National Key Laboratory of Crop Genetic Improvement, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.
Department of Agronomy and Horticulture, University of Nebraska Lincoln, Lincoln, NE, 68588-0660, USA.
Sci Rep. 2019 Jul 3;9(1):9603. doi: 10.1038/s41598-019-45794-9.
Variations in the gene promoter play critical roles in the evolution of important adaptive traits in crops, but direct links of the regulatory mutation to the adaptive change are not well understood. Here, we examine the nucleotide variations in the promoter region of a transcription factor (Ghd8) that control grain number, plant height and heading date in rice. We find that a dominant promoter type of subspecies japonica displayed a high activity for Ghd8 expression in comparison with the one in indica. Transgenic analyses revealed that higher expression levels of Ghd8 delayed heading date and enhanced cold tolerance in rice. Furthermore, a single-nucleotide polymorphism (T1279G) at the position -1279 bp that locates on the potential GA-responsive motif in the Ghd8 promoter affected the expression of this gene. The 1279 T variant has elevated expression of Ghd8, thus conferring increased cold tolerance of rice seedlings. Nucleotide diversity analysis revealed that the approximately 25-kb genomic region surrounding Ghd8 in the subspecies japonica was under significant selection pressure. Our findings demonstrate that the join effects of the regulatory and coding variants largely contribute to the divergence of japonica and indica and increase the adaptability of japonica to the cold environment.
基因启动子的变异在作物重要适应性特征的进化中起着关键作用,但调控突变与适应性变化之间的直接联系还不是很清楚。在这里,我们研究了控制水稻粒数、株高和抽穗期的转录因子(Ghd8)启动子区域的核苷酸变异。我们发现与籼稻相比,亚种粳稻的显性启动子类型在 Ghd8 表达方面表现出更高的活性。转基因分析表明,Ghd8 的高表达水平延迟了水稻的抽穗期并增强了其对寒冷的耐受性。此外,位于 Ghd8 启动子上潜在 GA 反应元件的-1279bp 位置的单核苷酸多态性(T1279G)影响了该基因的表达。Ghd8 的表达,从而赋予了水稻幼苗更高的耐寒性。核苷酸多样性分析表明,亚种粳稻中 Ghd8 周围约 25kb 的基因组区域受到了显著的选择压力。我们的研究结果表明,调控和编码变异的联合效应在很大程度上导致了粳稻和籼稻的分化,并提高了粳稻对寒冷环境的适应性。