Key Laboratory of Herbage and Endemic Crop Biotechnology, Ministry of Education, College of Life Science, Inner Mongolia University, Hohhot, Inner Mongolia 010021, PR China.
Division of Biological Sciences, University of Missouri, Columbia, MO 65211, USA.
G3 (Bethesda). 2021 Feb 9;11(2). doi: 10.1093/g3journal/jkaa011.
Homoeologous recombination, aneuploidy, and other genetic changes are common in resynthesized allopolyploid Brassica napus. In contrast, the chromosomes of cultivars have long been considered to be meiotically stable. To gain a better understanding of the underlying mechanisms leading to stabilization in the allopolyploid, the behavior of chromosomes during meiosis can be compared by unambiguous chromosome identification between resynthesized and natural B. napus. Compared with natural B. napus, resynthesized lines show high rates of nonhomologous centromere association, homoeologous recombination leading to translocation, homoeologous chromosome replacement, and association and breakage of 45S rDNA loci. In both natural and resynthesized B. napus, we observed low rates of univalents, A-C bivalents, and early sister chromatid separations. Reciprocal homoeologous chromosome exchanges and double reductions were photographed for the first time in meiotic telophase I. Meiotic errors were non-uniformly distributed across the genome in resynthesized B. napus, and in particular homoeologs sharing synteny along their entire length exhibited multivalents at diakinesis and polysomic inheritance at telophase I. Natural B. napus appeared to resolve meiotic errors mainly by suppressing homoeologous pairing, resolving nonhomologous centromere associations and 45S rDNA associations before diakinesis, and reducing homoeologous cross-overs.
同源重组、非整倍体和其他遗传变化在合成的异源六倍体油菜中很常见。相比之下,品种的染色体长期以来被认为是减数分裂稳定的。为了更好地理解导致异源多倍体稳定的潜在机制,可以通过明确识别合成和天然油菜中的染色体,来比较减数分裂过程中染色体的行为。与天然油菜相比,合成系表现出较高的非同源着丝粒联会、导致易位的同源重组、同源染色体替换、45S rDNA 位点的联会和断裂。在天然和合成油菜中,我们观察到低频率的单价体、A-C 二价体和早期姐妹染色单体分离。在减数分裂末期 I 中,首次拍摄到了同源染色体的相互交换和减数分裂后期 I 的双还原。在合成油菜中,减数分裂错误在基因组中不均匀分布,特别是在整个长度上具有同线性的同源基因,在减数分裂前期 I 中表现出多价体和多倍体遗传。天然油菜似乎主要通过抑制同源配对、在减数分裂前期 I 之前解决非同源着丝粒和 45S rDNA 的联合,以及减少同源交叉来解决减数分裂错误。