Higher plasticity in ecophysiological traits enhances the performance and invasion success of Taraxacum officinale (dandelion) in alpine environments
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Effect of intra- and interspecific competition on the performance of native and invasive species of Impatiens under varying levels of shade and moistureExperimental assessment of factors mediating the naturalization of a globally invasive tree on sandy coastal plains: a case study from Brazil.The invasive stoloniferous clonal plant Alternanthera philoxeroides outperforms its co-occurring non-invasive functional counterparts in heterogeneous soil environments - invasion implications.Competition among native and invasive Impatiens species: the roles of environmental factors, population density and life stage.Morphological, biochemical and physiological traits of upper and lower canopy leaves of European beech tend to converge with increasing altitude.Asymmetric responses to simulated global warming by populations of Colobanthus quitensis along a latitudinal gradient.Performance of the invasive Eupatorium catarium and Ageratum conyzoides in comparison with a common native plant under varying levels of light and moisturePlastic responses of invasive Bidens frondosa to water and nitrogen additionGrowth and photosynthetic responses of invasiveBidens frondosato light and water availability: A comparison with invasive and native congenersEnhanced fitness and greater herbivore resistance: implications for dandelion invasion in an alpine habitatAdaptive phenotypic plasticity and competitive ability deployed under a climate change scenario may promote the invasion of Poa annua in AntarcticaInvasive Eupatorium catarium and Ageratum conyzoides benefit more than does a common native plant from nutrient addition in both competitive and non-competitive environmentsAnnual monitoring reveals rapid upward movement of exotic plants in a montane ecosystemLocal adaptation and phenotypic plasticity both occurred in Wedelia trilobata invasion across a tropical islandHabitat requirements, short-term population dynamics and coexistence of native and invasive Impatiens species: a field studyInvasion syndromes: hypotheses on relationships among invasive species attributes and characteristics of invaded sitesEcophysiological plasticity and local differentiation help explain the invasion success ofTaraxacum officinale(dandelion) in South AmericaEcophysiological basis of the Jack-and-Master strategy:Taraxacum officinale(dandelion) as an example of a successful invaderPlant Phenotypic Plasticity in Response to Environmental Factors
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P2860
Higher plasticity in ecophysiological traits enhances the performance and invasion success of Taraxacum officinale (dandelion) in alpine environments
description
wetenschappelijk artikel
@nl
наукова стаття, опублікована в липні 2011
@uk
name
Higher plasticity in ecophysio ...... delion) in alpine environments
@en
Higher plasticity in ecophysio ...... uccess of Taraxacum officinale
@nl
type
label
Higher plasticity in ecophysio ...... delion) in alpine environments
@en
Higher plasticity in ecophysio ...... uccess of Taraxacum officinale
@nl
prefLabel
Higher plasticity in ecophysio ...... delion) in alpine environments
@en
Higher plasticity in ecophysio ...... uccess of Taraxacum officinale
@nl
P2860
P50
P1433
P1476
Higher plasticity in ecophysio ...... delion) in alpine environments
@en
P2093
Marco A. Molina-Montenegro
P2860
P2888
P356
10.1007/S10530-011-0055-2
P577
2011-07-12T00:00:00Z