首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Detection of QTLs for flowering date in three mapping populations of the model legume species Medicago truncatula.
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Detection of QTLs for flowering date in three mapping populations of the model legume species Medicago truncatula.

机译:在模型豆科植物苜蓿苜蓿(Medicago truncatula)的三个作图种群中检测开花日期的QTL。

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摘要

Adaptation to the environment and reproduction are dependent on the date of flowering in the season. The objectives of this paper were to evaluate the effect of photoperiod on flowering date of the model species for legume crops, Medicago truncatula and to describe genetic architecture of this trait in multiple mapping populations. The effect of photoperiod (12 and 18 h) was analysed on eight lines. Quantitative variation in three recombinant inbred lines (RILs) populations involving four parental lines was evaluated, and QTL detection was carried out. Flowering occurred earlier in long than in short photoperiods. Modelling the rate of progression to flowering with temperature and photoperiod gave high R(2), with line-specific parameters that indicated differential responses of the lines to both photoperiod and temperature. QTL detection showed a QTL on chromosome 7 that was common to all populations and seasons. Taking advantage of the multiple mapping populations, it was condensed into a single QTL with a support interval of only 0.9 cM. In a bioanalysis, six candidate genes were identified in this interval. This design also indicated other genomic regions that were involved in flowering date variation more specifically in one population or one season. The analysis on three different mapping populations detected more QTLs than on a single population, revealed more alleles and gave a more precise position of the QTLs that were common to several populations and/or seasons. Identification of candidate genes was a result of integration of QTL analysis and genomics in M. truncatula.
机译:对环境的适应性和繁殖取决于季节的开花日期。本文的目的是评估光周期对豆科作物,藜苜蓿模型物种开花日期的影响,并描述在多个测绘种群中该性状的遗传结构。在八行中分析了光周期(12和18 h)的影响。评价了涉及四个亲本系的三个重组自交系(RIL)群体的数量变异,并进行了QTL检测。长时花期比短时花期早。用温度和光周期对开花进展的速率进行建模可以得到较高的R(2),并且具有特定于行的参数,这些参数指示了行对光周期和温度的不同响应。 QTL检测显示所有人口和季节都共有的7号染色体上的QTL。利用多个映射种群的优势,将其浓缩为单个QTL,支持间隔仅为0.9 cM。在生物分析中,在此间隔中鉴定出六个候选基因。该设计还指示了更具体地在一个种群或一个季节中参与开花日期变化的其他基因组区域。对三个不同作图种群的分析检测到的QTL比单个种群更多,揭示了更多的等位基因,并给出了多个种群和/或季节共有的QTL的更精确位置。候选基因的鉴定是整合了截枝分枝杆菌中QTL分析和基因组学的结果。

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