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298 results for “dominant species”
Dominant species establishment may influence invasion resistance more than phylogenetic or functional diversity
<ol> <li>Phylogenetic and functional diversity are theorized to increase invasion resistance. Experimentally testing whether plant communities higher in these components of diversity are less invasible is an important step for guiding restoration designs.</li> <li>To investigate how phylogenetic and functional diversity of vegetation affect invasion resistance in a restoration setting, we used experimental prairie restoration plots. The experiment crossed three levels of phylogenetic diversity with two levels of functional diversity while species richness was held constant. We allowed invaders to colonize plots; these included native species from neighboring plots and non-native invasive species from a surrounding old field. We tested if invader biomass was influenced by phylogenetic and functional diversity, and phylogenetic and hierarchical trait distances between invaders and planted species. We binned each invader into three categories: native species from neighboring experimental plots (site-specific invaders); native species not part of the experimental species pool (native invaders); or non-native species (non-native invaders).</li> <li>Counter to expectation, both non-native and native invaders became more abundant in more phylogenetically diverse plots. However, plots with higher abundance of planted Asteraceae, a dominant family of the tallgrass prairie, had lower invader biomass for both native and non-native invaders.</li> <li>We also found that hierarchical trait differences shaped invasion. The species that became most abundant were non-native invaders that were taller, and native invaders with low specific leaf area relative to planted species. Site-specific invaders were not influenced by any plot-level diversity metrics tested.</li> <li> <em>Synthesis and application</em>: Our results suggest greater phylogenetic diversity may lower resistance to invasion. This effect may be due to more even but sparser niche packing in high-diversity plots, associated with greater availability of unsaturated niche space for colonization. However, trait composition fostered invasion resistance in two ways in our study. First, establishment of native species with strongly dominant traits may confer invasion resistance. Second, species mixes that optimize trait differences between planted vegetation and likely invaders may enhance invasion-resistance.</li> </ol>
Data from: A dominant plant species and insects interactively shape plant community structure and an ecosystem function
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Dominant species establishment may influence invasion resistance more than phylogenetic or functional diversity
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Species turnover and climates co-dominate the carbon–water relationship in grasslands along an elevational gradient
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Species redistribution combined with invasive dominance but not species turnover promotes biotic homogenization following invasion
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Data from: Trait-based species selection for restoration: A case study from tropical landscapes dominated by bracken
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Integrated effects of neighborhood composition and resource levels on growth of a dominant tree species in a tropical forest
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Data from: Interspecific differences in nitrogen form acquisition strategies contribute to species dominance
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Soil toxicity and species dominance rather than nutrient availability drive plant species richness in swamp forests of Central Europe
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Data from: Island properties dominate species traits in determining plant colonizations in an archipelago system
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Contrasting soil- and canopy-nurse effects on dependent species in metalliferous systems may be explained by dominant plant functional strategies
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Functional identity of dominant species in a predator community prevails over functional diversity in shaping the top-down control of herbivores
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Data from: Phylogeography of the highly dispersible landscape-dominant woody species complex, Metrosideros, in Hawaii
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Data from: Seasonality promotes grassland diversity: interactions with mowing, fertilization and removal of dominant species
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Pleiotropic opposing dominance within a color gene block contributes to a nascent species boundary via its influence on hybrid male territorial behavior
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Bumble bees and honey bees on islands harbour reduced viral species richness, yet honey bee populations are dominated by a deformed wing virus recombinant
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Data from: Influential neighbours: seeds of dominant species affect the germination of common grassland species
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Data from: Dominant species determine grazing effects on the stability of herbaceous community production at multiple scales in drylands
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Contrasting responses to climate change at Himalayan treelines revealed by population demographics of two dominant species
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Effects of dominant ant species on ant community structure and ant-hemipteran interactions
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OpenNeuro
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