Genome balance in six successive generations of the allotetraploid Festuca pratensis × Lolium perenne

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作者
Zbigniew Zwierzykowski
Arkadiusz Kosmala
Elżbieta Zwierzykowska
Neil Jones
Wojciech Jokś
Jan Bocianowski
机构
[1] Polish Academy of Sciences,Institute of Plant Genetics
[2] The University of Wales Aberystwyth,Institute of Biological Sciences
[3] Szelejewo Plant Breeding Ltd,Department of Mathematical and Statistical Methods
[4] The University of Agriculture,undefined
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Chromosome Substitution; Recombination Breakpoint; Winter Hardiness; Homoeologous Recombination; Alien Chromatin;
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摘要
In the allotetraploid, Festuca pratensis Huds. (2n = 4x = 28) × Lolium perenne L. (2n = 4x = 28) the balance of chromatin, as determined by GISH, changes over successive generations of open pollination in favour of L. perenne. There is extensive recombination between chromosomes of the two parental genomes, as well as substitution of whole Festuca chromosomes by whole Lolium chromosomes. The total number of Lolium chromosomes increased from a mean 14.36 in the F2 to 16.26 in the F6, and the total number of Festuca chromosomes decreased correspondingly from a mean of 13.57 to a value of 11.56. The number of recombinant chromosomes and recombination breakpoints per genotype also increased from generation to generation, although the respective values of both characters were higher for Festuca (0.86–8.41 and 1.14–15.22) than for Lolium (0.68–4.59 and 0.68–6.0). The proportion of total genome length contributed by the L. perenne chromatin increased from about 50% in F2 to 59.5% in F6. The results are based on the sample of 134 plants studied (26–28 plants per generation), and are discussed in terms of the dominance of Lolium chromosomes over those of Festuca, and possible mechanisms underlying this phenomenon of chromatin substitution.
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页码:539 / 547
页数:8
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