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首页> 外文期刊>Knowledge and Management of Aquatic Ecosystems >Genetic diversity of endangered Chondrostoma nasus in the River Rhine system: Conservation genetics considerations on stocking and reintroduction
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Genetic diversity of endangered Chondrostoma nasus in the River Rhine system: Conservation genetics considerations on stocking and reintroduction

机译:濒危<斜视>软骨瘤NASUS 在莱茵河系中的遗传多样性:储能和重新引入的保护遗传学考虑因素

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Reintroduction, stocking and translocation of freshwater fish are of growing concern given their importance for biodiversity conservation and ecosystem functioning. For successful management and stocking programmes, it is essential to incorporate genetics-based approaches. The nase ( Chondrostoma nasus ) constituted one of the most common fish species in European rivers. Its highly specialised and migratory nature exposed the species to human pressures, and thus, promoted its decline. Current knowledge of the genetic structure of C. nasus is considerably limited for Europe as a whole and for Germany specifically. To overcome this lack of information we present original data on C. nasus from different tributaries of the River Rhine. We analysed nine microsatellite markers and mtDNA Cytochrome b sequences to assess the distribution of genetic diversity and structure of this species across the study area. With the exception of the Lake Constance/Alpine Rhine population, C. nasus exhibited high gene flow within the Rhine system, and therefore, limited geographical genetic differences between populations where migration is not prevented by human intervention. The present study provides new insights into the levels of genetic variability of C. nasus in the Rhine system, providing useful information for guiding reintroduction and stocking programmes. Population genetic information will improve future preservation and management of this valuable freshwater fish species in Germany and beyond.
机译:据鉴于其对生物多样性保护和生态系统功能的重要性,淡水鱼的重新引入,储量和易迁移越来越关注。对于成功的管理和库存计划,必须纳入基于遗传学的方法。鼻窦(Chondrostoma Nasus)构成了欧洲河流中最常见的鱼类之一。其高度专业化和迁徙的性质暴露于人类压力的物种,从而促进其下降。目前对C. NASU的遗传结构的了解对于整个欧洲和德国特别有限。为了克服这种缺乏信息,我们从莱茵河的不同支流中展示了C. Nasus的原始数据。我们分析了九种微卫星标记物和MTDNA细胞色素B序列,以评估在研究区域的这种物种的遗传多样性和结构的分布。除了康斯坦茨湖/高山莱茵河人口外,C. NASU在莱茵体系中表现出高谷流量,因此,人口干预不会阻止迁移的群体之间的地理遗传差异有限。本研究提供了莱茵系统中C. NASU的遗传变异水平的新见解,为指导重新引入和放养方案提供有用的信息。人口遗传信息将改善德国和超越这种有价值的淡水鱼种的未来保存和管理。

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