Better understanding of root system structure and function is critical to crop improvement in water-limited environments. The aims of this study were to examine root system characteristics of two wheat genotypes contrasting in tolerance to water limitation and to assess the functional implications on adaptation to water-limited environments of any differences found. The drought tolerant barley variety, Mackay, was also included to allow inter-species comparison. Single plants were grown in large, soil-filled root-observation chambers. Root growth was monitored by digital imaging and water extraction was measured. Root architecture differed markedly among the genotypes. The drought-tolerant wheat (cv. SeriM82) had a compact root system, whil...
Drought stress is one of the main environmental factors limiting crop yields. Choice of drought-resi...
AbstractPlant survival and fitness are dependent on root system architecture (RSA). In Australia, ro...
<div><p>Root traits influence the amount of water and nutrient absorption, and are important for mai...
Better understanding of root system structure and function is critical to crop improvement in water-...
Abstract Roots are crucial for water up take and nutrient supply both under water limiting and non-l...
This paper presents an interdisciplinary approach to crop improvement that links physiology with pla...
Root system characteristics are of fundamental importance to soil exploration and below-ground resou...
There is little consensus on whether having a large root system is the best strategy in adapting whe...
Water availability is a major limiting factor for wheat (Triticum aestivum L.) production in rain-fe...
Drought adaptation of wheat is one of the most significant and complex subjects in the rain-fed agri...
Under limiting water resources, root system response of genotypes to soil-water conditions with enha...
Phenotyping wheat seedling’s root angle variation to highlight correlations with water stress Cloth...
Improving crop yields in rain-fed environments will be central to food security in a climate-changed...
Wheat yields globally will depend increasingly on good management to conserve rainfall and new varie...
Root characteristics of wheat (Triticum aestivum L.) genotypes are believed to be important in toler...
Drought stress is one of the main environmental factors limiting crop yields. Choice of drought-resi...
AbstractPlant survival and fitness are dependent on root system architecture (RSA). In Australia, ro...
<div><p>Root traits influence the amount of water and nutrient absorption, and are important for mai...
Better understanding of root system structure and function is critical to crop improvement in water-...
Abstract Roots are crucial for water up take and nutrient supply both under water limiting and non-l...
This paper presents an interdisciplinary approach to crop improvement that links physiology with pla...
Root system characteristics are of fundamental importance to soil exploration and below-ground resou...
There is little consensus on whether having a large root system is the best strategy in adapting whe...
Water availability is a major limiting factor for wheat (Triticum aestivum L.) production in rain-fe...
Drought adaptation of wheat is one of the most significant and complex subjects in the rain-fed agri...
Under limiting water resources, root system response of genotypes to soil-water conditions with enha...
Phenotyping wheat seedling’s root angle variation to highlight correlations with water stress Cloth...
Improving crop yields in rain-fed environments will be central to food security in a climate-changed...
Wheat yields globally will depend increasingly on good management to conserve rainfall and new varie...
Root characteristics of wheat (Triticum aestivum L.) genotypes are believed to be important in toler...
Drought stress is one of the main environmental factors limiting crop yields. Choice of drought-resi...
AbstractPlant survival and fitness are dependent on root system architecture (RSA). In Australia, ro...
<div><p>Root traits influence the amount of water and nutrient absorption, and are important for mai...