Background Suboptimal water and nutrient availability are primary constraints in global agriculture. Root anatomy plays key roles in soil resource acquisition. In this article we summarize evidence that root anatomical phenotypes present opportunities for crop breeding. Scope Root anatomical phenotypes influence soil resource acquisition by regulating the metabolic cost of soil exploration, exploitation of the rhizosphere, the penetration of hard soil domains, the axial and radial transport of water, and interactions with soil biota including mycorrhizal fungi, pathogens, insects, and the rhizosphere microbiome. For each of these topics we provide examples of anatomical phenotypes which merit attention as selection targets for crop improvem...
Abstract Improving crop nutrient efficiency becomes an essential consideration for environmentally f...
Phenotyping is the current bottleneck to accelerate plant breeding (Fiorani and Schurr, 2013), and n...
In the last decade cheaper and faster sequencing methods have resulted in an enormous increase in ge...
Background: Suboptimal water and nutrient availability are primary constraints in global agriculture...
Root architectural and anatomical phenotypes are highly diverse. Specific root phenotypes can be ass...
Root system architecture determines crop capacity to acquire water and nutrients in the dynamic and ...
Roots are crucial for nutrient and water acquisition and can be targeted to enhance plant productivi...
Root phenotypic plasticity has been proposed as a target for the development of more productive crop...
Root anatomical phenes have important roles in soil resource capture and plant performance; however,...
Background and Aims: Root architecture is a primary determinant of soil resource acquisition. We hyp...
Plants forage soil for water and nutrients, whose distribution is patchy and often dynamic. To impro...
Plants forage soil for water and nutrients, whose distribution is patchy and often dynamic. To impro...
Plants forage soil for water and nutrients, whose distribution is patchy and often dynamic. To impro...
BackgroundPlants form the base of the terrestrial food chain and provide medicines, fuel, fibre and ...
International audienceAs plants cannot relocate, they require effective root systems for water and n...
Abstract Improving crop nutrient efficiency becomes an essential consideration for environmentally f...
Phenotyping is the current bottleneck to accelerate plant breeding (Fiorani and Schurr, 2013), and n...
In the last decade cheaper and faster sequencing methods have resulted in an enormous increase in ge...
Background: Suboptimal water and nutrient availability are primary constraints in global agriculture...
Root architectural and anatomical phenotypes are highly diverse. Specific root phenotypes can be ass...
Root system architecture determines crop capacity to acquire water and nutrients in the dynamic and ...
Roots are crucial for nutrient and water acquisition and can be targeted to enhance plant productivi...
Root phenotypic plasticity has been proposed as a target for the development of more productive crop...
Root anatomical phenes have important roles in soil resource capture and plant performance; however,...
Background and Aims: Root architecture is a primary determinant of soil resource acquisition. We hyp...
Plants forage soil for water and nutrients, whose distribution is patchy and often dynamic. To impro...
Plants forage soil for water and nutrients, whose distribution is patchy and often dynamic. To impro...
Plants forage soil for water and nutrients, whose distribution is patchy and often dynamic. To impro...
BackgroundPlants form the base of the terrestrial food chain and provide medicines, fuel, fibre and ...
International audienceAs plants cannot relocate, they require effective root systems for water and n...
Abstract Improving crop nutrient efficiency becomes an essential consideration for environmentally f...
Phenotyping is the current bottleneck to accelerate plant breeding (Fiorani and Schurr, 2013), and n...
In the last decade cheaper and faster sequencing methods have resulted in an enormous increase in ge...