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Association Studies Identify Natural Variation at PHYC Linked to Flowering Time and Morphological Variation in Pearl Millet

机译:关联研究确定PHYC的自然变异与珍珠粟的开花时间和形态变异有关

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摘要

The identification of genes selected during and after plant domestication is an important research topic to enhance knowledge on adaptative evolution. Adaptation to different climates was a key factor in the spread of domesticated crops. We conducted a study to identify genes responsible for these adaptations in pearl millet and developed an association framework to identify genetic variations associated with the phenotype in this species. A set of 90 inbred lines genotyped using microsatellite loci and AFLP markers was used. The population structure was assessed using two different Bayesian approaches that allow inbreeding or not. Association studies were performed using a linear mixed model considering both the population structure and familial relationships between inbred lines. We assessed the ability of the method to limit the number of false positive associations on the basis of the two different Bayesian methods, the number of populations considered and different morphological traits while also assessing the power of the methodology to detect given additive effects. Finally, we applied this methodology to a set of eight pearl millet genes homologous to cereal flowering pathway genes. We found significant associations between several polymorphisms of the pearl millet PHYC gene and flowering time, spike length, and stem diameter in the inbred line panel. To validate this association, we performed a second association analysis in a different set of pearl millet individuals from Niger. We confirmed a significant association between genetic variation in this gene and these characters.
机译:植物驯化期间和之后选择的基因的鉴定是增强适应进化知识的重要研究课题。适应不同气候是驯化作物传播的关键因素。我们进行了一项研究,以鉴定负责珍珠小米中这些适应的基因,并建立了关联框架,以鉴定与该物种表型相关的遗传变异。使用一组使用微卫星基因座和AFLP标记进行基因分型的90个自交系。使用两种允许近亲繁殖或不允许近亲繁殖的贝叶斯方法评估种群结构。关联研究是使用线性混合模型进行的,同时考虑了种群结构和近交系之间的家族关系。我们基于两种不同的贝叶斯方法,所考虑的种群数量和不同的形态特征,评估了该方法限制假阳性关联数的能力,同时还评估了该方法检测给定加性效应的能力。最后,我们将此方法应用于与谷物开花途径基因同源的一组八个珍珠粟基因。我们在近交系面板中发现了小米PHYC基因的几种多态性与开花时间,穗长和茎直径之间的显着关联。为了验证这种关联,我们对一组来自尼日尔的不同珍珠小米个体进行了第二次关联分析。我们证实了该基因的遗传变异与这些特征之间的显着关联。

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