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173 results for “Alien plants”
Supplementary material 2 from: Foxcroft LC, Spear D, van Wilgen NJ, McGeoch MA (2019) Assessing the association between pathways of alien plant invaders and their impacts in protected areas. NeoBiota 43: 1-25. https://doi.org/10.3897/neobiota.43.29644
: Data type: measurement
Supplementary material 1 from: Foxcroft LC, Spear D, van Wilgen NJ, McGeoch MA (2019) Assessing the association between pathways of alien plant invaders and their impacts in protected areas. NeoBiota 43: 1-25. https://doi.org/10.3897/neobiota.43.29644
: Data type: species data
Supplementary material 2 from: Bartz R, Kowarik I (2019) Assessing the environmental impacts of invasive alien plants: a review of assessment approaches. NeoBiota 43: 69-99. https://doi.org/10.3897/neobiota.43.30122
: Data type: description
Supplementary material 1 from: Bartz R, Kowarik I (2019) Assessing the environmental impacts of invasive alien plants: a review of assessment approaches. NeoBiota 43: 69-99. https://doi.org/10.3897/neobiota.43.30122
: Data type: measurement
Supplementary material 1 from: Hrivnák R, Medvecká J, Baláži P, Bubíková K, Oťaheľová H, Svitok M (2019) Alien aquatic plants in Slovakia over 130 years: historical overview, current distribution and future perspectives. NeoBiota 49: 37-56. https://doi.org/10.3897/neobiota.49.34318
: Data type: references data
Data from: Multispecies invasion reduces the negative impact of single alien plant species on native flora
Aim: In the current Anthropocene, many ecosystems are being simultaneously invaded by multiple alien species. Some of these invasive species become more dominant and have greater environmental impacts than others. If two potentially dominant species invade the same area, the combined impact has been reported to be either (1) domination by one species, i.e., the competitive dominance of one invader, or (2) invasion meltdown, where the combined impact is much greater, i.e., a synergistic effect. We studied the effects of the invasion of two alien plant species that are known to strongly decrease native plant species diversity: the Persian walnut Juglans regia and goldenrod Solidago canadensis. Location: We examined native vegetation diversity in abandoned fields (in Poland) where neither species had invaded, only one species had invaded, and both species had invaded. Methods: Field survey data were analysed using generalized linear mixed models and ordination techniques. Results: When goldenrod invaded alone, it caused a larger decrease in species richness and cover (74%) than when walnut invaded alone (58%). ¬When walnut and goldenrod co-occurred in abandoned fields, walnut was dominant and strongly decreased goldenrod density by 87%. However, the combined impact on native species diversity was much lower (15% decrease in native plant diversity) than when either goldenrod or walnut invaded alone. Main conclusions: In contrast to many other studies, our study does not support the occurrence of an invasion meltdown. Instead, our results show that even when one invader dominates, its negative effect on plant diversity can be strongly modified by the presence of another invasive species.
Supplementary material 1 from: Ramírez-Albores JE, Richardson DM, Stefenon VM, Bizama GA, Pérez-Suárez M, Badano EI (2021) A global assessment of the potential distribution of naturalized and planted populations of the ornamental alien tree Schinus molle. NeoBiota 68: 105-126. https://doi.org/10.3897/neobiota.68.68572
Table S1
Supplementary material 2 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Definitions of subcategories used for escape from confinement
Supplementary material 4 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Temporal trends in first record rates from 1845 to 2000 by subcategory of introduction pathway
Supplementary material 1 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Association between the first record rate and import value
Supplementary material 3 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Generalised additive model (GAM) results
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
Supplementary material 1 from: Anibaba QA, Dyderski MK, Woźniak G, Jagodziński AM (2023) Native plant community characteristics explain alien species success in post-industrial vegetation. NeoBiota 85: 1-22. https://doi.org/10.3897/neobiota.85.97269
Frequency and cover of alien species occurring on post-coal mine spoil heaps
Supplementary material 1 from: Cáceres-Polgrossi L, Di Rico M, Parra D, Seebens H, Galvin SD, Boehmer HJ (2023) The relationship between naturalized alien and native plant species: insights from oceanic islands of the south-east Pacific over the last 200 years. NeoBiota 86: 21-43. https://doi.org/10.3897/neobiota.86.102661
Tables with general information
Data from: Phylogenetic and functional mechanisms of direct and indirect interactions among alien and native plants
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Data from: Commonness and rarity of alien and native plant species – the relative roles of intraspecific competition and plant–soil feedback
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Data from: Invasive alien plants benefit more from clonal integration in heterogeneous environments than natives
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Botanic gardens play key roles in the regional distribution of first records of alien plants in China
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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