Department of Plant Biology, Cornell University , Ithaca, NY , USA.
Department of Biology, Reed College , Portland, OR , USA.
PeerJ. 2014 May 20;2:e391. doi: 10.7717/peerj.391. eCollection 2014.
Allopolyploidy combines two progenitor genomes in the same nucleus. It is a common speciation process, especially in plants. Deciphering the origins of polyploid species is a complex problem due to, among other things, extinct progenitors, multiple origins, gene flow between different polyploid populations, and loss of parental contributions through gene or chromosome loss. Among the perennial species of Glycine, the plant genus that includes the cultivated soybean (G. max), are eight allopolyploid species, three of which are studied here. Previous crossing studies and molecular systematic results from two nuclear gene sequences led to hypotheses of origin for these species from among extant diploid species. We use several phylogenetic and population genomics approaches to clarify the origins of the genomes of three of these allopolyploid species using single nucleotide polymorphism data and a guided transcriptome assembly. The results support the hypothesis that all three polyploid species are fixed hybrids combining the genomes of the two putative parents hypothesized on the basis of previous work. Based on mapping to the soybean reference genome, there appear to be no large regions for which one homoeologous contribution is missing. Phylogenetic analyses of 27 selected transcripts using a coalescent approach also are consistent with multiple origins for these allopolyploid species, and suggest that origins occurred within the last several hundred thousand years.
异源多倍体将两个祖先基因组组合在同一个细胞核中。它是一种常见的物种形成过程,特别是在植物中。由于灭绝的祖先、多个起源、不同多倍体群体之间的基因流以及通过基因或染色体丢失而丧失亲本贡献等原因,解析多倍体物种的起源是一个复杂的问题。在包括栽培大豆(Glycine max)在内的豆科植物属 Glycine 中,多年生物种有八个异源多倍体物种,其中三个在本文中进行了研究。以前的杂交研究和来自两个核基因序列的分子系统学结果导致了这些物种起源于现存二倍体物种的假说。我们使用几种系统发育和群体基因组学方法,使用单核苷酸多态性数据和引导转录组组装来阐明这三个异源多倍体物种的基因组起源。结果支持以下假说,即这三个多倍体物种都是固定杂种,结合了以前工作基础上假设的两个假定亲本的基因组。基于对大豆参考基因组的映射,似乎没有一个同源贡献缺失的大片区。使用合并分析对 27 个选定转录本的系统发育分析也与这些异源多倍体物种的多起源一致,并表明起源发生在最近几十万年。