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Morphological traits defining species differences in wild relatives of maize are controlled by multiple quantitative trait loci

机译:玉米野生近缘种中定义物种差异的形态特征受多个数量性状基因座的控制

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We analyzed the genetic basis of morphological differences between two wild species of teosinte (Zea diploperennis and Z. mays ssp. parviglumis), which are relatives of maize. These two species differ in a number of taxonomically important traits including the structure of the tassel (male inflorescence), which is the focus of this report. To investigate the genetic inheritance of six tassel traits, quantitative trait locus (QTL) mapping with 95 RFLP markers was employed on a population of 425 F-2 plants. Each trait was analyzed by interval mapping (IM) and composite interval mapping (CIM) to identify and characterize the QTL controlling the differences in tassel morphology, We detected two to eight QTL for each trait. In total, 30 QTL with IM and 33 QTL with CIM were found for tassel morphology. QTL for several of the traits mapped near each other, suggesting pleiotropy and/or linkage of QTL. The QTL showed small to moderate magnitudes of effect. No QTL of exceptionally large effect were found as seen under domestication and in the case of some other natural species. Thus, the model involving major QTL of large effect seems not to apply to the traits and species analyzed. A mixture of QTL with positive and negative allelic effects was found for most tassel traits and may suggest a history of periodic changes in the direction of selection during the divergence of Z. diploperennis and Z mays ssp. parviglumis or fixation of QTL alleles by random genetic drift rather than election. [References: 46]
机译:我们分析了玉米的近亲Teosinte的两个野生物种(Zea diploperennis和Z. mays ssp。parviglumis)之间形态差异的遗传基础。这两个物种在许多生物分类上的重要特征不同,包括流苏(雄性花序)的结构,这是本报告的重点。为了研究六个流苏性状的遗传遗传,在425株F-2植物上采用了具有95个RFLP标记的定量性状基因座(QTL)定位。通过间隔映射(IM)和复合间隔映射(CIM)对每个性状进行分析,以鉴定和表征控制流苏形态差异的QTL。我们为每个性状检测了2至8个QTL。总共发现30个带有IM的QTL和33个带有CIM的QTL的流苏形态。几个性状的QTL相互靠近,表明多效性和/或QTL连锁。 QTL表现出较小到中等的影响幅度。在驯化和其他一些自然物种的情况下,未发现有异常大的QTL。因此,涉及具有重大影响的主要QTL的模型似乎不适用于所分析的性状和物种。发现大多数流苏性状具有QTL的正向和负向等位基因混合效应,可能暗示了在Z. diploperennis和Z mays ssp趋异期间选择方向周期性变化的历史。通过随机遗传漂移而不是选择,将小夜蛾或QTL等位基因固定。 [参考:46]

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