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培育玉米母本单倍体诱导系。

Breeding Maize Maternal Haploid Inducers.

作者信息

Uliana Trentin Henrique, Frei Ursula K, Lübberstedt Thomas

机构信息

Department of Agronomy, Iowa State University, Ames, IA 50011-1051, USA.

出版信息

Plants (Basel). 2020 May 12;9(5):614. doi: 10.3390/plants9050614.

Abstract

Maize doubled haploid (DH) lines are usually created in vivo, through crosses with maternal haploid inducers. These inducers have the inherent ability of generating seeds with haploid embryos when used to pollinate other genotypes. The resulting haploid plants are treated with a doubling agent and self-pollinated, producing completely homozygous seeds. This rapid method of inbred line production reduces the length of breeding cycles and, consequently, increases genetic gain. Such advantages explain the wide adoption of this technique by large, well-established maize breeding programs. However, a slower rate of adoption was observed in medium to small-scale breeding programs. The high price and/or lack of environmental adaptation of inducers available for licensing, or the poor performance of those free of cost, might explain why smaller operations did not take full advantage of this technique. The lack of adapted inducers is especially felt in tropical countries, where inducer breeding efforts are more recent. Therefore, defining optimal breeding approaches for inducer development could benefit many breeding programs which are in the process of adopting the DH technique. In this manuscript, we review traits important to maize maternal haploid inducers, explain their genetic basis, listing known genes and quantitative trait loci (QTL), and discuss different breeding approaches for inducer development. The performance of haploid inducers has an important impact on the cost of DH line production.

摘要

玉米双单倍体(DH)系通常通过与母本单倍体诱导系杂交在体内产生。这些诱导系在用于给其他基因型授粉时,具有产生带有单倍体胚种子的内在能力。产生的单倍体植株用加倍剂处理并进行自花授粉,从而产生完全纯合的种子。这种快速的自交系生产方法缩短了育种周期,因此增加了遗传增益。这些优势解释了大型成熟玉米育种项目对该技术的广泛采用。然而,在中小型育种项目中,采用率较低。可授权使用的诱导系价格高昂和/或缺乏环境适应性,或者免费诱导系表现不佳,可能解释了为什么较小规模的育种操作没有充分利用这项技术。在热带国家,尤其能感受到缺乏适应性诱导系的问题,因为这些国家的诱导系育种工作开展得较晚。因此,确定诱导系开发的最佳育种方法可能会使许多正在采用DH技术的育种项目受益。在本手稿中,我们综述了对玉米母本单倍体诱导系重要的性状,解释了它们的遗传基础,列出了已知基因和数量性状位点(QTL),并讨论了诱导系开发的不同育种方法。单倍体诱导系的性能对DH系生产的成本有重要影响。

相似文献

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Breeding Maize Maternal Haploid Inducers.培育玉米母本单倍体诱导系。
Plants (Basel). 2020 May 12;9(5):614. doi: 10.3390/plants9050614.
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本文引用的文献

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Genomic prediction of maternal haploid induction rate in maize.玉米母源单倍体诱导率的基因组预测。
Plant Genome. 2020 Mar;13(1):e20014. doi: 10.1002/tpg2.20014. Epub 2020 Mar 19.
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Mutation of ZmDMP enhances haploid induction in maize.ZmDMP 突变增强了玉米的单倍体诱导。
Nat Plants. 2019 Jun;5(6):575-580. doi: 10.1038/s41477-019-0443-7. Epub 2019 Jun 10.

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