Abstract only availableGlobal warming causing changes in weather patterns is making drought a more frequent occurrence. Drought is a major limiting factor of maize production worldwide. To maintain high production levels, it is important to identify maize lines which are tolerant to water-stress conditions. A significant trait in drought tolerance is an extensive root system. Root systems in maize are composed of not only below ground roots but also above ground roots. These above ground roots are commonly known as brace roots, and they function to keep the plant upright and provide a surface for nutrient and water uptake and gas exchange. Preliminary studies have demonstrated correlations between brace root architecture and tassel branchin...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Drought is an important envi...
Maize genotypes may adapt to dry environments by avoiding desiccation by means of a deeper root syst...
Background and aims Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
As concerns of climate change grow and the world population increases the demands on agricultural pr...
An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve...
An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve...
Abstract only availableFaculty Mentor: Dr. Georgia Davis, Microbiology and ChemistryDrought alone co...
Understanding how roots respond to increasing rate of evapotranspiration in warmer days and exposure...
A large yield gap exists in rain-fed maize (Zea mays L.) production in semi-arid regions, mainly cau...
Plant roots have been recognized to play an important adaptive role in drought prone environments....
Background and aims: Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
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,...
<p>Drought is a major abiotic stress factor limiting maize production, and elucidating the genetic c...
Abstract only availableMaize brace roots provide the plant with access to water and nutrients in the...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Drought is an important envi...
Maize genotypes may adapt to dry environments by avoiding desiccation by means of a deeper root syst...
Background and aims Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
As concerns of climate change grow and the world population increases the demands on agricultural pr...
An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve...
An emerging paradigm is that root traits that reduce the metabolic costs of soil exploration improve...
Abstract only availableFaculty Mentor: Dr. Georgia Davis, Microbiology and ChemistryDrought alone co...
Understanding how roots respond to increasing rate of evapotranspiration in warmer days and exposure...
A large yield gap exists in rain-fed maize (Zea mays L.) production in semi-arid regions, mainly cau...
Plant roots have been recognized to play an important adaptive role in drought prone environments....
Background and aims: Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...
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,...
<p>Drought is a major abiotic stress factor limiting maize production, and elucidating the genetic c...
Abstract only availableMaize brace roots provide the plant with access to water and nutrients in the...
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT REQUEST OF AUTHOR.] Drought is an important envi...
Maize genotypes may adapt to dry environments by avoiding desiccation by means of a deeper root syst...
Background and aims Selection for deep roots to improve drought tolerance of maize (Zea mays L.) re...