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三个杨属物种间的基因组分歧和基因渗入。

Genomic divergence and introgression among three Populus species.

机构信息

State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems, College of Ecology, Lanzhou University, Lanzhou 730000, China.

Internet Medical and System Applications of National Engineering Laboratory, Zhengzhou University First Affiliated Hospital, Zhengzhou 450000, China.

出版信息

Mol Phylogenet Evol. 2023 Mar;180:107686. doi: 10.1016/j.ympev.2022.107686. Epub 2022 Dec 29.

Abstract

Genomic divergence with gene flow is very common in both plants and animals. However, divergence and gene flow are two counteracting factors during speciation. Identifying the types of genes that are likely to be introgressed and what genetic factors restrict further effective reproduction of interspecific hybrids is of great interest to biologists. We aimed to address these issues using three related tree species, Populus alba (Pa), P. tremula (Pt), and P. tremuloides (Ps), and the interspecific hybrid of the former two species, P. × canescens (Pc). We collected 105 genomes for these four poplar lineages, including 28 Pa, 38Pt, 21 Ps, and 18 Pc individuals, to reconstruct their evolutionary histories. Our coalescence-based simulations indicated that Pa diverged earliest from Ps and Pt, and asymmetrical gene flow existed between any two lineages, with especially large ancient gene flow occurring between Pa and Pt. The genomic landscape of divergence between pairs of the three species are highly heterogeneous, which may have arisen through both divergent sorting of ancient polymorphisms and ongoing gene flow. We found that extant regions of the genome with introgressed ancestry reduced genetic divergence but elevated recombination rates and accounted for 5.76 % of the total genome. Introgressed genes were functionally associated with stress resistance, including innate immune response, anti-adversity response, and programmed cell death. However, candidate genes underlying postmating barriers of Pc were homozygous and resistant to introgression due to the incompatibility of alleles between loci after hybridization and were associated with endosperm and gamete formation and disease resistance. Our study revealed genomic dynamics during speciation with gene flow and identified regions of the genome that were likely introgressed and adaptive as well as candidate loci responsible for hybrid incompatibility that resulted in the formation of postmating barriers after hybridization.

摘要

基因流作用下的基因组分化在植物和动物中都很常见。然而,分化和基因流是物种形成过程中的两个相互拮抗的因素。确定哪些类型的基因可能会发生基因渗入,以及哪些遗传因素限制了种间杂种进一步有效的繁殖,这对生物学家来说非常重要。我们使用三个亲缘关系密切的杨树物种白杨(Pa)、欧洲山杨(Pt)和颤杨(Ps)以及前两个物种的种间杂种银白杨(Pc)来解决这些问题。我们收集了这四个杨树谱系的 105 个基因组,包括 28 个 Pa、38 个 Pt、21 个 Ps 和 18 个 Pc 个体,以重建它们的进化历史。我们基于合并的模拟表明,Pa 最早从 Ps 和 Pt 分化出来,并且任何两个谱系之间存在不对称的基因流,尤其是 Pa 和 Pt 之间存在大量的古老基因流。这三个物种之间的基因组分化景观高度异质,这可能是由于古老多态性的分歧和持续的基因流造成的。我们发现,具有渗入祖先的基因组区域减少了遗传分化,但提高了重组率,占总基因组的 5.76%。渗入的基因与抗逆性有关,包括先天免疫反应、抗逆境反应和程序性细胞死亡。然而,Pc 种间杂种交配后障碍的候选基因是纯合的,并且由于杂交后基因座之间等位基因的不兼容性而不受基因渗入的影响,这些基因与胚乳和配子形成以及抗病性有关。我们的研究揭示了有基因流作用下的物种形成过程中的基因组动态,并确定了可能发生基因渗入和适应性的基因组区域以及导致杂交后交配后障碍形成的候选基因座。

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