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Investigating the distribution of the Yangtze finless porpoise in the Yangtze River using environmental DNA

机译:利用环境DNA研究长江无鳍海豚在长江中的分布

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摘要

Determining the distribution of the Yangtze finless porpoise (Neophocaena asiaeorientalis asiaeorientalis, YFP) in the Yangtze River has to date relied on traditional visual and counting methods, but such field surveys are time-consuming and expensive. Analyses using environmental DNA (eDNA) to investigate the presence and range of endangered aquatic species have proven to be more economical and effective detection methods, and are a non-invasive approach to sampling. A challenge of relying on eDNA for YFP monitoring is that the Yangtze River is characterized by high turbidity and a strong current. Here, we used an eDNA-based approach to estimate the presence of YFP at 18 sites in the Yangtze River in August 2017 and at an additional 11 sites in January 2018. At each sampling site, we filtered six 1 L water samples with 5 µm pore size filter paper and quantified the amount of YFP eDNA in each water sample using quantitative real-time polymerase chain reaction (qPCR). In addition, YFP eDNA was successfully detected in locations where we visually observed YFP, as well as in locations where YFP were not observed directly. We found that our eDNA-based method had higher detection rates than traditional field survey methods. Although YFP was visually observed in the Yangtze River in winter, water samples collected during the summer contained significantly higher YFP eDNA than winter water samples. Our results demonstrate the potential effectiveness of eDNA detection methods in determining the distribution of YFP in the Yangtze River.
机译:迄今为止,确定长江无鳍海豚(Neophocaena asiaeorientalis asiaeorientalis,YFP)的分布必须依靠传统的视觉和计数方法,但是这种野外调查既费时又费钱。使用环境DNA(eDNA)分析濒危水生生物的存在和范围已被证明是更经济有效的检测方法,并且是一种非侵入性的采样方法。依靠eDNA进行YFP监测的一个挑战是长江的特点是浊度高,水流强。在这里,我们使用基于eDNA的方法来估计YFP在2017年8月在长江的18个站点以及2018年1月在另外11个站点的存在。在每个采样点,我们过滤了5个µm的六个1 L水样孔径滤纸,并使用定量实时聚合酶链反应(qPCR)定量每个水样品中的YFP eDNA量。此外,在我们目视观察到YFP的位置以及未直接观察到YFP的位置成功检测到YFP eDNA。我们发现,基于eDNA的方法比传统的现场调查方法具有更高的检测率。尽管冬季在长江上目视观察到YFP,但夏季收集的水样中的YFP eDNA明显高于冬季水样。我们的结果证明了eDNA检测方法在确定长江中YFP分布方面的潜在有效性。

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