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Evaluation of the Environmental DNA Method for Estimating Distribution and Biomass of Submerged Aquatic Plants

机译:评估淹没水生植物分布和生物量的环境DNA方法的评价

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摘要

The environmental DNA (eDNA) method has increasingly been recognized as a powerful tool for monitoring aquatic animal species; however, its application for monitoring aquatic plants is limited. To evaluate eDNA analysis for estimating the distribution of aquatic plants, we compared its estimated distributions with eDNA analysis, visual observation, and past distribution records for the submerged species Hydrilla verticillata. Moreover, we conducted aquarium experiments using H. verticillata and Egeria densa and analyzed the relationships between eDNA concentrations and plant biomass to investigate the potential for biomass estimation. The occurrences estimated by eDNA analysis closely corresponded to past distribution records, and eDNA detections were more frequent than visual observations, indicating that the method is potentially more sensitive. The results of the aquarium experiments showed a positive relationship between plant biomass and eDNA concentration; however, the relationship was not always significant. The eDNA concentration peaked within three days of the start of the experiment in most cases, suggesting that plants do not release constant amounts of DNA. These results showed that eDNA analysis can be used for distribution surveys, and has the potential to estimate the biomass of aquatic plants.
机译:环境DNA(eDNA)方法已被越来越多地视为监测水生动物物种的有力工具。但是,其在监测水生植物方面的应用是有限的。为了评估用于估计水生植物分布的eDNA分析,我们将其估计的分布与淹没物种Hydrilla verticillata的eDNA分析,视觉观察和过去的分布记录进行了比较。此外,我们使用H. verticillata和Egeria densa进行了水族馆实验,并分析了eDNA浓度与植物生物量之间的关系,以研究生物量估计的潜力。通过eDNA分析估计的发生与过去的分布记录非常接近,并且eDNA检测比视觉观察更为频繁,这表明该方法可能更敏感。水族馆的实验结果表明植物生物量与eDNA浓度呈正相关。但是,这种关系并不总是很重要。在大多数情况下,eDNA浓度在实验开始的三天内达到峰值,这表明植物不会释放恒定量的DNA。这些结果表明,eDNA分析可用于分布调查,并具有估计水生植物生物量的潜力。

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