...
首页> 外文期刊>Breeding science >ISSR markers to assess genetic diversity of cultivated populations from artificial selection of Stevia rebaudiana (Bert.) Bertoni
【24h】

ISSR markers to assess genetic diversity of cultivated populations from artificial selection of Stevia rebaudiana (Bert.) Bertoni

机译:ISSR标记评估从史蒂维亚雷博尼亚(BERT.)Bertoni的人工选择培养种群的遗传多样性

获取原文
           

摘要

Artificial selection related with important agronomic characteristics of Stevia rebaudiana may cause genetic divergence and formation of genetically structured populations with genetic uniformity or diversity within cultivars. Current study employed inter simple sequence repeats of DNA (ISSR markers) to assess genetic diversity within and among a single cultivated population maintained through sexual propagation (SR1) and four cultivated populations generated by artificial selection and maintained by vegetative propagation (SR2–SR5). Highest polymorphism rate was reported in SR1 (89.24%), whilst the lowest rate of polymorphism occurred in SR2 (60.13%). ISSR markers revealed that selection of plants with traits of vegetative-propagated interest may lead towards the generation of genetically more uniform DNA-level populations, while plants maintained by sexual propagation have high genetic variability. High estimated genetic divergence level indicated that the five areas of stevia form genetically structured populations. SR2 and SR4 are constituted by plants more homogeneous at DNA level for the selected characteristics than plants of SR3 and SR5 populations. Predominant and homogeneous genotypes selected at SR2 and SR4 areas could be valuable for tracing strategies to obtain stevia plants with the desirable agronomic characteristics through crosses between contrasting individuals in future breeding programs.
机译:与甜叶菊雷吉尼亚州甜叶菊的重要农产性特征有关的人工选择可能导致遗传分歧和形成遗传结构群体的遗传均匀性或品种内的多样性。目前的研究采用DNA(ISSR标记)的间简单序列重复,以评估通过性繁殖(SR1)和由人工选择产生的四种培养种群维持的单一培养人群中的遗传多样性和由植物繁殖(SR2-SR5)维持的培养种群。在SR1(89.24%)中报告了最高的多态性率,而在SR2中发生的最低多态性速率(60.13%)。 ISSR标记显示,选择具有营养传播兴趣的特征的植物可能导致转基因更均匀的DNA水平群体,而通过性繁殖维持的植物具有高遗传变异性。高估计的遗传分歧水平表明,甜叶菊的五个区域形成了遗传结构的群体。 SR2和SR4由植物在比SR3和SR5群体的植物中更均匀的DNA水平均匀。在SR2和SR4区域中选择的主要和均相基因型可能对追踪策略来获得甜叶菊植物的策略,通过未来育种计划中的造影人员之间的杂交之间的交叉来获得所需的农艺特征。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号