Key Laboratory of Molecular Epigenetics of the Ministry of Education (MOE), Northeast Normal University, Changchun, 130024, China.
Department of Ecology, Evolution & Organismal Biology, Iowa State University, Ames, IA, 50011, USA.
New Phytol. 2023 Jul;239(2):606-623. doi: 10.1111/nph.18953. Epub 2023 May 10.
Allopolyploidization may initiate rapid evolution due to heritable karyotypic changes. The types and extents of these changes, the underlying causes, and their effects on phenotype remain to be fully understood. Here, we designed experimental populations suitable to address these issues using a synthetic allotetraploid wheat. We show that extensive variation in both chromosome number (NCV) and structure (SCV) accumulated in a selfed population of a synthetic allotetraploid wheat (genome S S DD). The combination of NCVs and SCVs generated massive organismal karyotypic heterogeneity. NCVs and SCVs were intrinsically correlated and highly variable across the seven sets of homoeologous chromosomes. Both NCVs and SCVs stemmed from meiotic pairing irregularity (presumably homoeologous pairing) but were also constrained by homoeologous chromosome compensation. We further show that homoeologous meiotic pairing was positively correlated with sequence synteny at the subtelomeric regions of both chromosome arms, but not with genic nucleotide similarity per se. Both NCVs and SCVs impacted phenotypic traits but only NCVs caused significant reduction in reproductive fitness. Our results implicate factors influencing meiotic homoeologous chromosome pairing and reveal the type and extent of karyotypic variation and its immediate phenotypic manifestation in synthetic allotetraploid wheat. This has relevance for our understanding of allopolyploid evolution.
异源多倍化可能会由于可遗传的染色体组型变化而引发快速进化。这些变化的类型和程度、其潜在原因及其对表型的影响仍有待充分理解。在这里,我们使用合成的异源四倍体小麦设计了适合解决这些问题的实验群体。我们表明,在一个合成的异源四倍体小麦(基因组 S S DD)的自交群体中,大量的染色体数目(NCV)和结构(SCV)变异积累。NCV 和 SCV 的组合产生了大量的生物体染色体组型异质性。NCV 和 SCV 在七个同源染色体组之间具有内在相关性和高度可变性。NCV 和 SCV 都源于减数分裂配对不规则(推测同源配对),但也受到同源染色体补偿的限制。我们进一步表明,同源减数分裂配对与染色体臂的端粒区域的序列同线性呈正相关,但与基因核苷酸相似性本身无关。NCV 和 SCV 都影响表型特征,但只有 NCV 导致生殖适应性显著降低。我们的结果暗示了影响减数分裂同源染色体配对的因素,并揭示了合成异源四倍体小麦中染色体组型变异的类型和程度及其直接表型表现。这对于我们理解异源多倍体进化具有重要意义。