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Allelic Variations at Four Major Maturity E Genes and Transcriptional Abundance of the E1 Gene Are Associated with Flowering Time and Maturity of Soybean Cultivars

机译:四个主要成熟度E基因的等位基因变异和E1基因的转录丰度与大豆品种的开花时间和成熟度相关

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摘要

The time to flowering and maturity are ecologically and agronomically important traits for soybean landrace and cultivar adaptation. As a typical short-day crop, long day conditions in the high-latitude regions require soybean cultivars with photoperiod insensitivity that can mature before frost. Although the molecular basis of four major E loci (E1 to E4) have been deciphered, it is not quite clear whether, or to what degree, genetic variation and the expression level of the four E genes are associated with the time to flowering and maturity of soybean cultivars. In this study, we genotyped 180 cultivars at E1 to E4 genes, meanwhile, the time to flowering and maturity of those cultivars were investigated at six geographic locations in China from 2011 to 2012 and further confirmed in 2013. The percentages of recessive alleles at E1, E2, E3 and E4 loci were 38.34%, 84.45%, 36.33%, and 7.20%, respectively. Statistical analysis showed that allelic variations at each of four loci had a significant effect on flowering time as well as maturity. We classified the 180 cultivars into eight genotypic groups based on allelic variations of the four major E loci. The genetic group of e1-nf representing dysfunctional alleles at the E1 locus flowered earliest in all the geographic locations. In contrast, cultivars in the E1E2E3E4 group originated from the southern areas flowered very late or did not flower before frost at high latitude locations. The transcriptional abundance of functional E1 gene was significantly associated with flowering time. However, the ranges of time to flowering and maturity were quite large within some genotypic groups, implying the presence of some other unknown genetic factors that are involved in control of flowering time or maturity. Known genes (e.g. E3 and E4) and other unknown factors may function, at least partially, through regulation of the expression of the E1 gene.
机译:开花时间和成熟时间是大豆地方品种和栽培品种适应的重要的生态和农艺性状。作为典型的短时作物,高纬度地区的长日条件要求大豆品种对光周期不敏感,可以在霜冻前成熟。尽管已经破译了四个主要E基因座(E1至E4)的分子基础,但尚不清楚这四个E基因的遗传变异和表达水平与开花时间和成熟程度是否相关,或在多大程度上相关大豆品种。在这项研究中,我们对E1至E4基因的180个品种进行了基因分型,同时,对这些品种的开花时间和成熟度进行了研究,从2011年至2012年在中国六个地理位置进行了调查,并在2013年得到进一步确认。E1隐性等位基因的百分比,E2,E3和E4位点分别为38.34%,84.45%,36.33%和7.20%。统计分析表明,四个位点每个的等位基因变异对开花时间和成熟度都有显着影响。我们基于四个主要E位点的等位基因变异将180个品种分为八个基因型组。代表E1基因座功能异常等位基因的e1-nf遗传群体最早出现在所有地理位置。相反,E1E2E3E4组的栽培种起源于南部地区,开花时间很晚,或者在高纬度地区霜冻前没有开花。功能性E1基因的转录丰度与开花时间显着相关。然而,在某些基因型群体中,开花和成熟的时间范围非常大,这意味着存在一些其他未知的遗传因素,这些因素涉及开花时间或成熟的控制。已知基因(例如E3和E4)和其他未知因素可能至少部分地通过调节E1基因的表达发挥作用。

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