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甘蓝型油菜中一个同源染色体相互易位的检测及效应

Detection and effects of a homeologous reciprocal transposition in Brassica napus.

作者信息

Osborn Thomas C, Butrulle David V, Sharpe Andrew G, Pickering Kathryn J, Parkin Isobel A P, Parker John S, Lydiate Derek J

机构信息

Department of Agronomy, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

Genetics. 2003 Nov;165(3):1569-77. doi: 10.1093/genetics/165.3.1569.

Abstract

A reciprocal chromosomal transposition was identified in several annual oilseed Brassica napus genotypes used as parents in crosses to biennial genotypes for genetic mapping studies. The transposition involved an exchange of interstitial homeologous regions on linkage groups N7 and N16, and its detection was made possible by the use of segregating populations of doubled haploid lines and codominant RFLP markers. RFLP probes detected pairs of homeologous loci on N7 and N16 for which the annual and biennial parents had identical alleles in regions expected to be homeologous. The existence of an interstitial reciprocal transposition was confirmed by cytological analysis of synaptonemal complexes of annual x biennial F1 hybrids. Although it included approximately one-third of the physical length of the N7 and N16 chromosomes, few recombination events within the region were recovered in the progenies of the hybrids. Significantly higher seed yields were associated with the parental configurations of the rearrangement in segregating progenies. These progenies contained complete complements of homeologous chromosomes from the diploid progenitors of B. napus, and thus their higher seed yields provide evidence for the selective advantage of allopolyploidy through the fixation of intergenomic heterozygosity.

摘要

在几个用作与二年生基因型杂交进行遗传图谱研究的亲本的一年生油籽甘蓝型油菜基因型中,鉴定出了一种相互染色体易位。该易位涉及连锁群N7和N16上的居间同源区域的交换,通过使用双单倍体系的分离群体和共显性RFLP标记使得其得以检测。RFLP探针在N7和N16上检测到了同源基因座对,对于这些基因座,一年生和二年生亲本在预期为同源的区域具有相同的等位基因。通过对一年生×二年生F1杂种的联会复合体进行细胞学分析,证实了居间相互易位的存在。尽管它包含了N7和N16染色体大约三分之一的物理长度,但在杂种后代中该区域内很少有重组事件被发现。在分离后代中,显著更高的种子产量与重排的亲本构型相关。这些后代包含来自甘蓝型油菜二倍体祖先的完整同源染色体互补,因此它们更高的种子产量为通过基因组间杂合性的固定而产生的异源多倍体的选择优势提供了证据。

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