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路易斯安那鸢尾品种的遗传结构揭示了近期和历史混合的模式。

Genetic structure in Louisiana Iris species reveals patterns of recent and historical admixture.

作者信息

Zalmat Alexander S, Sotola V Alex, Nice Chris C, Martin Noland H

机构信息

Department of Biology, Texas State University, San Marcos, Texas, 78666-0202, USA.

Department of Genetics, University of Georgia, Athens, Georgia, 30602-7223, USA.

出版信息

Am J Bot. 2021 Nov;108(11):2257-2268. doi: 10.1002/ajb2.1758. Epub 2021 Nov 19.

Abstract

PREMISE

When divergent lineages come into secondary contact, reproductive isolation may be incomplete, thus providing an opportunity to investigate how speciation is manifested in the genome. The Louisiana Irises (Iris, series Hexagonae) comprise a group of three or more ecologically and reproductively divergent lineages that can produce hybrids where they come into contact. We estimated standing genetic variation to understand the current distribution of population structure in the Louisiana Irises.

METHODS

We used genotyping-by-sequencing techniques to sample the genomes of Louisiana Iris species across their ranges. We sampled 20 populations (n = 632 individuals) across 11,249 loci and used Entropy and PCA models to assess population genetic data.

RESULTS

We discovered evidence for interspecific gene flow in parts of the range. Our analysis revealed patterns of population structure at odds with widely accepted nominal taxonomy. We discovered undescribed hybrid populations, designated as belonging to the I. brevicaulis lineage. Iris nelsonii shared significant ancestry with only one of the purported parent species, I. fulva, evidence inconsistent with a hybrid origin.

CONCLUSIONS

This study provides several key findings important to the investigation of standing genetic variation in the Louisiana Iris species complex. Compared to the other nominal species, I. brevicaulis contains a large amount of genetic diversity. In addition, we discovered a previously unknown hybrid zone between I. brevicaulis and I. hexagona along the Texas coast. Finally, our results do not support the long-standing hypothesis that I. nelsonii has mixed ancestry from three parental taxa.

摘要

前提

当不同的谱系发生二次接触时,生殖隔离可能并不完全,从而为研究物种形成在基因组中的表现方式提供了一个机会。路易斯安那鸢尾(鸢尾属,六棱鸢尾组)由三个或更多生态和生殖上不同的谱系组成,它们在接触区域能够产生杂交后代。我们估计了现存的遗传变异,以了解路易斯安那鸢尾的种群结构现状。

方法

我们使用测序基因分型技术对路易斯安那鸢尾物种在其分布范围内的基因组进行采样。我们在11249个基因座上对20个种群(n = 632个个体)进行了采样,并使用熵和主成分分析模型来评估种群遗传数据。

结果

我们在部分分布区域发现了种间基因流动的证据。我们的分析揭示了与广泛接受的名义分类法不一致的种群结构模式。我们发现了未描述的杂交种群,将其指定为属于短茎鸢尾谱系。尼尔森鸢尾仅与一种所谓的亲本物种富尔维鸢尾共享显著的祖先成分,这一证据与杂交起源不一致。

结论

本研究提供了几个对路易斯安那鸢尾物种复合体现存遗传变异研究很重要的关键发现。与其他名义物种相比,短茎鸢尾包含大量的遗传多样性。此外,我们在德克萨斯海岸沿线发现了短茎鸢尾和六棱鸢尾之间一个以前未知的杂交带。最后,我们的结果不支持长期以来认为尼尔森鸢尾具有来自三个亲本类群混合血统的假设。

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