
Plant sterols and steroid hormones, the brassinosteroids (BRs), are compounds that exert a wide range of biological activities. They are essential for plant growth, reproduction, and responses to various abiotic and biotic stresses. Given the importance of sterols and BRs in these processes, engineering their biosynthetic and signaling pathways offers exciting potentials for enhancing crop yield. In this review, we focus on how alterations in components of sterol and BR metabolism and signaling or application of exogenous steroids and steroid inhibitors affect traits of agronomic importance. We also discuss areas for future research and identify the fine-tuning modulation of endogenous BR content as a promising strategy for crop improvement.
REGULATE CHLOROPLAST DEVELOPMENT, Crops, Agricultural, BRASSINOSTEROID SIGNAL-TRANSDUCTION, RICE DWARF MUTANT, Reproduction, Arabidopsis, Biology and Life Sciences, CELL ELONGATION, RECEPTOR-LIKE KINASES, ABSCISIC-ACID, Plant Dormancy, SHADE-AVOIDANCE, TRANSCRIPTION FACTORS, Stress, Physiological, Brassinosteroids, ARABIDOPSIS-THALIANA, STRESS TOLERANCE
REGULATE CHLOROPLAST DEVELOPMENT, Crops, Agricultural, BRASSINOSTEROID SIGNAL-TRANSDUCTION, RICE DWARF MUTANT, Reproduction, Arabidopsis, Biology and Life Sciences, CELL ELONGATION, RECEPTOR-LIKE KINASES, ABSCISIC-ACID, Plant Dormancy, SHADE-AVOIDANCE, TRANSCRIPTION FACTORS, Stress, Physiological, Brassinosteroids, ARABIDOPSIS-THALIANA, STRESS TOLERANCE
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