Department of Computer Science, Centre de Recherche en Biomédecine de Strasbourg, UMR 7357, University of Strasbourg, CNRS, Rue Eugène Boeckel 1, 67000, ICube, Strasbourg, France.
LOEWE Centre for Translational Biodiversity Genomics (LOEWE-TBG), Senckenberganlage 25, 60325, Frankfurt am Main, Germany.
BMC Ecol Evol. 2024 Jun 11;24(1):78. doi: 10.1186/s12862-024-02268-5.
Biodiversity in freshwater ecosystems is declining due to an increased anthropogenic footprint. Freshwater crayfish are keystone species in freshwater ecosystems and play a crucial role in shaping the structure and function of their habitats. The Idle Crayfish Austropotamobius bihariensis is a native European species with a narrow distribution range, endemic to the Apuseni Mountains (Romania). Although its area is small, the populations are anthropogenically fragmented. In this context, the assessment of its conservation status is timely.
Using a reduced representation sequencing approach, we identified 4875 genomic SNPs from individuals belonging to 13 populations across the species distribution range. Subsequent population genomic analyses highlighted low heterozygosity levels, low number of private alleles and small effective population size. Our structuring analyses revealed that the genomic similarity of the populations is conserved within the river basins.
Genomic SNPs represented excellent tools to gain insights into intraspecific genomic diversity and population structure of the Idle Crayfish. Our study highlighted that the analysed populations are at risk due to their limited genetic diversity, which makes them extremely vulnerable to environmental alterations. Thus, our results emphasize the need for conservation measures and can be used as a baseline to establish species management programs.
由于人类活动的影响,淡水生态系统中的生物多样性正在减少。淡水螯虾是淡水生态系统中的关键物种,对其栖息地的结构和功能起着至关重要的作用。惰性螯虾 Austropotamobius bihariensis 是一种原产于欧洲的物种,分布范围狭窄,仅分布于罗马尼亚的阿普塞尼山脉。尽管其分布范围较小,但该物种的种群已因人类活动而碎片化。在这种情况下,及时评估其保护状况非常重要。
本研究采用简化基因组测序方法,从分布范围内的 13 个种群中鉴定出 4875 个基因组 SNP。随后的种群基因组分析强调了低杂合度水平、低私有等位基因数量和小有效种群大小。我们的结构分析表明,种群的基因组相似性在河流流域内是保守的。
基因组 SNP 是深入了解惰性螯虾种内基因组多样性和种群结构的极好工具。我们的研究结果表明,由于遗传多样性有限,分析种群面临风险,这使它们极易受到环境变化的影响。因此,我们的研究结果强调了保护措施的必要性,并可作为制定物种管理计划的基准。