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◆ Plant physiology and biochemistry : PPB2026-08-24

Modulating red: Far-red ratios accelerates speed breeding efficiency by coordinating photosynthesis and flowering in winter wheat (Triticum aestivum L.) under controlled environments.

Si Tang, Tingting Gao, Xiaoxu Zhan, Qichang Yang, Chungui Lu, Zhonghua Bian

原始摘要(英文原文)· Original abstract
The ratio of red to far-red light (R/FR) is well known to regulate plant photosynthesis and flowering. However, the molecular and physiological mechanisms underlying these coordinated responses in winter wheat remain largely unclear. In a controlled-environment growth chamber, we investigated flowering behavior, photosynthetic performance, genome-wide transcriptional responses, and breeding efficiency in winter wheat under four R/FR light treatments: 10:1, 2:1, 1:1, and 1:2. Compared with an R/FR ratio of 10:1, an R/FR ratio of 2:1 significantly enhanced breeding efficiency, enabling up to 4.7 generations annually, via enhancing photosynthetic capacity, accelerating floral transition and progeny seed early maturation, albeit causing a decrease in production. Transcriptomic profiling further demonstrated that low R/FR ratios extensively remodel the expression of core genes associated with gibberellin (GA) biosynthesis, photosynthesis, and the flowering regulatory pathway. Far-red light supplementation upregulated key gibberellin biosynthesis genes (e.g., TaGA20ox1, TaGA20ox2-like), increasing the accumulation of biologically active gibberellins (GA3 and GA4). This subsequently upregulated flowering promoters (e.g., TaFT and TaFT-like) and downregulated flowering inhibitors (e.g., CO-L9 and CO-L10), thereby accelerating flowering. Taken together, these findings provide a mechanistic framework showing that far-red light accelerates reproductive development in winter wheat by enhancing GA-mediated signaling pathways, while maintaining higher photosynthetic performance. This regulatory effect highlights the potential of R/FR manipulation to shorten generation cycles and improve breeding efficiency in controlled-environment agriculture systems for winter wheat.
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Modulating red: Far-red ratios accelerates speed breeding efficiency by coordinating photosynthesis and flowering in winter wheat (Triticum aestivum L.) under controlled environments. — 科研速览 Science Skim