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Contrasting phylogeographic structures between freshwater lycopods and angiosperms in the British Isles

机译:对比淡水百普普德斯与英国岛上的有神易生物之间的神奇地理结构

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Aquatic plants face many novel challenges compared to their terrestrial counterparts. The habitat they occupy is typically highly fragmented, with isolated water bodies surrounded by swathes of "dry desert". This can result in reduced gene flow, inbreeding, and potentially local extinction. The level of gene flow and degree of genetic structure in these species is also likely to be influenced by the mating system they adopt. To test this hypothesis we compare the phylogeographic structure of two freshwater plants in the British Isles, the largely clonal angiosperm Littorella uniflora, and the heterosporous lycopod Isoetes lacustris. We sampled both plants from lakes where they co-occur, and used restriction site-associated DNA sequencing (RAD-Seq) to infer their relationships. Genetic structure among lakes is higher in the angiosperm, which we associate with reduced sexual reproduction, and hence lower levels of gene flow between lakes. Furthermore, we found evidence of lineage-specific association to certain lake nutrient types in L. uniflora, which might result from environmental filtering of specific ecotypes. Overall, we conclude that the reproductive system of lycopods, which is less specialized to terrestrial conditions, provides an advantage following the secondary colonization of aquatic habitats by enabling frequent genetic exchanges between populations and potentially facilitating faster adaptation.
机译:与他们的地面同行相比,水生植物面临着许多新的挑战。他们占据的栖息地通常是高度碎片化的,孤立的水体包围着“干燥沙漠”。这可能导致基因流量减少,近亲繁殖,潜在的局部灭绝。这些物种中基因流量和遗传结构程度也可能受到它们采用的交配系统的影响。为了测试这一假设,我们比较英国群岛的两个淡水植物的Phylogeache结构,这是克隆性肺部植物植物植物植物联弗拉联洛拉,以及异孢子性Lycopod Isoetes Lapustris。我们将两种植物从它们共同发生,并使用限制性位点相关的DNA测序(RAD-SEQ)来推断它们的关系。湖泊之间的遗传结构在高血管培养物中较高,我们与减少性繁殖相关,因此湖泊之间的基因流量较低。此外,我们发现血统特异性与某些湖泊营养素类型的证据表明L. Unvlora中的某些湖泊营养素类型,这可能由特定生态型的环境过滤产生。总的来说,我们得出结论,Lycopods的生殖系统,其较不专注于陆地条件,通过使群体之间的频繁的遗传交流和潜在促进适应性的遗传交流,提供了一种优势。

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