Yang Y F, Furuta Y, Fukatani Y, Islam A K
Faculty of Agriculture, Gifu University, Japan.
Genes Genet Syst. 2000 Oct;75(5):251-8. doi: 10.1266/ggs.75.251.
By using alpha-amylase isozymes as markers for chromosomes of homoeologous groups 6 and 7, we analyzed the segregation of chromosome constitution in the progenies from crosses between double-ditelosomic or ditelosomic lines of hexaploid wheat cultivar 'Chinese Spring' (CS) as the female parent and double-monosomic F1 hybrids of CS x wheat-barley substitution lines for barley chromosomes 6H or 7H. From this analysis we estimated the transmission rate via pollen of barley chromosomes 6H and 7H in the double-monosomics and evaluated the compensating ability between barley and wheat chromosomes in homoeologous groups 6 and 7. The results indicated that both 6H and 7H showed their highest compensating ability for their respective homoeologous wheat chromosomes 6A (37.5% transmission rate) and 7A (39.4%), intermediate for 6D (34.1%) and 7D (29.6%), and lowest for 6B (26.6%) and 7B (22.6%) chromosomes.
通过使用α-淀粉酶同工酶作为6号和7号部分同源群染色体的标记,我们分析了以六倍体小麦品种“中国春”(CS)的双端体或端体缺失系为母本,与CS×小麦-大麦6H或7H染色体代换系的双单体F1杂种杂交后代中染色体组成的分离情况。通过该分析,我们估计了双单体中大麦6H和7H染色体通过花粉的传递率,并评估了6号和7号部分同源群中大麦和小麦染色体之间的补偿能力。结果表明,6H和7H对其各自的部分同源小麦染色体6A(传递率37.5%)和7A(传递率39.4%)的补偿能力最高,对6D(34.1%)和7D(29.6%)的补偿能力中等,对6B(26.6%)和7B(22.6%)染色体的补偿能力最低。