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Genetic Positioning of Centromeres Using Half-Tetrad Analysis in a 4x–2x Cross Population of Potato

机译:使用四分体分析在马铃薯4x–2x交叉种群中着丝粒的遗传定位

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摘要

From biological and genetic standpoints, centromeres play an important role in the delivery of the chromosome complement to the daughter cells at cell division. The positions of the centromeres of potato were determined by half-tetrad analysis in a 4x–2x population where the male parent produced 2n pollen by first-division restitution (FDR). The genetic linkage groups and locations of 95 male parent-derived amplified fragment length polymorphism markers could be determined by comparing their position on a 2x–2x highly saturated linkage map of potato. Ten centromere positions were identified by 100% heterozygosity transmitted from the 2n heterozygous gametes of the paternal parent into the tetraploid offspring. The position of these centromeric marker loci was in accordance with those predicted by the saturated 2x–2x map using the level of marker clustering as a criterion. Two remaining centromere positions could be determined by extrapolation. The frequent observation of transmission of 100% heterozygosity proves that the meiotic restitution mechanism is exclusively based on FDR. Additional investigations on the position of recombination events of three chromosomes with sufficient numbers of markers showed that only one crossover occurred per chromosome arm, proving strong interference of recombination between centromere and telomere.
机译:从生物学和遗传学的观点来看,着丝粒在细胞分裂时将染色体补体传递到子细胞中起重要作用。马铃薯着丝粒的位置是通过在4x–2x人口中进行半四分位分析来确定的,其中雄性亲本通过第一分区恢复(FDR)产生了2n个花粉。通过比较马铃薯在2x–2x高度饱和连锁图上的位置,可以确定95个雄性亲本衍生的扩增片段长度多态性标记的遗传连锁组和位置。从父本的2n个杂合子配子传递到四倍体后代中的100%杂合性确定了10个着丝粒位置。这些着丝粒标记位点的位置与以标记聚类水平为标准的饱和2x–2x图谱预测的位置一致。可以通过外推确定剩下的两个着丝粒位置。经常观察到100%杂合子的传递,证明减数分裂恢复机制完全基于FDR。对具有足够数量标记的三个染色体的重组事件的位置进行的其他研究表明,每个染色体臂仅发生一次交叉,证明着丝粒和端粒之间的重组受到强烈干扰。

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