One of the first and most enduring roles identified for the plant hormone auxin is the mediation of apical dominance. Many reports have claimed that reduced stem indole-3-acetic acid (IAA) levels and/ or reduced basipetal IAA transport directly or indirectly initiate bud growth in decapitated plants. We have tested whether auxin inhibits the initial stage of bud release, or subsequent stages, in garden pea (Pisum sativum) by providing a rigorous examination of the dynamics of auxin level, auxin transport, and axillary bud growth. We demonstrate that after decapitation, initial bud growth occurs prior to changes in IAA level or transport in surrounding stem tissue and is not prevented by an acropetal supply of exogenous auxin. We also show t...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Abstract Shoot branching involves the coordinated regulation of the activity of meristems establishe...
Although the co-ordination of promotive root-sourced cytokinin (CK) and inhibitory shoot apex-source...
One of the first and most enduring roles identified for the plant hormone auxin is the mediation of ...
Apical dominance is the process whereby the shoot tip inhibits the growth of axillary buds along the...
Apical dominance is the process whereby the shoot tip inhibits the growth of axillary buds along the...
Shoot branching is one of the major determinants of plant architecture. Polar auxin transport in ste...
Apical dominance is one of the fundamental developmental phenomena in plant biology, which determine...
The inhibition of shoot branching by the growing shoot tip of plants, termed apical dominance, was o...
In plants such as the garden pea (Pisum sativum L.), it is widely thought that the auxin indole-3-ac...
The outgrowth of axillary buds into branches is regulated systemically via plant hormones and the de...
Decapitation-induced axillary bud outgrowth is a vital mechanism whereby shoots are able to continue...
For almost a century the plant hormone auxin has been central to theories on apical dominance, where...
This paper presents two models of carrier-dependent long-distance auxin transport in stems that repr...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Abstract Shoot branching involves the coordinated regulation of the activity of meristems establishe...
Although the co-ordination of promotive root-sourced cytokinin (CK) and inhibitory shoot apex-source...
One of the first and most enduring roles identified for the plant hormone auxin is the mediation of ...
Apical dominance is the process whereby the shoot tip inhibits the growth of axillary buds along the...
Apical dominance is the process whereby the shoot tip inhibits the growth of axillary buds along the...
Shoot branching is one of the major determinants of plant architecture. Polar auxin transport in ste...
Apical dominance is one of the fundamental developmental phenomena in plant biology, which determine...
The inhibition of shoot branching by the growing shoot tip of plants, termed apical dominance, was o...
In plants such as the garden pea (Pisum sativum L.), it is widely thought that the auxin indole-3-ac...
The outgrowth of axillary buds into branches is regulated systemically via plant hormones and the de...
Decapitation-induced axillary bud outgrowth is a vital mechanism whereby shoots are able to continue...
For almost a century the plant hormone auxin has been central to theories on apical dominance, where...
This paper presents two models of carrier-dependent long-distance auxin transport in stems that repr...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Abstract Shoot branching involves the coordinated regulation of the activity of meristems establishe...
Although the co-ordination of promotive root-sourced cytokinin (CK) and inhibitory shoot apex-source...