Han Rongkui, Truco Maria José, Lavelle Dean O, Michelmore Richard W
The Genome and Biomedical Sciences Facility, University of California, Davis, Davis, CA, United States.
Plant Biology Graduate Group, University of California, Davis, Davis, CA, United States.
Front Plant Sci. 2021 Mar 8;12:632708. doi: 10.3389/fpls.2021.632708. eCollection 2021.
Plants undergo profound physiological changes when transitioning from vegetative to reproductive growth. These changes affect crop production, as in the case of leafy vegetables. Lettuce is one of the most valuable leafy vegetable crops in the world. Past genetic studies have identified multiple quantitative trait loci (QTLs) that affect the timing of the floral transition in lettuce. Extensive functional molecular studies in the model organism Arabidopsis provide the opportunity to transfer knowledge to lettuce to explore the mechanisms through which genetic variations translate into changes in flowering time. In this review, we integrated results from past genetic and molecular studies for flowering time in lettuce with orthology and functional inference from Arabidopsis. This summarizes the basis for all known genetic variation underlying the phenotypic diversity of flowering time in lettuce and how the genetics of flowering time in lettuce projects onto the established pathways controlling flowering time in plants. This comprehensive overview reveals patterns across experiments as well as areas in need of further study. Our review also represents a resource for developing cultivars with delayed flowering time.
植物从营养生长转变为生殖生长时会经历深刻的生理变化。这些变化会影响作物产量,叶菜类蔬菜就是如此。生菜是世界上最有价值的叶菜类作物之一。过去的遗传学研究已经确定了多个影响生菜花期转变时间的数量性状位点(QTL)。在模式生物拟南芥中进行的广泛功能分子研究为将知识转移到生菜上提供了机会,以探索遗传变异转化为开花时间变化的机制。在这篇综述中,我们整合了过去生菜开花时间的遗传和分子研究结果,以及来自拟南芥的直系同源性和功能推断。这总结了生菜开花时间表型多样性背后所有已知遗传变异的基础,以及生菜开花时间的遗传学如何映射到已确立的植物开花时间控制途径上。这一全面概述揭示了各实验中的模式以及需要进一步研究的领域。我们的综述还为培育开花时间延迟的品种提供了资源。