The plant hormone auxin is a master regulator of plant growth and development. By regulating rates of cell division and elongation and triggering specific patterning events, indole 3-acetic acid (IAA) regulates almost every aspect of plant development. The perception of auxin involves the formation of a ternary complex consisting of an F-box protein of the TIR1/AFB family of auxin receptors, the auxin molecule, and a member the Aux/IAA family of co-repressor proteins. In this study, we identified a potent auxin antagonist, α-(phenylethyl-2-oxo)-IAA, as a lead compound for TIR1/AFB receptors by <i>in silico</i> virtual screening. This molecule was used as the basis for the development of a more potent TIR1 antagonist, auxinole (α-[2,4-dimeth...
Auxin is a multifactorial phytohormone that is required for cell division. Fine gradients determine ...
The plant hormone auxin coordinates almost all aspects of plant development. Throughout plant life, ...
The mode of action of auxin is based on its non-uniform distribution within tissues and organs. Desp...
Auxin (Indole-3-acetic acid; IAA) can be considered one of the most important hormones in plant deve...
The identity of the auxin receptor(s) and the mechanism of auxin perception has been a subject of in...
The identity of the auxin receptor(s) and the mechanism of auxin perception has been a subject of in...
Auxin is a pivotal plant hormone that controls many aspects of plant growth and development. Perceiv...
Indole-3-acetic acid (auxin) is considered one of the cardinal hormones in plant growth and developm...
Structure–activity profiles for the phytohormone auxin have been collected for over 70 years, and a ...
Back-to-back papers have described the identification of a family of receptors for the plant hormone...
It is well known that Auxin plays a key role in controlling many aspects of plant growth and develop...
Auxins are plant hormones involved in cell elongation, phototropism, and root development. Chemical...
Indole-3-acetic acid (auxin) is considered one of the cardinal hormones in plant growth and developm...
Auxin is the major plant hormone regulating growth and development (Friml, 2022). Forward genetic ap...
Auxin is a plant hormone that regulates a wide range of processes during plant development and respo...
Auxin is a multifactorial phytohormone that is required for cell division. Fine gradients determine ...
The plant hormone auxin coordinates almost all aspects of plant development. Throughout plant life, ...
The mode of action of auxin is based on its non-uniform distribution within tissues and organs. Desp...
Auxin (Indole-3-acetic acid; IAA) can be considered one of the most important hormones in plant deve...
The identity of the auxin receptor(s) and the mechanism of auxin perception has been a subject of in...
The identity of the auxin receptor(s) and the mechanism of auxin perception has been a subject of in...
Auxin is a pivotal plant hormone that controls many aspects of plant growth and development. Perceiv...
Indole-3-acetic acid (auxin) is considered one of the cardinal hormones in plant growth and developm...
Structure–activity profiles for the phytohormone auxin have been collected for over 70 years, and a ...
Back-to-back papers have described the identification of a family of receptors for the plant hormone...
It is well known that Auxin plays a key role in controlling many aspects of plant growth and develop...
Auxins are plant hormones involved in cell elongation, phototropism, and root development. Chemical...
Indole-3-acetic acid (auxin) is considered one of the cardinal hormones in plant growth and developm...
Auxin is the major plant hormone regulating growth and development (Friml, 2022). Forward genetic ap...
Auxin is a plant hormone that regulates a wide range of processes during plant development and respo...
Auxin is a multifactorial phytohormone that is required for cell division. Fine gradients determine ...
The plant hormone auxin coordinates almost all aspects of plant development. Throughout plant life, ...
The mode of action of auxin is based on its non-uniform distribution within tissues and organs. Desp...