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Stability of Genome Composition and Recombination between Homoeologous Chromosomes in Festulolium (Festuca x Lolium) Cultivars

机译:基因组成分的稳定性与Festulolium中同源染色体之间的稳定性(Festuca X Lolium)品种

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Festulolium are hybrids between fescue (Festuca) and ryegrass (Lolium) species and combine high seed yield of ryegrasses with abiotic stress tolerance of fescues. Chromosomes of Festuca and Lolium present in Festulolium freely pair and recombine, which results in highly variable progeny where every single plant has a unique chromosome constitution. Thus, the stability of the genomic composition in Festulolium cultivars is an important issue. In this work, we used in situ hybridization to examine the genomic composition (understood as the proportion of parental genomes present) over 3 consecutive generations of propagation via outcrossing (the first one being the generation used for cultivar registration) of 3 Festulolium cultivars. Our analysis revealed that the genome composition largely differs among the plants from individual cultivars but appears to be relatively stable over the generations. A gradual shift in the genome composition towards Lolium observed in the early generations of hybrids appears to reach a plateau where the proportions of parental genomes become stabilized. Nevertheless, the pro-portion remains unbalanced to a certain extent ( always in favor of the Lolium genome) in each cultivar. Our observations indicate a possibility to modulate genomic composition in hybrids by breeders' selection without a compromise on stability. (C) 2017 S. Karger AG, Basel
机译:Festulolium是FESCUE(FESTUCA)和黑麦草(Lolium)物种之间的杂种,并将Ryegrasses的高种子产量与Fescues的非生物胁迫耐受性结合。 Festuca和Lolium染色体存在于Fesurelium的Fesurelium和重组中,这导致高度可变的后代,每个植物都具有独特的染色体构造。因此,Festulium品种中基因组组合物的稳定性是一个重要问题。在这项工作中,我们使用的是通过突出(第一个是用于品种用于品种注册的第一代)的3个连续几代繁殖中存在的基因组组合物(理解为所存在的父母基因组的比例)。我们的分析表明,基因组组成在各个品种的植物中大部分不同,但似乎对世代相对稳定。在早期的多种杂种中观察到的基因组组合物的逐渐转变似乎到达了父母基因组的比例稳定的高原。然而,Pro部分在每种品种中一定程度(总是有利于Lolium Genome)仍然不平衡。我们的观察结果表明通过育种者的选择调节杂种中的基因组组合物而不会妥协。 (c)2017年S. Karger AG,巴塞尔

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