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利用 3D 打印羟磷灰石采样器对水生环境中的环境 DNA 进行被动采样。

Passive sampling of environmental DNA in aquatic environments using 3D-printed hydroxyapatite samplers.

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, CNRS, ENTPE, UMR 5023 LEHNA, Villeurbanne, France.

Eurofins Hydrobiologie France, Maxéville, France.

出版信息

Mol Ecol Resour. 2022 Aug;22(6):2158-2170. doi: 10.1111/1755-0998.13604. Epub 2022 Mar 18.

Abstract

The study of environmental DNA (eDNA) released by aquatic organisms in their habitat offers a fast, noninvasive and sensitive approach to monitor their presence. Common eDNA sampling methods such as water filtration and DNA precipitation are time-consuming, require difficult-to-handle equipment and partially integrate eDNA signals. To overcome these limitations, we created the first proof of concept of a passive, 3D-printed and easy-to-use eDNA sampler. We designed the samplers from hydroxyapatite (HAp samplers), a natural mineral with a high DNA adsorption capacity. The porous structure and shape of the samplers were designed to optimize DNA adsorption and facilitate their handling in the laboratory and in the field. Here we show that HAp samplers can efficiently collect genomic DNA in controlled set-ups, but can also collect animal eDNA under controlled and natural conditions with yields similar to conventional methods. However, we also observed large variations in the amount of DNA collected even under controlled conditions. A better understanding of the DNA-hydroxyapatite interactions on the surface of the samplers is now necessary to optimize eDNA adsorption and to allow the development of a reliable, easy-to-use and reusable eDNA sampling tool.

摘要

对水生生物在其栖息地释放的环境 DNA(eDNA)的研究提供了一种快速、非侵入性和敏感的监测其存在的方法。常见的 eDNA 采样方法,如过滤水和 DNA 沉淀,既耗时又需要难以处理的设备,并且部分整合了 eDNA 信号。为了克服这些限制,我们创建了第一个被动式、3D 打印和易于使用的 eDNA 采样器的概念验证。我们从羟磷灰石(HAp 采样器)设计了采样器,羟磷灰石是一种具有高 DNA 吸附能力的天然矿物质。采样器的多孔结构和形状旨在优化 DNA 的吸附,并便于在实验室和野外进行处理。在这里,我们表明 HAp 采样器可以在受控条件下有效地收集基因组 DNA,但也可以在受控和自然条件下收集动物 eDNA,其产量与传统方法相似。然而,我们也观察到,即使在受控条件下,收集到的 DNA 量也存在很大差异。现在有必要更好地了解采样器表面上的 DNA-羟磷灰石相互作用,以优化 eDNA 的吸附,并开发出可靠、易于使用和可重复使用的 eDNA 采样工具。

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