Key Laboratory for Bio-resource and Eco-environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, PR China.
CAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Mengla, PR China.
Mol Ecol. 2018 Dec;27(23):4875-4887. doi: 10.1111/mec.14909. Epub 2018 Nov 22.
An increasing number of species are thought to have originated by homoploid hybrid speciation (HHS), but in only a handful of cases are details of the process known. A previous study indicated that Picea purpurea, a conifer in the Qinghai-Tibet Plateau (QTP), originated through HHS from P. likiangensis and P. wilsonii. To investigate this origin in more detail, we analysed transcriptome data for 114 individuals collected from 34 populations of the three Picea species from their core distributions in the QTP. Phylogenetic, principal component and admixture analyses of nuclear SNPs showed the species to be delimited genetically and that P. purpurea was admixed with approximately 60% of its ancestry derived from P. wilsonii and 40% from P. likiangensis. Coalescent simulations revealed the best-fitting model of origin involved formation of an intermediate hybrid lineage between P. likiangensis and P. wilsonii approximately 6 million years ago (mya), which backcrossed to P. wilsonii to form P. purpurea approximately one mya. The intermediate hybrid lineage no longer exists and is referred to as a "ghost" lineage. Our study emphasizes the power of population genomic analysis combined with coalescent analysis for reconstructing the stages involved in the origin of a homoploid hybrid species over an extended period. In contrast to other studies, we show that these stages can in some instances span a relatively long period of evolutionary time.
越来越多的物种被认为是通过同源多倍体杂种形成(HHS)而起源的,但在极少数情况下,人们才了解到这一过程的细节。先前的一项研究表明,青藏高原的云杉属植物紫果云杉是通过 HHS 从丽江云杉和川西云杉起源的。为了更详细地研究这一起源,我们分析了来自青藏高原核心分布区的 34 个种群的 114 个个体的转录组数据。核 SNP 的系统发育、主成分和混合分析表明,这些物种在遗传上是有界限的,并且紫果云杉与大约 60%的祖先来自于华西云杉,40%来自于丽江云杉。合并模拟表明,最适合的起源模型涉及大约 600 万年前在丽江云杉和川西云杉之间形成一个中间杂种谱系,然后与川西云杉回交形成紫果云杉,大约在 100 万年前。中间杂种谱系已不复存在,被称为“幽灵”谱系。我们的研究强调了群体基因组分析与合并分析相结合,用于重建同源多倍体杂种物种起源过程中涉及的各个阶段的力量,这个过程跨越了很长的时间。与其他研究相比,我们表明这些阶段在某些情况下可能跨越了相对较长的进化时间。