The outgrowth of axillary buds into branches is regulated systemically via plant hormones and the demand of growing shoot tips for sugars. The plant hormone auxin is thought to act via two mechanisms. One mechanism involves auxin regulation of systemic signals, cytokinins and strigolactones, which can move into axillary buds. The other involves suppression of auxin transport/canalization from axillary buds into the main stem and is enhanced by a low sink for auxin in the stem. In this theory, the relative ability of the buds and stem to transport auxin controls bud outgrowth. Here, we evaluate whether auxin transport is required or regulated during bud outgrowth in pea (Pisum sativum). The profound, systemic, and long-term effects of the au...
Apical dominance occurs when the growing shoot tip inhibits the outgrowth of axillary buds. Apically...
Directional transport of the phytohormone auxin is a versatile, plant-specific mechanism regulating ...
A carotenoid-derived hormonal signal that inhibits shoot branching in plants has long escaped identi...
The outgrowth of axillary buds into branches is regulated systemically via plant hormones and the de...
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...
Axillary bud outgrowth is regulated by both environmental cues and internal plant hormone signaling....
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
<div><p>Plants continuously extend their root and shoot systems through the action of meristems at t...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Adventitious root formation from a non-root tissue facilitates clonal propagation of elite plant var...
Shoot branching is essential in ornamental chrysanthemum production and determines final plant shape...
Adventitious root formation is essential for the propagation of many commercially important plant sp...
The inhibition of shoot branching by the growing shoot tip of plants, termed apical dominance, was o...
Strigolactones (SLs), or their derivatives, were recently demonstrated to act as endogenous shoot br...
Apical dominance occurs when the growing shoot tip inhibits the outgrowth of axillary buds. Apically...
Directional transport of the phytohormone auxin is a versatile, plant-specific mechanism regulating ...
A carotenoid-derived hormonal signal that inhibits shoot branching in plants has long escaped identi...
The outgrowth of axillary buds into branches is regulated systemically via plant hormones and the de...
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...
Axillary bud outgrowth is regulated by both environmental cues and internal plant hormone signaling....
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
<div><p>Plants continuously extend their root and shoot systems through the action of meristems at t...
Strigolactone (SL), auxin, and cytokinin (CK) are hormones that interact to regulate shoot branching...
Adventitious root formation from a non-root tissue facilitates clonal propagation of elite plant var...
Shoot branching is essential in ornamental chrysanthemum production and determines final plant shape...
Adventitious root formation is essential for the propagation of many commercially important plant sp...
The inhibition of shoot branching by the growing shoot tip of plants, termed apical dominance, was o...
Strigolactones (SLs), or their derivatives, were recently demonstrated to act as endogenous shoot br...
Apical dominance occurs when the growing shoot tip inhibits the outgrowth of axillary buds. Apically...
Directional transport of the phytohormone auxin is a versatile, plant-specific mechanism regulating ...
A carotenoid-derived hormonal signal that inhibits shoot branching in plants has long escaped identi...