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The levels of the important plant growth regulator indole‐3‐acetic acid (IAA) are tightly controlled within plant tissues to spatiotemporally orchestrate concentration gradients that drive plant growth and development. Metabolic inactivation of bioactive IAA is known to participate in the modulation of IAA maxima and minima.
IAA can be irreversibly inactivated by oxidation and conjugation to aspartate...
Indole‐3‐acetic acid (IAA) is a predominant form of active auxin in plants. In addition to de novo biosynthesis and release from its conjugate forms, IAA can be converted from its precursor indole‐3‐butyric acid (IBA).
The IBA‐derived IAA may help drive root hair elongation in Arabidopsis thaliana seedlings, but how the IBA‐to‐IAA conversion is regulated and affects IAA function requires further...
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