首页> 外文期刊>Plant Biotechnology Journal >Integration of BpMADS4 on various linkage groups improves the utilization of the rapid cycle breeding system in apple
【24h】

Integration of BpMADS4 on various linkage groups improves the utilization of the rapid cycle breeding system in apple

机译:BPMADS4对各种联动组的整合可提高苹果中快速循环育种系统的利用率

获取原文
           

摘要

Summary Rapid cycle breeding in apple is a new approach for the rapid introgression of agronomically relevant traits (e.g. disease resistances) from wild apple species into domestic apple cultivars ( Malus ?×? domestica Borkh.). This technique drastically shortens the long-lasting juvenile phase of apple. The utilization of early-flowering apple lines overexpressing the BpMADS4 gene of the European silver birch ( Betula pendula Roth.) in hybridization resulted in one breeding cycle per year. Aiming for the selection of non-transgenic null segregants at the end of the breeding process, the flower-inducing transgene and the gene of interest (e.g. resistance gene) that will be introgressed by hybridization need to be located on different chromosomes. To improve the flexibility of the existing approach in apple, this study was focused on the development and characterization of eleven additional BpMADS4 overexpressing lines of four different apple cultivars. In nine lines, the flowering gene was mapped to different linkage groups. The differences in introgressed T-DNA sequences and plant genome deletions post-transformation highlighted the unique molecular character of each line. However, transgenic lines demonstrated no significant differences in flower organ development and pollen functionality compared with non-transgenic plants. Hybridization studies using pollen from the fire blight-resistant wild species accession Malus fusca MAL0045 and the apple scab-resistant cultivar ‘Regia’ indicated that BpMADS4 introgression had no significant effect on the breeding value of each transgenic line.
机译:发明内容苹果中的快速循环繁殖是一种新的遍及从野生苹果种类到国内苹果品种的农艺相关性状(例如疾病抗性)的快速突出(Malus?×?Domestica Borkh。)。这种技术急剧缩短了苹果的长期少年阶段。利用早表达欧洲银桦树(Betula Pendula Roth的BPMADS4基因的早期开花苹果系。杂交中的繁殖循环导致了一种育种循环。旨在在育种过程结束时选择非转基因零分离,花诱导的转基因和感兴趣的基因(例如,抗性基因),其杂交的迟缓需要位于不同的染色体上。为了提高苹果中现有方法的灵活性,本研究重点是11种不同苹果品种的十一额外BPMADS4过表达线的开发和表征。在九条线中,将开花基因映射到不同的连杆基团。转型后T-DNA序列和植物基因组缺失的差异突出了每条线的独特分子特征。然而,与非转基因植物相比,转基因素显示出花器官发育和花粉功能的显着差异。杂交研究采用火焰抗性抗野生物种的花粉抗性野生物种,苹果抗腐败品种“regia”表明,BPMADS4迟发对每种转基因线的繁殖价没有显着影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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