Unveiling the Genome-Wide Consequences of Range Expansion and Mating System Transitions in Primula vulgaris.

IF 3.2 2区 生物学 Q2 EVOLUTIONARY BIOLOGY Genome Biology and Evolution Pub Date : 2024-10-09 DOI:10.1093/gbe/evae208
Emiliano Mora-Carrera, Rebecca L Stubbs, Giacomo Potente, Narjes Yousefi, Simon Aeschbacher, Barbara Keller, Rimjhim Roy Choudhury, Ferhat Celep, Judita Kochjarová, Jurriaan M de Vos, Peter Szövényi, Elena Conti
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Abstract

Genetic diversity is heterogeneously distributed among populations of the same species, due to the joint effects of multiple demographic processes, including range contractions and expansions, and mating systems shifts. Here, we ask how both processes shape genomic diversity in space and time in the classical Primula vulgaris model. This perennial herb originated in the Caucasus region and was hypothesized to have expanded westward following glacial retreat in the Quaternary. Moreover, this species is a long-standing model for mating system transitions, exemplified by shifts from heterostyly to homostyly. Leveraging a high-quality reference genome of the closely related Primula veris and whole-genome resequencing data from both heterostylous and homostylous individuals from populations encompassing a wide distribution of P. vulgaris, we reconstructed the demographic history of P. vulgaris. Results are compatible with the previously proposed hypothesis of range expansion from the Caucasus region approximately 79,000 years ago and suggest later shifts to homostyly following rather than preceding postglacial colonization of England. Furthermore, in accordance with population genetic theoretical predictions, both processes are associated with reduced genetic diversity, increased linkage disequilibrium, and reduced efficacy of purifying selection. A novel result concerns the contrasting effects of range expansion versus shift to homostyly on transposable elements, for the former, process is associated with changes in transposable element genomic content, while the latter is not. Jointly, our results elucidate how the interactions among range expansion, transitions to selfing, and Quaternary climatic oscillations shape plant evolution.

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揭示报春花分布范围扩大和交配系统转变的全基因组后果。
由于多种人口统计过程的共同作用,包括种群范围的收缩和扩大以及交配系统的转变,遗传多样性在同一物种的不同种群之间呈现异质性分布。在这里,我们以经典的报春花(Primula vulgaris)为例,探讨这两种过程是如何在空间和时间上塑造基因组多样性的。这种多年生草本植物起源于高加索地区,据推测在第四纪冰川退缩后向西扩展。此外,该物种长期以来一直是交配系统转变的典范,例如从异型到同型的转变。我们利用近缘植物报春花(Primula veris)的高质量参考基因组,以及来自广泛分布的报春花种群中异型和同型个体的全基因组重测序数据,重建了报春花的人口历史。研究结果与之前提出的大约 7.9 万年前从高加索地区向外扩张的假说相吻合,并表明在冰川期后英国殖民化之前而不是之后,同型个体的出现时间较晚。此外,根据种群遗传学理论预测,这两个过程都与遗传多样性减少、连锁不平衡增加和净化选择效果降低有关。一个新的结果涉及到范围扩大与同源转变对可表达元素(TE)的不同影响,因为前者与可表达元素基因组含量的变化有关,而后者则与之无关。我们的研究结果共同阐明了范围扩展、向自交的转变以及第四纪气候振荡之间的相互作用是如何影响植物进化的。
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来源期刊
Genome Biology and Evolution
Genome Biology and Evolution EVOLUTIONARY BIOLOGY-GENETICS & HEREDITY
CiteScore
5.80
自引率
6.10%
发文量
169
审稿时长
1 months
期刊介绍: About the journal Genome Biology and Evolution (GBE) publishes leading original research at the interface between evolutionary biology and genomics. Papers considered for publication report novel evolutionary findings that concern natural genome diversity, population genomics, the structure, function, organisation and expression of genomes, comparative genomics, proteomics, and environmental genomic interactions. Major evolutionary insights from the fields of computational biology, structural biology, developmental biology, and cell biology are also considered, as are theoretical advances in the field of genome evolution. GBE’s scope embraces genome-wide evolutionary investigations at all taxonomic levels and for all forms of life — within populations or across domains. Its aims are to further the understanding of genomes in their evolutionary context and further the understanding of evolution from a genome-wide perspective.
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