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Comparative mapping in intraspecific populations uncovers a high degree of macrosynteny between A- and B-genome diploid species of peanut

机译:种内种群的比较作图揭示了花生A基因组和B基因组二倍体物种之间的高度统合

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摘要

BackgroundCultivated peanut or groundnut (Arachis hypogaea L.) is an important oilseed crop with an allotetraploid genome (AABB, 2n = 4x = 40). Both the low level of genetic variation within the cultivated gene pool and its polyploid nature limit the utilization of molecular markers to explore genome structure and facilitate genetic improvement. Nevertheless, a wealth of genetic diversity exists in diploid Arachis species (2n = 2x = 20), which represent a valuable gene pool for cultivated peanut improvement. Interspecific populations have been used widely for genetic mapping in diploid species of Arachis. However, an intraspecific mapping strategy was essential to detect chromosomal rearrangements among species that could be obscured by mapping in interspecific populations. To develop intraspecific reference linkage maps and gain insights into karyotypic evolution within the genus, we comparatively mapped the A- and B-genome diploid species using intraspecific F2 populations. Exploring genome organization among diploid peanut species by comparative mapping will enhance our understanding of the cultivated tetraploid peanut genome. Moreover, new sources of molecular markers that are highly transferable between species and developed from expressed genes will be required to construct saturated genetic maps for peanut.
机译:背景栽培的花生或花生(花生)是一种重要的油菜作物,具有异源四倍体基因组(AABB,2n = 4×4 = 40)。培养的基因库中低水平的遗传变异及其多倍体性质都限制了分子标记物用于探索基因组结构和促进遗传改良的利用。尽管如此,二倍体花生属植物中仍存在大量的遗传多样性(2n = 2×2 = 20),这代表了花生栽培改良的有价值的基因库。种间种群已被广泛用于Arachis二倍体物种的遗传作图。但是,种内作图策略对于检测物种间的染色体重排是至关重要的,而种间染色体重排可能被种间种群作图所掩盖。要开发种内参考连锁图谱并获得该属内核型进化的见解,我们使用种内F2种群比较性地绘制了A基因和B基因组二倍体物种。通过比较作图探索二倍体花生种之间的基因组组织将增强我们对栽培的四倍体花生基因组的了解。此外,将需要新的分子标记物来源,以在物种之间高度转移,并从表达的基因发展而来,以构建花生的饱和遗传图谱。

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