2025/09/13 by Yves Gibon, Diane M. Beckles, Sonia Osorio +1 · 1 voice
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · #Plant Molecular Biology Research #Plant Reproductive Biology #Greenhouse Technology and Climate Control
paper · pdf · doi:10.1093/jxb/eraf395
Tomato is both one of the most consumed horticultural crops and the model species for fleshy fruits. While impressive yields are now obtained, the tomato sector must face the numerous threats to these advances in productivity due to the consequences of climate change. Since the first draft genome sequence in 2012, our understanding of tomato genetics has advanced dramatically, greatly facilitating the identification of mechanisms involved in growth, development, resistance to stress, and organoleptic quality. This intensive investigation has broadened our understanding of the integration and coordination of these mechanisms by phytohormones and transcription factors, as well as the roles played by metabolism, particularly in establishing fruit quality, with the aim to better target breeding programmes and to develop innovative cultivation practices.