Department of Ecology, Evolution and Organismal Biology, Iowa State University, IA, USA.
Mol Biol Evol. 2012 Oct;29(10):3023-36. doi: 10.1093/molbev/mss110. Epub 2012 Apr 3.
During allopolyploid speciation, two divergent nuclear genomes merge, yet only one (usually the maternal) of the two sets of progenitor organellar genomes is maintained. Rubisco (1,5-bisphosphate carboxylase/oxygenase) is composed of nuclear-encoded small subunits (SSUs) and plastome-encoded large subunits (LSUs), providing an ideal system to explore the evolutionary process of cytonuclear accommodation. Here, we take initial steps in this direction, using Gossypium allopolyploids as our model. SSU copies from divergent (5-10 My) progenitor diploids ("A" and "D" genomes) were combined at the time of polyploid formation 1-2 Ma, with the LSU encoded by the maternal A-genome parent. LSU genes from A- and D-genome diploids and AD-genome allopolyploids were sequenced, revealing several nonsynonymous substitutions and suggesting the possibility of differential selection on the nuclear-encoded rbcS partner following allopolyploid formation. Sequence data for the rbcS gene family revealed nonreciprocal homoeologous recombination between A- and D-rbcS homoeologs in all polyploid species but not in a synthetic intergenomic F1 hybrid, demonstrating "gene conversion" during allopolyploid evolution. All progenitor rbcS genes are retained and expressed in the five extant allopolyploid species, but analysis of the leaf transcriptome showed that A-homoeologs are preferentially expressed in both the allopolyploid and hybrid, consistent with the maternal origin of rbcL. Although rbcS genes from both progenitor genomes are expressed, some appear to have experienced mutations that may represent cytonuclear coevolution.
在异源多倍体形成过程中,两个不同的核基因组融合,但只有两套祖细胞器基因组中的一套(通常是母系的)得以保留。Rubisco(1,5-二磷酸核酮糖羧化酶/加氧酶)由核编码的小亚基(SSU)和质体编码的大亚基(LSU)组成,为探索细胞质-核适应的进化过程提供了理想的系统。在这里,我们以棉属异源多倍体为模型,朝着这个方向迈出了第一步。在 1-2 百万年前多倍体形成时,来自不同(5-10 My)祖代二倍体(“A”和“D”基因组)的 SSU 拷贝被整合在一起,LSU 由母系 A 基因组亲本编码。对 A-和 D-基因组二倍体和 AD-基因组异源多倍体的 LSU 基因进行测序,发现了几个非同义突变,并表明多倍体形成后,核编码 rbcS 伴侣可能存在差异选择。rbcS 基因家族的序列数据显示,在所有多倍体物种中,A-和 D-rbcS 同系物之间发生了非相互的同源重组,但在合成的种间杂种中没有发生,这表明在异源多倍体进化过程中发生了“基因转换”。所有的祖代 rbcS 基因在现存的五个异源多倍体物种中都被保留和表达,但对叶片转录组的分析表明,A-同系物在异源多倍体和杂种中都优先表达,这与 rbcL 的母系起源一致。尽管来自两个祖代基因组的 rbcS 基因都被表达,但有些似乎经历了可能代表细胞质-核协同进化的突变。