Aliyeva Aybeniz J, Farkas András, Aminov Naib Kh, Kruppa Klaudia, Molnár-Láng Márta, Türkösi Edina
Cytogenet Genome Res. 2020;160(1):47-56. doi: 10.1159/000506385. Epub 2020 Mar 14.
The chromosomal constitution of 9 dwarf (D) and 8 semidwarf (SD) lines derived by crossing hexaploid Triticale line NA-75 (AABBRR, 2n = 6x = 42) with Triticumaestivum (AABBDD, 2n = 6x = 42) cv. Chinese Spring was investigated using molecular cytogenetic techniques: fluorescence in situ hybridization and genomic in situ hybridization. A wheat-rye translocation (T4DS.7RL), 8 substitution lines, and a ditelosomic addition line (7RSdt) were identified. In the substitution lines, 1, 2, or 4 pairs of wheat chromosomes, belonging to the A, B, or D genome, were replaced by rye chromosomes. Substitutions between chromosomes belonging to different wheat genomes [5B(5A), 1D(1B)] also occurred. The lines were genetically stable, each carrying 42 chromosomes, except the wheat-rye ditelosomic addition line, which carried 21 pairs of wheat chromosomes and 1 pair of rye telocentric chromosomes (7RS). The chromosome pairing behavior of the lines was studied during metaphase I of meiosis. The chromosome pairing level and the number of ring bivalents were different for each line. Besides rod bivalents, univalent and multivalent associations (tri- and quadrivalents) were also detected. The main goal of the experiment was to develop genetically stable wheat/Triticale recombinant lines carrying chromosomes/chromatin fragments originating from the R genome of Triticale line NA-75. Introgression of rye genes into hexaploid wheat can broaden its genetic diversity, and the newly developed lines can be used in wheat breeding programs.
利用分子细胞遗传学技术(荧光原位杂交和基因组原位杂交),对通过将六倍体小黑麦品系NA - 75(AABBRR,2n = 6x = 42)与普通小麦(AABBDD,2n = 6x = 42)品种中国春杂交获得的9个矮秆(D)和8个半矮秆(SD)品系的染色体组成进行了研究。鉴定出了一个小麦 - 黑麦易位系(T4DS.7RL)、8个代换系和一个双端体附加系(7RSdt)。在代换系中,属于A、B或D基因组的1、2或4对小麦染色体被黑麦染色体所取代。不同小麦基因组的染色体之间(如5B(5A)、1D(1B))也发生了替换。这些品系遗传稳定,每个品系都含有42条染色体,但小麦 - 黑麦双端体附加系除外,它含有21对小麦染色体和1对黑麦端着丝粒染色体(7RS)。在减数分裂中期I研究了这些品系的染色体配对行为。每个品系的染色体配对水平和环状二价体数量各不相同。除了棒状二价体,还检测到了单价体和多价体联会(三价体和四价体)。该实验的主要目的是培育携带源自小黑麦品系NA - 75的R基因组染色体/染色质片段的遗传稳定的小麦/小黑麦重组品系。将黑麦基因渗入六倍体小麦可以拓宽其遗传多样性,新培育的品系可用于小麦育种计划。