Department of Electrical and Computer Engineering, Dalhousie University, Halifax, NS, Canada.
Dartmouth Ocean Technologies Inc, Dartmouth, NS, Canada.
Sci Rep. 2023 Mar 30;13(1):5210. doi: 10.1038/s41598-023-32310-3.
Using environmental DNA (eDNA) to monitor biodiversity in aquatic environments is becoming an efficient and cost-effective alternative to other methods such as visual and acoustic identification. Until recently, eDNA sampling was accomplished primarily through manual sampling methods; however, with technological advances, automated samplers are being developed to make sampling easier and more accessible. This paper describes a new eDNA sampler capable of self-cleaning and multi-sample capture and preservation, all within a single unit capable of being deployed by a single person. The first in-field test of this sampler took place in the Bedford Basin, Nova Scotia, Canada alongside parallel samples taken using the typical Niskin bottle collection and post-collection filtration method. Both methods were able to capture the same aquatic microbial community and counts of representative DNA sequences were well correlated between methods with R[Formula: see text] values ranging from 0.71-0.93. The two collection methods returned the same top 10 families in near identical relative abundance, demonstrating that the sampler was able to capture the same community composition of common microbes as the Niskin. The presented eDNA sampler provides a robust alternative to manual sampling methods, is amenable to autonomous vehicle payload constraints, and will facilitate persistent monitoring of remote and inaccessible sites.
利用环境 DNA(eDNA)监测水生环境中的生物多样性正成为一种比目视和声学识别等其他方法更高效、更具成本效益的替代方法。直到最近,eDNA 采样主要还是通过手动采样方法完成;然而,随着技术的进步,正在开发自动化采样器以简化和普及采样。本文介绍了一种新的 eDNA 采样器,它能够自我清洁、多样本采集和保存,所有这些都在一个能够由一个人部署的单一单元内完成。该采样器的首次野外测试是在加拿大新斯科舍省贝德福德湾进行的,同时还平行采集了使用典型的 Niskin 瓶采集和采集后过滤方法采集的样本。两种方法都能够捕获相同的水生微生物群落,并且方法之间的代表性 DNA 序列计数具有很好的相关性,R[Formula: see text] 值范围从 0.71 到 0.93。这两种收集方法返回了相同的前 10 个家族,相对丰度几乎相同,这表明采样器能够像 Niskin 一样捕获常见微生物的相同群落组成。所提出的 eDNA 采样器为手动采样方法提供了一种可靠的替代方法,适用于自主车辆有效载荷的约束条件,并将促进对偏远和难以到达的地点的持续监测。