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甘蓝型油菜( Brassica napus )RAPD 标记在与芸薹属( Brassica campestris )回交后代中的遗传。

Inheritance of oilseed rape (Brassica napus) RAPD markers in a backcross progeny with Brassica campestris.

机构信息

Plant Genetics Section, Environmental Science and Technology Department, Risø National Laboratory, DK-4000, Roskilde, Denmark.

出版信息

Theor Appl Genet. 1996 Mar;92(3-4):492-7. doi: 10.1007/BF00223698.

Abstract

Different cultivars/transgenic lines of oilseed rape (Brassica napus) were crossed (as females) with different cultivars/populations of Brassica campestris. All cross combinations produced seed, with an average seed set per pollination of 9.8. Backcrossing of selected interspecific hybrids (as females) to B. campestris resulted in a much lower seed set, average 0.7 seed per pollination. In the single backcross progeny where a large enough population (92 plants) was obtained for analysis, 33 B. napus specific RAPD markers were investigated to determine the extent of transfer of oilseed rape genetic material into this population. Markers were transferred to the backcross generation with frequencies ranging from 26% to 91%. Almost all of the markers (30/33) were transferred in a frequency not significantly different from 50%. Analysis of the pairwise segregation of markers revealed that 23 markers could be assigned to six linkage groups, most probably reflecting six B. napus C-chromosomes. The presence of backcross plants with recombinant genotypes suggests that complex genetic processes can take place during interspecific hybridisation and backcrossing in these Brassica species. The implications of our results for the possible choice of integration sites of transgenes in oilseed rape are discussed.

摘要

不同的油菜(甘蓝)品种/转基因系被(作为雌性)与不同的甘蓝品种/群体杂交。所有的杂交组合都产生了种子,每个授粉的平均种子数为 9.8。将选定的种间杂种(作为雌性)回交至甘蓝,导致种子数大大降低,平均每个授粉产生 0.7 个种子。在回交后代中,获得了足够大的群体(92 株)进行分析,研究了 33 个油菜特异性 RAPD 标记,以确定油菜遗传物质向该群体的转移程度。标记以 26%至 91%的频率转移到回交代。几乎所有标记(33 个中的 30 个)的转移频率与 50%没有显著差异。标记的成对分离分析表明,23 个标记可以分配到 6 个连锁群,这很可能反映了油菜的 6 条 C 染色体。存在具有重组基因型的回交植物表明,在这些油菜物种的种间杂交和回交过程中可能发生复杂的遗传过程。我们的结果对油菜中转基因可能的整合位点选择具有重要意义。

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