Transfer cells (TCs) are ubiquitous throughout the plant kingdom. Their unique ingrowth wall labyrinths, supporting a plasma membrane enriched in transporter proteins, provides these cells with an enhanced membrane transport capacity for resources. In certain plant species, TCs have been shown to function to facilitate phloem loading and/or unloading at cellular sites of intense resource exchange between symplasmic/apoplasmic compartments. Within the phloem, the key cellular locations of TCs are leaf minor veins of collection phloem and stem nodes of transport phloem. In these locations, companion and phloem parenchyma cells trans-differentiate to a TC morphology consistent with facilitating loading and re-distribution of resources, respect...
Research Doctorate - Doctor of Philosophy (PhD)Transfer cells (TCs) play important roles in facilita...
International audienceIn addition to moving sugars and nutrients, the phloem transports many macromo...
A defining feature of higher plants such as Arabidopsis thaliana is the sophisticated vascular trans...
Transfer cells provide a fascinating example of how the cell wall profoundly influences cell functio...
<p>Transfer cells (TCs) play important roles in facilitating enhanced rates of nutrient transport at...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
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...
Research Doctorate - Doctor of Philosophy (PhD)Recent advances in plant membrane transport research ...
Transfer cells (TCs) play important roles in facilitating enhanced rates of nutrient transport at ke...
Most growth and storage organs (sinks) of higher plants import assimilates in solution by bulk flow ...
Abstract As sessile organisms, plants use long-range signalling between organs in order to adapt to ...
Transfer cells are specialised transport cells containing invaginated wall ingrowths that generate a...
Plant vasculature consists of two major conductive cell types, xylem tracheary elements and phloem s...
In Arabidopsis, polarized deposition of wall ingrowths in phloem parenchyma (PP) transfer cells (TCs...
Research Doctorate - Doctor of Philosophy (PhD)Transfer cells (TCs) play important roles in facilita...
International audienceIn addition to moving sugars and nutrients, the phloem transports many macromo...
A defining feature of higher plants such as Arabidopsis thaliana is the sophisticated vascular trans...
Transfer cells provide a fascinating example of how the cell wall profoundly influences cell functio...
<p>Transfer cells (TCs) play important roles in facilitating enhanced rates of nutrient transport at...
In species performing apoplasmic loading, phloem cells adjacent to sieve elements often develop into...
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...
Research Doctorate - Doctor of Philosophy (PhD)Recent advances in plant membrane transport research ...
Transfer cells (TCs) play important roles in facilitating enhanced rates of nutrient transport at ke...
Most growth and storage organs (sinks) of higher plants import assimilates in solution by bulk flow ...
Abstract As sessile organisms, plants use long-range signalling between organs in order to adapt to ...
Transfer cells are specialised transport cells containing invaginated wall ingrowths that generate a...
Plant vasculature consists of two major conductive cell types, xylem tracheary elements and phloem s...
In Arabidopsis, polarized deposition of wall ingrowths in phloem parenchyma (PP) transfer cells (TCs...
Research Doctorate - Doctor of Philosophy (PhD)Transfer cells (TCs) play important roles in facilita...
International audienceIn addition to moving sugars and nutrients, the phloem transports many macromo...
A defining feature of higher plants such as Arabidopsis thaliana is the sophisticated vascular trans...