Innovative Center of Molecular Genetics and Evolution, School of Life Science, Guangzhou University, Guangzhou 510006, China.
Yi Chuan. 2023 Sep 20;45(9):793-800. doi: 10.16288/j.yczz.23-200.
Flowering represents the transition from vegetative stage to reproductive stage. As a photoperiod- sensitive crop, soybean can perceive changes in photoperiod to regulate flowering and reproductive periods, thereby influencing soybean yield and other agronomic traits, and determining the photoperiodic adaptability. Therefore, understanding the regulatory mechanisms of photoperiod on flowering and reproductive periods in soybean is one of the hotspots in soybean research. In this review, we introduce the molecular mechanisms of early flowering and early maturation during soybean domestication, and the molecular regulatory pathways of cultivated soybean expansion from the origin to high and low latitudes, respectively. At last, we summarize the research progress on photoperiod adaptability in wild soybean. Analyzing the regulatory mechanisms of photoperiod on soybean life history and domestication will provide valuable insights for the breeding of superior soybean varieties.
开花代表着植物从营养生长阶段向生殖生长阶段的转变。作为一种对光周期敏感的作物,大豆可以感知光周期的变化,从而调节开花和生殖期,影响大豆的产量和其他农艺性状,决定其对光周期的适应性。因此,了解光周期对大豆开花和生殖期的调控机制是大豆研究的热点之一。在本综述中,我们介绍了大豆驯化过程中早期开花和早期成熟的分子机制,以及栽培大豆从起源到高、低纬度扩张的分子调控途径。最后,我们总结了野生大豆对光周期适应性的研究进展。分析光周期对大豆生活史和驯化的调控机制将为培育优良大豆品种提供有价值的见解。