Perennial plants show traits such as long-lived leaves and higher nutrient retention that provide a more efficient use of nutrients in low-resource environments when compared to annuals. These traits do not only generate yield stability but should be relevant in the provision of regulating ecosystem services for sustainability. The understanding of the mechanisms underlying nutrient use and conservation in perennial herbaceous crops might provide useful evidence to test the potential benefits of perennial crops in low-resource environments. Using annual and perennial Physaria as a working model, we tested the link between nitrogen use efficiency (NUE), plant´s life-cycle, and specific leaf area (SLA), as an indicator of C economy strategy. ...
Nitrogen limits plant growth in almost all terrestrial ecosystems, even in low-precipitation ecosyst...
ABSTRACT: Evergreen species of temperate regions are dominant in low-nutrient soils. This feature is...
Leaf functional traits profoundly impact the function of diverse-biomes under different environmenta...
Domestication of desert-adapted perennials has been proposed as an alternative to increase cropping ...
We analysed the main plant strategies to conserve nitrogen in the Patagonian Monte. We hypothesized ...
Domestication of desert-adapted species and their development into perennial crops has been pro-pose...
During three consecutive years with contrasting precipitation, we analysed the relationship between ...
The aim of this study was to assess the patterns of N and P conservation in dominant perennial grass...
Leaf longevity and nutrient resorption efficiency are important strategies to conserve plant nutrien...
Aims: During the process of domestication of herbaceous seed-producing perennial crops, selection fo...
Specific leaf area (SLA) is a key trait to screen plants for ecological performance and productivity...
Age-related changes in root morphology and physiology, and the relationship with N dynamics between ...
- The relationship between leaf photosynthesis and nitrogen is a critical production function for ec...
Shallow-rooted grasses and deep-rooted shrubs dominate arid ecosystems where nitrogen is concentrate...
Nitrogen (N) is, after water, the most limiting resource in semiarid ecosystems. However, knowledge ...
Nitrogen limits plant growth in almost all terrestrial ecosystems, even in low-precipitation ecosyst...
ABSTRACT: Evergreen species of temperate regions are dominant in low-nutrient soils. This feature is...
Leaf functional traits profoundly impact the function of diverse-biomes under different environmenta...
Domestication of desert-adapted perennials has been proposed as an alternative to increase cropping ...
We analysed the main plant strategies to conserve nitrogen in the Patagonian Monte. We hypothesized ...
Domestication of desert-adapted species and their development into perennial crops has been pro-pose...
During three consecutive years with contrasting precipitation, we analysed the relationship between ...
The aim of this study was to assess the patterns of N and P conservation in dominant perennial grass...
Leaf longevity and nutrient resorption efficiency are important strategies to conserve plant nutrien...
Aims: During the process of domestication of herbaceous seed-producing perennial crops, selection fo...
Specific leaf area (SLA) is a key trait to screen plants for ecological performance and productivity...
Age-related changes in root morphology and physiology, and the relationship with N dynamics between ...
- The relationship between leaf photosynthesis and nitrogen is a critical production function for ec...
Shallow-rooted grasses and deep-rooted shrubs dominate arid ecosystems where nitrogen is concentrate...
Nitrogen (N) is, after water, the most limiting resource in semiarid ecosystems. However, knowledge ...
Nitrogen limits plant growth in almost all terrestrial ecosystems, even in low-precipitation ecosyst...
ABSTRACT: Evergreen species of temperate regions are dominant in low-nutrient soils. This feature is...
Leaf functional traits profoundly impact the function of diverse-biomes under different environmenta...