Deep Ancestral Introgression Shapes Evolutionary History of Dragonflies and Damselflies.

Deep Ancestral Introgression Shapes Evolutionary History of Dragonflies and Damselflies.
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DOI:
10.1093/sysbio/syab063
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发表时间:
2022-04-19
期刊:
影响因子:
6.5
通讯作者:
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中科院分区:
生物学1区
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渐渗是一种重要的生物学过程,影响动物界至少10%的现存物种。渐渗显着影响推理的系统发育物种的关系,严格的二叉树模型不能充分解释网状网状物种的关系。在这里,我们使用基因组学的方法来了解模式的渗入沿着一个独特的,非模式昆虫系统的进化历史:蜻蜓和豆娘(蜻蜓)。我们表明,基因渗入是一个普遍的进化力量在蜻蜓目的各个分类水平。特别是,我们发现,形态上的“中间”物种的异翅目(蜻蜓目内的三个主要的亚目之一,除了Zygoptera和Anisoptera),保留了其他两个亚目的表型特征,经历了高水平的基因渗入可能来自鳞翅目基因组。此外,我们还发现了多个超家族间祖先基因渗入的证据。[Gene流动;蜻蜓目;昆虫基因组学;网状进化。]
Introgression is an important biological process affecting at least 10% of the extant species in the animal kingdom. Introgression significantly impacts inference of phylogenetic species relationships where a strictly binary tree model cannot adequately explain reticulate net-like species relationships. Here, we use phylogenomic approaches to understand patterns of introgression along the evolutionary history of a unique, nonmodel insect system: dragonflies and damselflies (Odonata). We demonstrate that introgression is a pervasive evolutionary force across various taxonomic levels within Odonata. In particular, we show that the morphologically “intermediate” species of Anisozygoptera (one of the three primary suborders within Odonata besides Zygoptera and Anisoptera), which retain phenotypic characteristics of the other two suborders, experienced high levels of introgression likely coming from zygopteran genomes. Additionally, we find evidence for multiple cases of deep inter-superfamilial ancestral introgression. [Gene flow; Odonata; phylogenomics; reticulate evolution.]
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发表时间: 2012-07-05
期刊: NATURE
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