To investigate the importance of shoot-to-root communication in modulating tissue phytohormone balance as the soil dries, root and leaf hormonal profiles were determined in soybean plants (Glycine max L. Merr. cv. Siverka) exposed to factorial girdling (achieved surgically on Day 0 by excising the phloem with a sharp razor blade thereby disrupting basipetal hormone transport) and soil drying treatments. Plants were randomized into 2 groups: girdled and intact plants, and each girdled group was further separated into two groups: well-watered and soil drying. Thus the experiment was a two (± girdling) x two (± soil drying) factorial experiment. Within 26 h while the soil was still moist, girdling increased root ACC (by 11-fold) and decreased ...
Soybeans [Glycine max (L.) Merrill cv. Wayne] plants were subjected to an extended drying cycle in t...
As part of a project exploring the potential for using leaf physiological traits to improve drought ...
Environmental stress may have a differential influence on root development of soybean [Glycine max (...
To understand the impact of shoot-to-root ABA transport on water potential of, and xylem ABA concent...
To investigate whether shoot-to-root communication modulates physiological (leaf water relations and...
Soybean is an important global crop for human and animal nutrition, but its production is affected b...
Drought and water-deficit adversely affect plant productivity. Limited water is a multidimensional s...
Article first published online: 8 SEP 2013We investigated how root hydraulic conductance (normalized...
AbstractSoybean genotypes show diverse physiological responses to drought, but specific physiologica...
Topsoil hardening is one of the major causes of poor root growth although its effects on subsoil roo...
Soybean genotypes show diverse physiological responses to drought, but specific physiological traits...
Drought periods are predicted to increase in the future, putting the production of sensitive crops u...
While the importance of plant water relations in determining crop response to soil water availabilit...
Nitrogen fixation (NF) in soybean (Glycine max L. Merr.) is highly sensitive to soil drying. This se...
Partial rootzone drying (PRD) is an irrigation technique where water is distributed unevenly to the ...
Soybeans [Glycine max (L.) Merrill cv. Wayne] plants were subjected to an extended drying cycle in t...
As part of a project exploring the potential for using leaf physiological traits to improve drought ...
Environmental stress may have a differential influence on root development of soybean [Glycine max (...
To understand the impact of shoot-to-root ABA transport on water potential of, and xylem ABA concent...
To investigate whether shoot-to-root communication modulates physiological (leaf water relations and...
Soybean is an important global crop for human and animal nutrition, but its production is affected b...
Drought and water-deficit adversely affect plant productivity. Limited water is a multidimensional s...
Article first published online: 8 SEP 2013We investigated how root hydraulic conductance (normalized...
AbstractSoybean genotypes show diverse physiological responses to drought, but specific physiologica...
Topsoil hardening is one of the major causes of poor root growth although its effects on subsoil roo...
Soybean genotypes show diverse physiological responses to drought, but specific physiological traits...
Drought periods are predicted to increase in the future, putting the production of sensitive crops u...
While the importance of plant water relations in determining crop response to soil water availabilit...
Nitrogen fixation (NF) in soybean (Glycine max L. Merr.) is highly sensitive to soil drying. This se...
Partial rootzone drying (PRD) is an irrigation technique where water is distributed unevenly to the ...
Soybeans [Glycine max (L.) Merrill cv. Wayne] plants were subjected to an extended drying cycle in t...
As part of a project exploring the potential for using leaf physiological traits to improve drought ...
Environmental stress may have a differential influence on root development of soybean [Glycine max (...