首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Doubled haploid technology for line development in maize: technical advances and prospects
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Doubled haploid technology for line development in maize: technical advances and prospects

机译:玉米线路开发的双倍单倍体技术:技术进步和前景

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Doubled haploid (DH) technology has become an integral part of many commercial maize breeding programs as DH lines offer several economic, logistic and genetic benefits over conventional inbred lines. Further, new advances in DH technology continue to improve the efficiency of DH line development and fuel its increased adoption in breeding programs worldwide. The established method for maize DH production covered in this review involves in vivo induction of maternal haploids by a male haploid inducer genotype, identification of haploids from diploids at the seed or seedling stage, chromosome doubling of haploid (D-0) seedlings and finally, selfing of fertile D-0 plants. Development of haploid inducers with high haploid induction rates and adaptation to different target environments have facilitated increased adoption of DH technology in the tropics. New marker systems for haploid identification, such as the red root marker and high oil marker, are being increasingly integrated into new haploid inducers and have the potential to make DH technology accessible in germplasm such as some Flint, landrace, or tropical material, where the standard R1-nj marker is inhibited. Automation holds great promise to further reduce the cost and time in haploid identification. Increasing success rates in chromosome doubling protocols and/or reducing environmental and human toxicity of chromosome doubling protocols, including research on genetic improvement in spontaneous chromosome doubling, have the potential to greatly reduce the production costs per DH line.
机译:随着DH线提供多种经济,后勤和遗传效益,双倍单倍体(DH)技术已成为许多商业玉米育种计划的一个组成部分。此外,DH技术的新进步继续提高DH线路开发的效率,促进全球育种计划的采用。本综述中涵盖的玉米DH生产方法涉及通过雄性单倍体诱导型基因型的母体单倍体诱导,鉴定种子或幼苗阶段的二倍体,单倍体(D-0)幼苗的染色体加倍,最后,肥沃的D-0植物自行。具有高单倍体诱导速率的单倍体诱导剂的开发和对不同目标环境的适应性促进了DH技术在热带地区的采用增加。用于单倍体鉴定的新标记系统,例如红根标记和高油标记,越来越纳入新的单倍体诱导症中,并且具有使DH技术在种质中可获得的DH技术,例如一些燧石,兰德或热带材料,其中标准R1-NJ标记被抑制。自动化承担了很大的承诺,可以进一步降低单倍体识别中的成本和时间。增加染色体加倍协议的成功率和/或减少染色体倍增方案的环境和人类毒性,包括对自发染色体倍增的遗传改善的研究,有可能大大降低每DH线的生产成本。

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