Blanco-Bercial L, Bucklin A
Department of Marine Sciences, University of Connecticut, 1080 Shennecossett Rd, Groton, CT, 06340, USA.
Bermuda Institute of Ocean Sciences, 17 Biological Station, St. George's, GE 01, Bermuda.
Mol Ecol. 2016 Apr;25(7):1566-80. doi: 10.1111/mec.13581. Epub 2016 Mar 14.
Detection of population genetic structure of zooplankton at medium-to-small spatial scales in the absence of physical barriers has remained challenging and controversial. The large population sizes and high rates of gene flow characteristic of zooplankton have made resolution of geographical differentiation very difficult, especially when using few genetic markers and assuming equilibrium conditions. Next-generation sequencing now allows simultaneous sampling of hundreds to thousands of genetic markers; new analytical approaches allow studies under nonequilibrium conditions and directional migration. Samples of the North Atlantic Ocean planktonic copepod, Centropages typicus, were analysed using restriction site-associated DNA (RAD) sequencing on a PROTON platform. Although prior studies revealed no genetic differentiation of populations across the geographical range of the species, analysis of RAD tags showed significant structure across the North Atlantic Ocean. We also compared the likelihood for models of connectivity among NW Atlantic populations under various directional flow scenarios that replicate oceanographic conditions of the sampled domain. High-density marker sampling with RAD sequencing markedly outperformed other technical and analytical approaches in detection of population genetic structure and characterization of connectivity of this high geneflow zooplankton species.
在没有物理屏障的情况下,检测中小型空间尺度上浮游动物的种群遗传结构仍然具有挑战性且存在争议。浮游动物的大种群规模和高基因流速率使得地理分化的解析非常困难,特别是在使用较少的遗传标记并假设处于平衡条件时。新一代测序技术现在允许同时对数百到数千个遗传标记进行采样;新的分析方法允许在非平衡条件和定向迁移下进行研究。使用PROTON平台上的限制性位点相关DNA(RAD)测序对北大西洋浮游桡足类动物典型飞马哲水蚤的样本进行了分析。尽管先前的研究表明在该物种的地理分布范围内种群没有遗传分化,但对RAD标签的分析显示出北大西洋存在显著的结构。我们还比较了在各种复制采样区域海洋学条件的定向流动情景下,西北大西洋种群之间连通性模型的可能性。在检测这种高基因流浮游动物物种的种群遗传结构和连通性特征方面,使用RAD测序进行高密度标记采样明显优于其他技术和分析方法。