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Genetic Control of Photoperiod Sensitivity in Maize Revealed by Joint Multiple Population Analysis

机译:联合多种群分析揭示了玉米光周期敏感性的遗传控制

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摘要

Variation in maize for response to photoperiod is related to geographical adaptation in the species. Maize possesses homologs of many genes identified as regulators of flowering time in other species, but their relation to the natural variation for photoperiod response in maize is unknown. Candidate gene sequences were mapped in four populations created by crossing two temperate inbred lines to two photoperiod-sensitive tropical inbreds. Whole-genome scans were conducted by high-density genotyping of the populations, which were phenotyped over 3 years in both short- and long-day environments. Joint multiple population analysis identified genomic regions controlling photoperiod responses in flowering time, plant height, and total leaf number. Four key genome regions controlling photoperiod response across populations were identified, referred to as ZmPR1–4. Functional allelic differences within these regions among phenotypically similar founders suggest distinct evolutionary trajectories for photoperiod adaptation in maize. These regions encompass candidate genes CCA/LHY, CONZ1, CRY2, ELF4, GHD7, VGT1, HY1/SE5, TOC1/PRR7/PPD-1, PIF3, ZCN8, and ZCN19.
机译:玉米对光周期反应的变化与物种的地理适应性有关。玉米拥有许多基因的同源物,这些基因在其他物种中被认为是开花时间的调节因子,但它们与玉米光周期反应的自然变异的关系尚不清楚。通过将两个温带近交系与两个对光周期敏感的热带近交系杂交,在四个种群中定位了候选基因序列。全基因组扫描是通过对人群进行高密度基因分型来进行的,这些基因型在短日和长日环境中均在3年内被表型化。联合多种群分析确定了控制开花期,株高和总叶数中光周期响应的基因组区域。确定了控制种群间光周期反应的四个关键基因组区域,称为ZmPR1-4。在表型相似的创始人之间,这些区域内的功能等位基因差异表明玉米光周期适应的独特进化轨迹。这些区域包含候选基因CCA / LHY,CONZ1,CRY2,ELF4,GHD7,VGT1,HY1 / SE5,TOC1 / PRR7 / PPD-1,PIF3,ZCN8和ZCN19。

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