Division of Epigenetics, DKFZ-ZMBH Alliance, German Cancer Research Center, Im Neuenheimer Feld 580, 69120, Heidelberg, Germany.
Department of Biology-Chemistry, West University of Timisoara, 16A Pestalozzi St., 300115, Timisoara, Romania.
Commun Biol. 2021 Jan 18;4(1):74. doi: 10.1038/s42003-020-01588-8.
The marbled crayfish (Procambarus virginalis) represents a very recently evolved parthenogenetic freshwater crayfish species that has invaded diverse habitats in Europe and in Madagascar. However, population genetic analyses have been hindered by the homogeneous genetic structure of the population and the lack of suitable tools for data analysis. We have used whole-genome sequencing to characterize reference specimens from various known wild populations. In parallel, we established a whole-genome sequencing data analysis pipeline for the population genetic analysis of nearly monoclonal genomes. Our results provide evidence for systematic genetic differences between geographically separated populations and illustrate the emerging differentiation of the marbled crayfish genome. We also used mark-recapture population size estimation in combination with genetic data to model the growth pattern of marbled crayfish populations. Our findings uncover evolutionary dynamics in the marbled crayfish genome over a very short evolutionary timescale and identify the rapid growth of marbled crayfish populations as an important factor for ecological monitoring.
大理石纹小龙虾(Procambarus virginalis)是一种最近进化而来的、具有孤雌生殖能力的淡水小龙虾,已入侵到欧洲和马达加斯加的各种不同生境中。然而,种群遗传分析受到种群同质化遗传结构和缺乏合适数据分析工具的阻碍。我们利用全基因组测序技术对来自不同已知野生种群的参考样本进行了特征描述。同时,我们建立了一个全基因组测序数据分析管道,用于分析近乎单克隆基因组的种群遗传。我们的研究结果为地理上分隔的种群之间存在系统遗传差异提供了证据,并阐明了大理石纹小龙虾基因组的分化趋势。我们还结合遗传数据使用标记重捕法对种群大小进行了估计,以建立大理石纹小龙虾种群的增长模型。我们的研究结果揭示了大理石纹小龙虾基因组在非常短的进化时间尺度上的进化动态,并指出大理石纹小龙虾种群的快速增长是生态监测的一个重要因素。