Dynamic control of plant water use using designed ABA receptor agonists.
basic_science · Level V
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- Record sourced from PubMed, PMID 31649167.
- Also identified by DOI 10.1126/science.aaw8848.
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Abstract
Drought causes crop losses worldwide, and its impact is expected to increase as the world warms. This has motivated the development of small-molecule tools for mitigating the effects of drought on agriculture. We show here that current leads are limited by poor bioactivity in wheat, a widely grown staple crop, and in tomato. To address this limitation, we combined virtual screening, x-ray crystallography, and structure-guided design to develop opabactin (OP), an abscisic acid (ABA) mimic with up to an approximately sevenfold increase in receptor affinity relative to ABA and up to 10-fold greater activity in vivo. Studies in <i>Arabidopsis thaliana</i> reveal a role of the type III receptor <i>PYRABACTIN RESISTANCE-LIKE 2</i> for the antitranspirant efficacy of OP. Thus, virtual screening and structure-guided optimization yielded newly discovered agonists for manipulating crop abiotic stress tolerance and water use.
Medical subject headings
- Abscisic Acid
- Arabidopsis
- Arabidopsis Proteins
- Benzamides
- Cyclohexanes
- Hormones
- Receptors, Cell Surface
- Stress, Physiological
- Water