Tian Zhixi, Nepomuceno Alexandre Lima, Song Qingxin, Stupar Robert M, Liu Bin, Kong Fanjiang, Ma Jianxin, Lee Suk-Ha, Jackson Scott A
Yazhouwan National Laboratory, Sanya, Hainan, China.
Embrapa Soybean, Brazilian Agricultural Research Corporation, Londrina, Paraná, Brazil.
Mol Plant. 2025 Feb 3;18(2):245-271. doi: 10.1016/j.molp.2025.01.004. Epub 2025 Jan 6.
Soybean, the fourth most important crop in the world, uniquely serves as a source of both plant oil and plant protein for the world's food and animal feed. Although soybean production has increased approximately 13-fold over the past 60 years, the continually growing global population necessitates further increases in soybean production. In the past, especially in the last decade, significant progress has been made in both functional genomics and molecular breeding. However, many more challenges should be overcome to meet the anticipated future demand. Here, we summarize past achievements in the areas of soybean omics, functional genomics, and molecular breeding. Furthermore, we analyze trends in these areas, including shortages and challenges, and propose new directions, potential approaches, and possible outputs toward 2035. Our views and perspectives provide insight into accelerating the development of elite soybean varieties to meet the increasing demands of soybean production.
大豆是世界上第四重要的作物,它独一无二地为全球食品和动物饲料提供植物油和植物蛋白。尽管在过去60年里大豆产量增长了约13倍,但全球人口的持续增长使得大豆产量有必要进一步提高。过去,尤其是在过去十年中,功能基因组学和分子育种都取得了重大进展。然而,要满足未来预期需求,还需要克服更多挑战。在此,我们总结了大豆组学、功能基因组学和分子育种领域过去的成就。此外,我们分析了这些领域的趋势,包括不足和挑战,并提出了到2035年的新方向、潜在方法和可能成果。我们的观点和见解有助于加速优良大豆品种的开发,以满足大豆生产不断增长的需求。