The intricate, and often polarized, ingrowth walls of transfer cells (TCs) amplify their plasma membrane surface areas to confer a transport function of supporting high rates of nutrient exchange across apo-/symplasmic interfaces. The TC ingrowth wall comprises a uniform wall layer on which wall ingrowths are deposited. Signals and signal cascades inducing <i>trans</i>-differentiation events leading to formation of TC ingrowth walls are poorly understood. <i>Vicia faba cotyledons</i> offer a robust experimental model to examine TC induction as, when placed into culture, their adaxial epidermal cells rapidly (h) and synchronously form polarized ingrowth walls accessible for experimental observations. Using this model, we recently reported fi...
The formation of wall ingrowths increases plasma membrane surface areas of transfer cells involved i...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
Despite the importance of transfer cells in enhancing nutrient transport in plants, little is known ...
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) trans-differentiate from differentiated cells by developing extensive wall ingr...
Transfer cells (TCs) support high rates of membrane transport of nutrients conferred by a plasma mem...
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...
Background: Transfer cells (TCs) are <i>trans</i>-differentiated versions of existing cell types des...
Transfer cells are characterized by wall labyrinths with either a flange or reticulate architecture....
Transfer cells are anatomically specialized cells optimized to support high levels of nutrient trans...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
Transfer cells (TCs) are anatomically-specialized cells formed at apoplasmic-symplasmic bottlenecks ...
The formation of wall ingrowths increases plasma membrane surface areas of transfer cells involved i...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
Despite the importance of transfer cells in enhancing nutrient transport in plants, little is known ...
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) trans-differentiate from differentiated cells by developing extensive wall ingr...
Transfer cells (TCs) support high rates of membrane transport of nutrients conferred by a plasma mem...
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...
Background: Transfer cells (TCs) are <i>trans</i>-differentiated versions of existing cell types des...
Transfer cells are characterized by wall labyrinths with either a flange or reticulate architecture....
Transfer cells are anatomically specialized cells optimized to support high levels of nutrient trans...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
Transfer cells (TCs) are anatomically-specialized cells formed at apoplasmic-symplasmic bottlenecks ...
The formation of wall ingrowths increases plasma membrane surface areas of transfer cells involved i...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
Despite the importance of transfer cells in enhancing nutrient transport in plants, little is known ...