An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve the acquisition of limiting soil resources. Here we test the hypothesis that reduced lateral root branching density will improve drought tolerance in maize (Zea mays) by reducing the metabolic costs of soil exploration, permitting greater axial root elongation, greater rooting depth, and thereby greater water acquisition from drying soil. Maize recombinant inbred lines with contrasting lateral root number and length (FL: few but long; MS: many but short) were grown under water stress in greenhouse mesocosms, in field rainout shelters, and in a second field environment with natural drought. Under water stress in mesocosms, lines with the FL p...
Plant roots have been recognized to play an important adaptive role in drought prone environments....
Abstract only availableGlobal warming causing changes in weather patterns is making drought a more f...
Extensively branched root systems can efficiently capture soil resources by increasing their absorbi...
An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve...
To test the hypothesis that multiple integrated root phenotypes would co-optimize drought tolerance,...
To test the hypothesis that multiple integrated root phenotypes would co-optimize drought tolerance,...
Deep rooting has been identified as strategy for desiccation avoidance in natural vegetation as well...
Background and aims: Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
Background and aims Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
The root system in plants absorbs water and minerals. However, the relationship among root size, yie...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Maize genotypes may adapt to dry environments by avoiding desiccation by means of a deeper root syst...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Plant roots have been recognized to play an important adaptive role in drought prone environments....
Abstract only availableGlobal warming causing changes in weather patterns is making drought a more f...
Extensively branched root systems can efficiently capture soil resources by increasing their absorbi...
An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve...
To test the hypothesis that multiple integrated root phenotypes would co-optimize drought tolerance,...
To test the hypothesis that multiple integrated root phenotypes would co-optimize drought tolerance,...
Deep rooting has been identified as strategy for desiccation avoidance in natural vegetation as well...
Background and aims: Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
Background and aims Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
The root system in plants absorbs water and minerals. However, the relationship among root size, yie...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Maize genotypes may adapt to dry environments by avoiding desiccation by means of a deeper root syst...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Drought is a primary constraint to crop yields and climate change is expected to increase the freque...
Plant roots have been recognized to play an important adaptive role in drought prone environments....
Abstract only availableGlobal warming causing changes in weather patterns is making drought a more f...
Extensively branched root systems can efficiently capture soil resources by increasing their absorbi...