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Environmental DNA provides higher resolution assessment of riverine biodiversity and ecosystem function via spatio-temporal nestedness and turnover partitioning

机译:环境DNA通过时空嵌套和周转划分,对河流生物多样性和生态系统功能进行更高分辨率的评估

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摘要

Rapidly assessing biodiversity is essential for environmental monitoring; however, traditional approaches are limited in the scope needed for most ecological systems. Environmental DNA (eDNA) based assessment offers enhanced scope for assessing biodiversity, while also increasing sampling efficiency and reducing processing time, compared to traditional methods. Here we investigated the effects of landuse and seasonality on headwater community richness and functional diversity, via spatio-temporal dynamics, using both eDNA and traditional sampling. We found that eDNA provided greater resolution in assessing biodiversity dynamics in time and space, compared to traditional sampling. Community richness was seasonally linked, peaking in spring and summer, with temporal turnover having a greater effect on community composition compared to localized nestedness. Overall, our assessment of ecosystem function shows that community formation is driven by regional resource availability, implying regional management requirements should be considered. Our findings show that eDNA based ecological assessment is a powerful, rapid and effective assessment strategy that enables complex spatio-temporal studies of community diversity and ecosystem function, previously infeasible using traditional methods.
机译:快速评估生物多样性对于环境监测至关重要;然而,传统方法在大多数生态系统所需的范围内受到限制。与传统方法相比,基于环境DNA(eDNA)的评估为评估生物多样性提供了更大的范围,同时还提高了采样效率并缩短了处理时间。本文采用eDNA采样方法,通过时空动力学研究了土地利用和季节性对源头群落丰富度和功能多样性的影响。我们发现,与传统采样相比,eDNA在评估时间和空间上的生物多样性动态方面提供了更高的分辨率。群落丰富度与季节有关,在春季和夏季达到高峰,与局部嵌套相比,时间更替对群落组成的影响更大。总体而言,我们对生态系统功能的评估表明,群落的形成是由区域资源可用性驱动的,这意味着应考虑区域管理要求。我们的研究结果表明,基于eDNA的生态评估是一种强大、快速和有效的评估策略,可以对群落多样性和生态系统功能进行复杂的时空研究,这在以前使用传统方法是不可行的。

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