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首页> 外文期刊>Plant Breeding >Genomic structure and fertility in advanced breeding populations derived from an allotetraploid Festuca pratensis x Lolium perenne cross
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Genomic structure and fertility in advanced breeding populations derived from an allotetraploid Festuca pratensis x Lolium perenne cross

机译:异源四倍体Festuca pratensis x黑麦草杂交的高级育种种群的基因组结构和育性

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摘要

The development of grass cultivars derived from Festulolium hybrids is mostly limited because of their genetic instability and low fertility. The objective of this was to assess the genomic structure and fertility in two advanced breeding populations derived from an interspecific hybrid between Festuca pratensis Huds. (2n = 4x = 28) and Lolium perenne L. (2n = 4x = 28). Examination based on genomic in situ hybridization analyses of randomly chosen plants in the F-7 and F-8 generations, as well as those from earlier generations, indicated progressive changes in genome balance towards that of Lolium. The 'dominance' of Lolium chromatin over Festuca likely resulted from extensive recombination between chromosomes of the parental genomes, together with substitutions of whole Festuca chromosomes by whole Lolium chromosomes. The number of recombinant chromosomes and recombination breakpoints per genotype increased in successive generations, but their number was higher for Festuca than for Lolium. Because the mean seed set was only 38.2% in the F-8 generation, it was concluded that the F. pratensis x L. perenne amphiploids cannot be included successfully in a Festulolium breeding programme.
机译:由于Festulolium杂种的遗传不稳定性和低育性,它们的发展大多受到限制。这样做的目的是评估两个最先进的繁殖种群的基因组结构和育性,该种群是由Festuca pratensis Huds之间的种间杂种衍生而来。 (2n = 4x = 28)和黑麦草(2n = 4x = 28)。基于对F-7和F-8代以及早期代中随机选择的植物进行基因组原位杂交分析的检查表明,基因组平衡向黑麦草逐渐变化。黑麦草染色质在Festuca上的“优势”可能是由于亲本基因组染色体之间的广泛重组,以及整个Festuca染色体被整个黑麦草染色体取代所致。每个基因型的重组染色体和重组断裂点的数量在连续的世代中增加,但Festuca的数量和黑麦草的数量更高。因为在F-8代中平均种子集只有38.2%,所以可以得出结论:F. pratensis x L. perenne二倍体类不能成功地包括在Festulolium育种程序中。

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