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Speed breeding 3.0: mainstreaming light-driven plant breeding for sustainable genetic gains
Pramod Gorakhanath Kabade1, Sanjay Kumar2, Ajay Kohli3
1International Rice Research Institute, Los Banos, Laguna, Philippines; International Rice Research Institute (IRRI), South-Asia Regional Centre (ISARC), Varanasi, India; Banaras Hindu University (BHU), Varanasi, Uttar Pradesh, India.
None:
Advances in photobiological tools are revolutionizing plant breeding by enabling precise control of light parameters, addressing yield stagnation, and mitigating climate challenges. Full-spectrum light-emitting diodes (LEDs) and optimized light protocols have significantly reduced breeding cycles. This review highlights light-driven strategies that are accessible and practical for plant breeders worldwide including the role of light spectrum, intensity, and photoperiod in acceleration of plant growth in both short- and long-day crops. Speed breeding 3.0, with tailored rapid generation advancement (RGA) protocols designed for diverse crop populations, has the potential to significantly sustain genetic gains in a more efficient and targeted manner. These innovative approaches hold the potential to transform global agriculture and secure food systems in the face of rising populations and environmental uncertainties.
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