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143 results for “invasion success”
Figure 6 in Feeding mechanics in Triassic stem-group sauropterygians: the anatomy of a successful invasion of Mesozoic seas
Figure 6. Hypothetical reconstruction of the jaw adductor musculature in Henodus chelyops. Superficial view of jaw addductor musculature. Abbreviations: amem, m. adductor mandibulae externus medialis; amep, m. adductor mandibulae externus profundus; ames-1b, 1b-portion of m. adductor mandibulae externus superficialis; bo.ap, bodenaponeurosis; dm, depressor mandibulae; m.pt, m. pterygoideus.
Figure 5 in Feeding mechanics in Triassic stem-group sauropterygians: the anatomy of a successful invasion of Mesozoic seas
Figure 5. Hypothetical reconstruction of the jaw adductor musculature in Placochelys placodonta. A–C, Successively deeper layers of dissection. Abbreviations: amem, m. adductor mandibulae externus medialis; amep, m. adductor mandibulae externus profundus; ames-1b, 1b-portion of m. adductor mandibulae externus superficialis; amp, m. adductor mandibulae posterior; bo.ap, bodenaponeurosis; dm, depressor mandibulae; m.ps, m. pseudotemporalis; m.pt, m. pterygoideus.
Supplementary material 1 from: Branco S, Douma JC, Brockerhoff EG, Gomez-Gallego M, Marcais B, Prospero S, Franco JC, Jactel H, Branco M (2023) Eradication programs against non-native pests and pathogens of woody plants in Europe: which factors influence their success or failure? In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 281-317. https://doi.org/10.3897/neobiota.84.95687
Eradication database
Supplementary material 3 from: Branco S, Douma JC, Brockerhoff EG, Gomez-Gallego M, Marcais B, Prospero S, Franco JC, Jactel H, Branco M (2023) Eradication programs against non-native pests and pathogens of woody plants in Europe: which factors influence their success or failure? In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 281-317. https://doi.org/10.3897/neobiota.84.95687
Establishment success analysis, using LASSO regression and decision trees
Supplementary material 2 from: Branco S, Douma JC, Brockerhoff EG, Gomez-Gallego M, Marcais B, Prospero S, Franco JC, Jactel H, Branco M (2023) Eradication programs against non-native pests and pathogens of woody plants in Europe: which factors influence their success or failure? In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 281-317. https://doi.org/10.3897/neobiota.84.95687
Correlation matrix
A behavioral syndrome linking boldness and flexibility facilitates invasion success in sticklebacks
<p>Understanding the factors that allow a species to expand their range and adapt to changing habitats is essential for mitigating anthropogenic change. We evaluated how behavior and cognition facilitate colonization of new environments and evolve post establishment during natural biological invasions. Marine threespined sticklebacks are expert colonists with a penchant for invading freshwater environments and rapidly adapting to them. However, the role of behavior in facilitating rapid adaptation in this system has received little attention. By rearing replicate populations of sticklebacks under common garden conditions in the lab, we tested the hypothesis that boldness is favored in dispersers and that neophilia and flexibility are favored in recently-arrived immigrants. We found that dispersing populations comprised bold individuals, while sticklebacks from the invaded region were flexible in their behavior. Moreover, boldness and flexibility were negatively correlated with each another at the individual, family and population levels. Multiple lines of evidence suggest that there is a heritable component to boldness and flexibility, therefore their divergence is likely to be evolutionary in origin. If boldness is favored in invaders during the initial dispersal stage, while flexibility is favored in recent immigrants during the establishment stage, then the link between boldness and flexibility could generate positive correlations between successes during both the dispersal and establishment stages, and therefore play a key role in facilitating colonization success in this important model organism.</p>
The genetic drivers for the successful invasive potential of a generalist bird, the House crow
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A behavioral syndrome linking boldness and flexibility facilitates invasion success in sticklebacks
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Data from: Revisiting Darwin’s naturalization conundrum: explaining invasion success of non-native trees and shrubs in southern Africa
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Data from: Experimental study of species invasion – early population dynamics and role of disturbance in invasion success
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Data from: Infection in patchy populations: contrasting pathogen invasion success and dispersal at varying times since host colonisation
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Data from: Relationships between invasion success and colony breeding structure in a subterranean termite
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Data from: Elevated success of multispecies bacterial invasions impacts community composition during ecological succession
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Data from: Australian house geckos are more aggressive than a globally successful invasive Asian house gecko
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Data from: Stress for invasion success? Temperature stress of preceding generations modifies the response to insecticide stress in an invasive pest insect
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Data from: Inbreeding tolerance as a pre-adapted trait for invasion success in the invasive ant Brachyponera chinensis
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Data from: Inferences on population history of a seed chalcid wasp: invasion success despite a severe founder effect from an unexpected source population
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Data from: Invasive success and the evolution of enhanced weaponry
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Data for: Successful management of invasive rats across a fragmented landscape
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The EZH2-PRC2-H3K27me3 axis governing the endometrial cell cycle and differentiation for successful blastocyst invasion
GEO Series GSE207362. Homo sapiens; Mus musculus. 87 samples. Type: Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing.
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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)
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DANDI Archive for NWB datasets
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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
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