Creation of doubled haploid lines of maize <i>Zea mays</i> L. by resynthesis from a tetraploid population

A. V. Ulyanov, D. S. Kutsev, V. V. Vasipov, Kh. R. Mamadova, M. Yu. Khakulova, S. F. Israfilova, M. R. Firsova, A. V. Karlov, E. B. Khatefov
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Abstract

The search for new, effective methods for broadening the genetic polymorphism of the original breeding material remains one of important problems of hybrid maize breeding. Globally, breeding of commercial maize varieties and hybrids is carried out using diploid genotypes, whereas tetraploid sources of initial material and wild relatives of maize are poorly involved in the breeding process. The direct heteroploid crosses between diploid and tetraploid genotypes lead to the formation of weakly fertile or completely sterile triploid hybrids, which are cytologically unstable in subsequent generations. Tetraploid maize (2n=40), as well as some wild relatives with tetraploid genome, such as Zea perennis Hitchk. (2n=40) and Tripsacum dactiloides (L.) L. (2n=72), are attractive to breeders as sources for improving economically valuable traits. The attractiveness of resynthesized diploid lines is explained by the fact that unequal crossing over between homologous chromosomes forming polyvalent associations of chromosomes, more chromosomal rearrangements occur in tetraploids than in diploid genotypes, the chromosomes of which form bivalents. Synthetic tetraploid populations of maize and its tetraploid wild relatives have great potential of variability for improving diploid maize. The authors proposed a direct method for the resynthesis of doubled haploid lines using haploid induction and an indirect method for obtaining diploid lines by heteroploid crossing and subsequent segregation of a triploid hybrid in the progeny. The method of resynthesizing the tetraploid maize genome to diploid serves as an ideal model for studying the processes of crossing over in meiosis between multivalent associations of homologous chromosomes; it is promising for obtaining diploid lines with an increased frequency of recombination between the homologous chromosomes of different genomes, combined into a common one, and can serve as a source for obtaining aneuploid series.
玉米双单倍体系<i>Zea may </i>L.由四倍体群体重新合成
寻找新的、有效的方法来扩大原始育种材料的遗传多态性仍然是杂交玉米育种的重要问题之一。在全球范围内,商业玉米品种和杂交品种的育种是利用二倍体基因型进行的,而玉米的四倍体原始材料来源和野生近缘种在育种过程中很少参与。二倍体和四倍体基因型之间的直接异倍体杂交形成弱育性或完全不育的三倍体杂种,在后代中细胞学上不稳定。四倍体玉米(2n=40)以及一些具有四倍体基因组的野生近缘种,如玉米(Zea perennis Hitchk)。(2n=40)和马尾草(L.)L. (2n=72),对育种者来说是有吸引力的,可以作为提高经济价值性状的来源。再合成二倍体系之所以具有吸引力,是因为同源染色体之间的不平等杂交形成了染色体的多价组合,四倍体的染色体重排比二倍体基因型的染色体重排多,二倍体的染色体形成了二价体。玉米四倍体合成群体及其野生近缘种对二倍体玉米的改良具有很大的变异性潜力。作者提出了一种利用单倍体诱导直接合成双单倍体系的方法,以及一种通过异倍体杂交并在后代中分离三倍体杂种获得二倍体系的间接方法。将玉米四倍体基因组重新合成为二倍体的方法是研究同源染色体多价组合减数分裂杂交过程的理想模型;它有望获得不同基因组的同源染色体之间重组频率增加的二倍体系,并组合成一个共同的染色体,并可作为获得非整倍体系列的来源。
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