State Key Laboratory of Plant Breeding and Genetics, Sichuan Agriculture University, Ya'an 625014, Sichuan, China.
J Plant Res. 2012 Mar;125(2):283-90. doi: 10.1007/s10265-011-0432-z. Epub 2011 Jun 4.
Newly synthesized wheat-rye allopolyploids were investigated by genomic in situ hybridization, over the first, second, third and fourth allopolyploid generations. Inter and intra chromosome connections were observed in 12 root-tip cells of CA4.4.7 (S(2) generation), and translocations between wheat and rye chromosomes were also detected in five root-tip cells. In root-tip cells of CA4.4.7.5 and CA4.4.7.2.2 (S(3) and S(4) generation), the chromosome connections occurred again, a dissociative small rye segment was detected in seven cells of CA4.4.7.5. In plants MSV6.1 and MSV6.5 (S(1) generation), almost half of the root-tip cells contained 13 rye chromosomes and the rest held 12 rye chromosomes, and all the cells of the two plants contained 42 wheat chromosomes. Five pairing configurations of rye chromosomes, including 5 II + 3 I, 6 II + 1 I, 6 II, 5 II + 2 I and 4 II + 4 I, were observed in pollen mother cells of the two plants. The two plants' progeny, including S(2), S(3), and S(4) generation plants, contained 42 wheat chromosomes and 12 rye chromosomes. Therefore, the inter chromosome translocation and unequal chromosome division could occur in somatic cells of wide hybrids. The unequal chromosome division in somatic cell could induce chromosome elimination at the early stages of allopolyploidization.
通过基因组原位杂交技术,对第一代、第二代、第三代和第四代小麦-黑麦异源多倍体进行了研究。在 CA4.4.7(S2 代)的 12 个根尖细胞中观察到了染色体间和染色体内的连接,在 5 个根尖细胞中还检测到了小麦和黑麦染色体之间的易位。在 CA4.4.7.5 和 CA4.4.7.2.2(S3 和 S4 代)的根尖细胞中,染色体再次连接,在 7 个 CA4.4.7.5 细胞中检测到了一个分离的小黑麦片段。在 MSV6.1 和 MSV6.5(S1 代)植物中,几乎一半的根尖细胞含有 13 条黑麦染色体,其余的含有 12 条黑麦染色体,这两株植物的所有细胞都含有 42 条小麦染色体。在这两株植物的花粉母细胞中观察到了 5 种黑麦染色体的配对构型,包括 5 II+3 I、6 II+1 I、6 II、5 II+2 I 和 4 II+4 I。这两株植物的后代,包括 S2、S3 和 S4 代植物,都含有 42 条小麦染色体和 12 条黑麦染色体。因此,染色体易位和染色体不均等分裂可能发生在杂种体细胞中。体细胞中的染色体不均等分裂可能导致异源多倍体化早期的染色体消除。