Dietz Nicholas, Chan Yen On, Scaboo Andrew, Graef George, Hyten David, Happ Mary, Diers Brian, Lorenz Aaron, Wang Dechun, Joshi Trupti, Bilyeu Kristin
Division of Plant Science and Technology, University of Missouri, Columbia, MO, United States.
Christopher S. Bond Life Sciences Center, University of Missouri, Columbia, MO, United States.
Front Plant Sci. 2022 Apr 29;13:889066. doi: 10.3389/fpls.2022.889066. eCollection 2022.
Adaptation of soybean cultivars to the photoperiod in which they are grown is critical for optimizing plant yield. However, despite its importance, only the major loci conferring variation in flowering time and maturity of US soybean have been isolated. By contrast, over 200 genes contributing to floral induction in the model organism have been described. In this work, putative alleles of a library of soybean orthologs of these flowering genes were tested for their latitudinal distribution among elite US soybean lines developed in the United States. Furthermore, variants comprising the alleles of genes with significant differences in latitudinal distribution were assessed for amino acid conservation across disparate genera to infer their impact on gene function. From these efforts, several candidate genes from various biological pathways were identified that are likely being exploited toward adaptation of US soybean to various maturity groups.
大豆品种对其生长光周期的适应性对于优化作物产量至关重要。然而,尽管其重要性,但仅分离出了导致美国大豆开花时间和成熟度变异的主要基因座。相比之下,在模式生物中已有超过200个促成花诱导的基因被描述。在这项研究中,对这些开花基因的大豆直系同源基因文库的假定等位基因在美国培育的优良大豆品系中的纬度分布进行了测试。此外,对在纬度分布上存在显著差异的基因的等位基因所包含的变体进行了评估,以推断其在不同属间氨基酸保守性,从而了解它们对基因功能的影响。通过这些研究,从各种生物学途径中鉴定出了几个候选基因,这些基因可能有助于美国大豆适应不同的成熟组。