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Genome-Wide Association Study in Pseudo-F2 Populations of Switchgrass Identifies Genetic Loci Affecting Heading and Anthesis Dates

机译:柳枝P F2种群的全基因组关联研究确定了影响抽穗期和花期的遗传基因座。

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摘要

Switchgrass (Panicum virgatum) is a native prairie grass and valuable bio-energy crop. The physiological change from juvenile to reproductive adult can draw important resources away from growth into producing reproductive structures, thereby limiting the growth potential of early flowering plants. Delaying the flowering of switchgrass is one approach by which to increase total biomass. The objective of this research was to identify genetic variants and candidate genes for controlling heading and anthesis in segregating switchgrass populations. Four pseudo-F2 populations (two pairs of reciprocal crosses) were developed from lowland (late flowering) and upland (early flowering) ecotypes, and heading and anthesis dates of these populations were collected in Lafayette, IN and DeKalb, IL in 2015 and 2016. Across 2 years, there was a 34- and 73-day difference in heading and a 52- and 75-day difference in anthesis at the Lafayette and DeKalb locations, respectively. A total of 37,901 single nucleotide polymorphisms obtained by exome capture sequencing of the populations were used in a genome-wide association study (GWAS) that identified five significant signals at three loci for heading and two loci for anthesis. Among them, a homolog of FLOWERING LOCUS T on chromosome 5b associated with heading date was identified at the Lafayette location across 2 years. A homolog of ARABIDOPSIS PSEUDO-RESPONSE REGULATOR 5, a light modulator in the circadian clock associated with heading date was detected on chromosome 8a across locations and years. These results demonstrate that genetic variants related to floral development could lend themselves to a long-term goal of developing late flowering varieties of switchgrass with high biomass yield.
机译:柳枝((Panicum virgatum)是土生的草原草和有价值的生物能源作物。从幼年到生殖成年的生理变化可以将重要的资源从生长中转移到产生生殖结构中,从而限制了早期开花植物的生长潜力。推迟柳枝the开花是增加总生物量的一种方法。这项研究的目的是确定遗传变异和候选基因,以控制柳枝switch种群的分离。从低地(晚花期)和高地(早花期)生态型中发育出四个假F2种群(两对倒交),并在2015年和2016年收集了这些种群的抽穗期和花期数据。在过去的2年中,拉斐特和迪卡尔布的花序分别为34天和73天,花期分别为52天和75天。通过群体的外显子组捕获测序获得的总共37,901个单核苷酸多态性用于全基因组关联研究(GWAS),该研究在三个位点定位了5个重要信号,在花期识别了两个基因。其中,在拉斐特(Lafayette)位置跨2年鉴定出与寄主日期相关的5b号染色体上的FLOWERING LOCUS T同源物。在第8a号染色体上跨位置和年份检测到了拟南芥拟态反应调节剂5的同系物,这是昼夜节律中与前进日期相关的光调节剂。这些结果表明,与花发育有关的遗传变异可以使其长期目标成为开发具有高生物量产量的柳枝late晚开花品种。

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