Laboratory of Physiology, Atmosphere and Ocean Research Institute, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa City, Chiba, 277-8564, Japan.
Laboratory of Marine Ecosystem Change Analysis, Field Science Center for Northern Biosphere, Hokkaido University, Hakodate Research Center for Fisheries and Oceans, 20-5 Benten-Cho, Hakodate City, Hokkaido, 040-0051, Japan.
Sci Rep. 2020 Dec 9;10(1):21531. doi: 10.1038/s41598-020-77304-7.
Environmental DNA (eDNA) is increasingly popular as a useful non-invasive method to monitor and study biodiversity and community structure in freshwater and marine environments. To effectively extract eDNA from the filter surface is a fundamental factor determining the representativeness of the samples. We improved the eDNA extraction efficiency of an established Sterivex method by 12- to 16-fold using a larger volume of lysis buffer mix coupled with backflushing the cartridges. The DNeasy extraction column could be overloaded when the environmental sample input is high, possibly due to a higher nonspecific binding present in environmental samples, thus resulting in a relatively lower quantity measured. Therefore, we included an internal control DNA in the extraction to monitor the extraction and purification efficiencies in field samples, which is crucial for quantification of original eDNA concentration. The use of Takara Probe qPCR Mix supplemented with protein-based additives improved the robustness of the real time PCR assay on inhibitor-rich environmental samples, but prior purification by Qiagen PowerClean Pro Cleanup kit could be essential for inhibitor-rich water samples, even though the recovery rate was unexpectedly low (average 33.0%). The improved extraction and quantification complement the qualitative analyses including metabarcoding and metagenomics in field application.
环境 DNA(eDNA)作为一种监测和研究淡水和海洋环境生物多样性和群落结构的有用非侵入性方法,越来越受欢迎。有效地从过滤表面提取 eDNA 是决定样品代表性的基本因素。我们通过使用更大体积的裂解缓冲液混合物并对试剂盒进行反冲洗,将已建立的 Sterivex 方法的 eDNA 提取效率提高了 12-16 倍。当环境样品输入量较高时,DNeasy 提取柱可能会过载,这可能是由于环境样品中存在较高的非特异性结合,从而导致测量的数量相对较低。因此,我们在提取过程中加入了内部对照 DNA,以监测现场样品的提取和纯化效率,这对于定量原始 eDNA 浓度至关重要。使用添加了基于蛋白质添加剂的 Takara Probe qPCR Mix 提高了实时 PCR 检测对富含抑制剂的环境样品的稳健性,但对于富含抑制剂的水样,Qiagen PowerClean Pro 净化试剂盒的预纯化可能是必不可少的,尽管回收率出乎意料地低(平均 33.0%)。改进的提取和定量补充了现场应用中的定性分析,包括代谢组学和宏基因组学。