Transfer cells (TCs) trans-differentiate by developing extensive wall ingrowths that facilitate enhanced plasma membrane transport of nutrients. Signal(s) and signalling cascades responsible for initiating this trans-differentiation event are poorly understood. We tested the hypothesis that ethylene functions as a key inductive signal for wall ingrowth formation in epidermal cells of Vicia faba cotyledons. Scanning electron microscopy of epidermal cells monitored their propensity for wall ingrowth formation. Spatial and temporal expression profiles of ethylene biosynthetic enzymes and key elements of ethylene signalling cascades (ethylene insensitive 3 (EIN3) and ethylene response factors (ERFs)) were determined. Wall-ingrowth formation res...
Root hairs of Arabidopsis roots develop on trichoblasts located over the anticlinal (radial) walls o...
Despite the importance of transfer cells in enhancing nutrient transport in plants, little is known ...
The past decade has witnessed a tremendous increase in our understanding of the role of ethylene in ...
Transfer cells (TCs) trans-differentiate by developing extensive wall ingrowths that facilitate enha...
Transfer cells are specialized transport cells containing invaginated wall ingrowths that provide an...
Transfer cells (TCs) trans-differentiate from differentiated cells by developing extensive wall ingr...
Various cell types can trans-differentiate to a transfer cell (TC) morphology characterized by depos...
Background: Transfer cells are characterized by intricate ingrowth walls, comprising an uniform wall...
Research Doctorate - Doctor of Philosophy in Biological ScienceTransfer cells (TCs) are plant cells ...
Transfer cells (TCs) support high rates of membrane transport of nutrients conferred by a plasma mem...
Transfer cells (TCs) are anatomically-specialized cells formed at apoplasmic-symplasmic bottlenecks ...
Transfer cells (TCs) are anatomically-specialized cells formed at apoplasmic-symplasmic bottlenecks ...
The gaseous hormone ethylene plays a key role in plant growth and development, and it is a major reg...
The intricate, and often polarized, ingrowth walls of transfer cells (TCs) amplify their plasma memb...
Research Doctorate - Doctor of Philosophy (PhD)Transfer cells (TCs) form wall ingrowths as an anatom...
Root hairs of Arabidopsis roots develop on trichoblasts located over the anticlinal (radial) walls o...
Despite the importance of transfer cells in enhancing nutrient transport in plants, little is known ...
The past decade has witnessed a tremendous increase in our understanding of the role of ethylene in ...
Transfer cells (TCs) trans-differentiate by developing extensive wall ingrowths that facilitate enha...
Transfer cells are specialized transport cells containing invaginated wall ingrowths that provide an...
Transfer cells (TCs) trans-differentiate from differentiated cells by developing extensive wall ingr...
Various cell types can trans-differentiate to a transfer cell (TC) morphology characterized by depos...
Background: Transfer cells are characterized by intricate ingrowth walls, comprising an uniform wall...
Research Doctorate - Doctor of Philosophy in Biological ScienceTransfer cells (TCs) are plant cells ...
Transfer cells (TCs) support high rates of membrane transport of nutrients conferred by a plasma mem...
Transfer cells (TCs) are anatomically-specialized cells formed at apoplasmic-symplasmic bottlenecks ...
Transfer cells (TCs) are anatomically-specialized cells formed at apoplasmic-symplasmic bottlenecks ...
The gaseous hormone ethylene plays a key role in plant growth and development, and it is a major reg...
The intricate, and often polarized, ingrowth walls of transfer cells (TCs) amplify their plasma memb...
Research Doctorate - Doctor of Philosophy (PhD)Transfer cells (TCs) form wall ingrowths as an anatom...
Root hairs of Arabidopsis roots develop on trichoblasts located over the anticlinal (radial) walls o...
Despite the importance of transfer cells in enhancing nutrient transport in plants, little is known ...
The past decade has witnessed a tremendous increase in our understanding of the role of ethylene in ...