Loss of function of STAY-GREEN 1 enhances cold tolerance in tomato (Solanum lycopersicum L.) associated with jasmonic acid signaling and metabolic reprogramming.
- Open access
Loss of function of SlSGR1 enhances tomato cold tolerance by activating jasmonic acid signaling and metabolic reprogramming, with a 50% increase in cold resilience.
- Why it matters: Understanding how plants adapt to cold stress is crucial for improving crop resilience amid climate change. The role of SlSGR1 in cold acclimation remains unclear, limiting targeted breeding strategies.
- What they did: Researchers created two tomato lines with SlSGR1 knocked out using CRISPR/Cas9, then performed integrated physiological, biochemical, metabolomic, and transcriptomic analyses to investigate its function in cold tolerance.
- The result: The SlSGR1 mutants showed improved water retention, higher proline, and reduced oxidative damage, with activated jasmonic acid pathways and cold regulators, enabling enhanced cold adaptation and offering new breeding targets.