State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Weigang Street No.1, Nanjing, 210095, China.
Institue of Horticulture, Zhejiang Academy of Agriculture Sciences, Hangzhou, 310021, China.
BMC Plant Biol. 2019 Nov 6;19(1):471. doi: 10.1186/s12870-019-2060-z.
Meiosis of newly formed allopolyploids frequently encounter perturbations induced by the merging of divergent and hybridizable genomes. However, to date, the meiotic properties of allopolyploids with dysploid parental karyotypes have not been studied in detail. The allotetraploid Cucumis ×hytivus (HHCC, 2n = 38) was obtained from interspecific hybridization between C. sativus (CC, 2n = 14) and C. hystrix (HH, 2n = 24) followed by chromosome doubling. The results of this study thus offer an excellent opportunity to explore the meiotic properties of allopolyploids with dysploid parental karyotypes.
In this report, we describe the meiotic properties of five chromosomes (C5, C7, H1, H9 and H10) and two genomes in interspecific hybrids and C. ×hytivus (the 4th and 14th inbred family) through oligo-painting and genomic in situ hybridization (GISH). We show that 1) only two translocations carrying C5-oligo signals were detected on the chromosomes C2 and C4 of one 14th individual by the karyotyping of eight 4th and 36 14th plants based on C5- and C7-oligo painting, and possible cytological evidence was observed in meiosis of the 4th generation; 2) individual chromosome have biases for homoeologous pairing and univalent formation in F hybrids and allotetraploids; 3) extensive H-chromosome autosyndetic pairings (e.g., H-H, 25.5% PMCs) were observed in interspecific F hybrid, whereas no C-chromosome autosyndetic pairings were observed (e.g. C-C); 4) the meiotic properties of two subgenomes have significant biases in allotetraploids: H-subgenome exhibits higher univalent and chromosome lagging frequencies than C-subgenome; and 5) increased meiotic stability in the S generation compared with the S generation, including synchronous meiosis behavior, reduced incidents of univalent and chromosome lagging.
These results suggest that the meiotic behavior of two subgenomes has dramatic biases in response to interspecific hybridization and allopolyploidization, and the meiotic behavior harmony of subgenomes is a key subject of meiosis evolution in C. ×hytivus. This study helps to elucidate the meiotic properties and evolution of nascent allopolyploids with the dysploid parental karyotypes.
新形成的异源多倍体的减数分裂经常受到来自于分歧和可杂交基因组融合的干扰。然而,到目前为止,还没有详细研究过双亲染色体组型为非整倍体的异源多倍体的减数分裂特性。异源四倍体 Cucumis×hytivus(HHCC,2n=38)是通过种间杂交 C.sativus(CC,2n=14)和 C.hystrix(HH,2n=24)后加倍染色体获得的。本研究的结果为研究非整倍体双亲染色体组型的异源多倍体的减数分裂特性提供了极好的机会。
在本报告中,我们通过寡核苷酸原位杂交(oligo-painting 和 genomic in situ hybridization,GISH)描述了种间杂种和 Cucumis×hytivus(第 4 代和第 14 代自交系)中 5 条染色体(C5、C7、H1、H9 和 H10)和 2 个基因组的减数分裂特性。结果表明:1)通过基于 C5 和 C7 寡核苷酸的 8 个第 4 代和 36 个第 14 代植物的核型分析,仅在一个第 14 个体的染色体 C2 和 C4 上检测到携带 C5-寡核苷酸信号的两个易位;2)在 F1 杂种和异源四倍体中,个体染色体存在着同系配对和单价体形成的偏性;3)在种间 F1 杂种中观察到广泛的 H 染色体自体联会配对(如 H-H,25.5%PMCs),而没有观察到 C 染色体自体联会配对(如 C-C);4)在异源四倍体中,两个亚基因组的减数分裂特性存在显著的偏性:H 亚基因组表现出比 C 亚基因组更高的单价体和染色体滞后频率;5)与 S1 代相比,S2 代的减数分裂稳定性增加,包括同步减数分裂行为、单价体和染色体滞后发生率降低。
这些结果表明,两个亚基因组的减数分裂行为对种间杂交和异源多倍体化有明显的偏性,亚基因组的减数分裂行为协调性是 Cucumis×hytivus 减数分裂进化的一个关键课题。本研究有助于阐明具有非整倍体双亲染色体组型的新生异源多倍体的减数分裂特性和进化。