorenweerd C, Ohshima I, Huang G, Wang M, Magnoux E, Lopez-Vaamonde C (2018) Systematics of Phyllocnistis leaf-mining moths (Lepidoptera: Gracillariidae) developing on dogwood (Cornus spp.) in Northeast Asia, with the description of three new species. ZooKeys 736: 79-118. https://doi.org/10.3897/zookeys.736.20739

Figure S1. The DNA barcoded specimens of Cornus-feeding Phyllconistis tested for presence of Wolbachia and other Rickettsiaceae : Explanation note: The serial number of the specimens (№ 1-14) on the COI tree (A) correspond to those on the images of agarose gels (B). The positive control is indicated by "+", negative by "H2O". The infected Phyllocnistis specimen MICRU069-16 from Japan (Honshu) is shown under № 3 and additionally shaded in red on the COI tree. (Tests on presence of Wolbachia and other Rickettsiaceae)

opencc-zeroApr 2018View details →
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Supplementary material 1 from: Cardarelli E, Musacchio A, Montagnani C, Bogliani G, Citterio S, Gentili R (2018) Ambrosia artemisiifolia control in agricultural areas: effect of grassland seeding and herbivory by the exotic leaf beetle Ophraella communa. NeoBiota 38: 1-22. https://doi.org/10.3897/neobiota.38.23562

Tables S1–S2, Figures S1–S2 : Explanation note: Table S1. Soil characteristics in the three investigated sites; Table S2. O. communa density on non-target species throughout summer 2015; Figure S1. A. artemisiifolia soil seed bank in the three sites; Figure S2. A. artemisiifolia traits in experimental plots.

opencc-zeroApr 2018View details →
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Supplementary material 1 from: Kirichenko N, Triberti P, Kobayashi S, Hirowatari T, Doorenweerd C, Ohshima I, Huang G, Wang M, Magnoux E, Lopez-Vaamonde C (2018) Systematics of Phyllocnistis leaf-mining moths (Lepidoptera: Gracillariidae) developing on dogwood (Cornus spp.) in Northeast Asia, with the description of three new species. ZooKeys 736: 79-118. https://doi.org/10.3897/zookeys.736.20739

Table S1. Phyllocnistis species involved in the study. : Explanation note: Where pertinent, genitalia preparation number and sex are given in square brackets in the Sample ID column. Both the Process ID and Sample ID codes link the record in the BOLD database and the voucher specimen from which the sequence is derived.

opencc-zeroApr 2018View details →
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FIGURE 9. A–E, G–I in Taxonomic study of the genus Evergestis Hübner, 1825 (Lepidoptera: Crambidae: Glaphyriinae) in Iran with description of a new species

FIGURE 9. A–E, G–I) Evergestis elbursalis. F, J) E. frumentalis. A, B, C: head in frontal (A) and lateral (B–C) views, the arrow indicates the weak prominence at the anterio-median end of frons. D–J) Male genitalia. D: main body and phallus, Paratype. E, F: gnathos in lateral view (E, Paratype). G: posterior end including uncus and gnathos in lateral view. H: phallus. I, J: middle part of the valva in ventral view.

opennotspecifiedDec 2018View details →
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Supplementary material 1 from: Bartolucci F, Domina G, Ardenghi NMG, Banfi E, Bernardo L, Bonari G, Buccomino G, Calvia G, Carruggio F, Cavallaro V, Chianese G, Conti F, Facioni L, Del Vico E, Di Gristina E, Falcinelli F, Forte L, Gargano D, Mantino F, Martino M, Mei G, Mereu G, Olivieri N, Passalacqua NG, Pazienza G, Peruzzi L, Roma-Marzio F, Scafidi F, Scoppola A, Stinca A, Nepi C (2018) Notulae to the Italian native vascular flora: 5. Italian Botanist 5: 71-81. https://doi.org/10.3897/italianbotanist.5.25892

Supplementary material : Explanation note: 1. Nomenclature updates; 2. Distribution updates; 3. Synonyms, misapplied or included names.

opencc-zeroMay 2018View details →
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FIGURE 58. Nops mathani Simon, female holotype. A habitus, dorsal view. B habitus, ventral view. C spinnerets, ventral view. D habitus, lateral view. E external genitalia, ventral view. F cephalothorax, ventral view. G in A revision of the Neotropical spider genus Nops MacLeay (Araneae: Caponiidae) with the first phylogenetic hypothesis for the Nopinae genera

FIGURE 58. Nops mathani Simon, female holotype. A habitus, dorsal view. B habitus, ventral view. C spinnerets, ventral view. D habitus, lateral view. E external genitalia, ventral view. F cephalothorax, ventral view. G distribution map. Scale bars: 2 mm (A, B, D), 0.5 mm (C, E), 1 mm (F).

opennotspecifiedMay 2018View details →
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FIGURE 6. Leucospis egaia A. Hind leg. L. speifera B. Hind leg. L. mexicana C. Hind leg. L. bulbiventris D. Hind leg. L. leptomera E. Hind leg. L. desantisi F. Hind femur and tibia. G in The New World species of Leucospis Fabricius, 1775 (Hymenoptera, Chalcidoidea, Leucospidae): an update of Bouček's revision with description of two new species from Brazil

FIGURE 6. Leucospis egaia A. Hind leg. L. speifera B. Hind leg. L. mexicana C. Hind leg. L. bulbiventris D. Hind leg. L. leptomera E. Hind leg. L. desantisi F. Hind femur and tibia. G. Apex of hind tibia. L. auripyga H. Apex of hind tibia. L. opalescens I. Apex of hind tibia. J. Hind leg. Figure E modified from Bouček (1974b, fig. 1), Figs A–D, F–J modified from Bouček (1974a, figs 74, 94, 106, 67, 90, 89, 87, 84, 83).

opennotspecifiedJun 2018View details →
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FIGURE 5. Leucospis rileyi A. Hind femur and tibia. L. santarema B. Hind femur and tibia. L. metatibialis C. Hind leg. L. poeyi D. Hind femur and tibia. L. affinis affinis E. Hind femur and tibia. L. pictipyga F. Hind leg. L. latifrons G. Hind leg. L. hopei H in The New World species of Leucospis Fabricius, 1775 (Hymenoptera, Chalcidoidea, Leucospidae): an update of Bouček's revision with description of two new species from Brazil

FIGURE 5. Leucospis rileyi A. Hind femur and tibia. L. santarema B. Hind femur and tibia. L. metatibialis C. Hind leg. L. poeyi D. Hind femur and tibia. L. affinis affinis E. Hind femur and tibia. L. pictipyga F. Hind leg. L. latifrons G. Hind leg. L. hopei H. Hind leg with white, black and red (dotted) colour indicated. L. pinna I. Propodeum, lateral view. L. manaica J. Hind leg. Figure I modified from Grissell and Cameron (2002, fig. 5); figures A–H, J modified from Bouček (1974a, figs 41, 43, 113, 60, 61, 54, 58, 45, 69).

opennotspecifiedJun 2018View details →
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Supplementary material 6 from: Lommen STE, Jongejans E, Leitsch-Vitalos M, Tokarska-Guzik B, Zalai M, Müller-Schärer H, Karrer G (2018) Time to cut: population models reveal how to mow invasive common ragweed cost-effectively. NeoBiota 39: 53-78. https://doi.org/10.3897/neobiota.39.23398

Stochastic population growth for alternative seed bank scenarios (graphic results, population dynamics) :

opencc-zeroJul 2018View details →
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Supplementary material 8 from: Lommen STE, Jongejans E, Leitsch-Vitalos M, Tokarska-Guzik B, Zalai M, Müller-Schärer H, Karrer G (2018) Time to cut: population models reveal how to mow invasive common ragweed cost-effectively. NeoBiota 39: 53-78. https://doi.org/10.3897/neobiota.39.23398

r-cost curves for different seed survival scenarios and reference data sets (graphic results, population dynamics) :

opencc-zeroJul 2018View details →
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Supplementary material 1 from: Underwood E, Taylor K, Tucker G (2018) The use of biodiversity data in spatial planning and impact assessment in Europe. Research Ideas and Outcomes 4: e28045. https://doi.org/10.3897/rio.4.e28045

Biodiversity data sources at the EU level comprise the biodiversity and landuse-related EU reporting and monitoring programmes, and global or regional data portals which include data from European countries. Also gives an overview of spatial planning and data sources for biodiversity impact assessment in a selection of EU Member States: UK, Bulgaria, Netherlands, Germany, Sweden, Denmark and the Baltic Sea.

opencc-zeroJul 2018View details →
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F I G U R E 6 in Dispersal in dendritic networks: Ecological consequences on the spatial distribution of population densities

F I G U R E 6 Euclidean distances moved by Tetrahymena individuals depending on densities in our entire dataset. Across all replicates of all landscapes (patches from different landscapes types highlighted by different symbols; see legend) we find positively densitydependent movement. The solid lines represent fits of the averaged linear mixed model (red: dendritic landscapes; blue: linear landscapes) and the shaded area shows 95% confidence intervals (see Table 4 for model selection results). [Colour figure can be viewed at wileyonlinelibrary.com]

opennotspecifiedDec 2017View details →
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F I G U R E 4 in Dispersal in dendritic networks: Ecological consequences on the spatial distribution of population densities

F I G U R E 4 Comparison of variation in population densities between linear and dendritic networks at day 15 of the experiment. The solid line represents the difference between inter-quartile range (IQR) over median population densities of linear and dendritic landscapes. The distribution (grey) represents the distribution of the differences between IQR over median population densities of 200,000 random re-samplings for our data. As we theoretically expect the dendritic landscapes to be more variable we can perform a one-sided test which gives a probability of p =.047 of our observed difference between IQR to median ratios to be larger than zero. [Colour figure can be viewed at wileyonlinelibrary.com]

opennotspecifiedDec 2017View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record