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Cytogenetic analysis of F1, F2 and BC1 plants from intergeneric sexual hybridization between Sinapis alba and Brassica oleracea by genomic in situ hybridization.

机译:通过基因组原位杂交从Sinapis alba和芸苔属之间的种间有性杂交对F1,F2和BC1植物进行细胞遗传学分析。

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By intergeneric sexual hybridization between Sinapis alba and Brassica oleracea, F1, F2 and BC1 progeny plants were produced. S. alba plants (genome SS, 2n=24) were pollinated with B. oleracea (genome CC, 2n=18), and the fertile F1 plants were pollinated with B. oleracea to obtain BC1 plants. GISH analysis showed that 10 out of 12 F1 plants had 12 S. alba chromosomes (one full S chromosome set) and nine B. oleracea chromosomes (one C chromosome sets), representing the expected hybrids. However, two F1 plants had 12 S chromosomes and 18 C chromosomes (two C chromosome sets), indicating unexpected hybrids. A maximum of three trivalents between C and S chromosomes were identified at metaphase I of semi-fertile F1 pollen mother cells (PMCs), which indicates homology and chromosome pairing between these two genomes. The C genome had obviously been doubled in two F2 plants from selfed semi-fertile F1 plants. BC1 plants consisted of 18 C chromosomes and different numbers of one, five and six additional S chromosomes, respectively. Monosomic alien addition lines developed in the present study can be used for B. oleracea breeding and Sinapis alba gene mapping..
机译:通过Sinapis alba和芸苔属之间的属间有性杂交,产生了F1,F2和BC1后代植物。将S. alba植物(基因组SS,2n = 24)用油菜双歧杆菌授粉(基因组CC,2n = 18),将能育的F1植物用油菜双孢粉授粉,得到BC1植物。 GISH分析表明,在12种F1植物中,有10种具有12个S. alba染色体(一个完整的S染色体组)和9个B. oleracea染色体(一个C染色体组),代表了预期的杂种。但是,两株F1植物具有12条S染色体和18条C染色体(两个C染色体集),表明存在意想不到的杂种。在半能育F1花粉母细胞(PMC)的中期I,C和S染色体之间最多鉴定出三个三价,这表明这两个基因组之间具有同源性和染色体配对。自交的半能育F1植物的两株F2植物中的C基因组显然增加了一倍。 BC1植物分别由18条C染色体和不同数量的1条,5条和6条其他S染色体组成。在本研究中开发的单体外星人添加系可用于油菜双歧杆菌的育种和白叶芥的基因定位。

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