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利用底栖样本固定剂的DNA宏条形码技术揭示环境梯度和最佳固定时间。

Environmental gradients and optimal fixation time revealed with DNA metabarcoding of benthic sample fixative.

作者信息

Vargovčík Ondrej, Čiamporová-Zaťovičová Zuzana, Beracko Pavel, Kopáček Jiří, Macko Patrik, Tuhrinová Kornélia, Čiampor Fedor

机构信息

Department of Ecology, Faculty of Natural Sciences, Comenius University in Bratislava, Bratislava, 842 15, Slovakia.

Department of Biodiversity and Ecology, Plant Science and Biodiversity Centre, Slovak Academy of Sciences, Bratislava, 845 23, Slovakia.

出版信息

Sci Rep. 2024 Aug 8;14(1):18396. doi: 10.1038/s41598-024-68939-x.

Abstract

Assessments of biodiversity and ecosystem status can benefit from DNA metabarcoding as a means to streamline sample processing and specimen identification. Moreover, processing the fixation medium instead of the precious material introduces straightforward protocols that allow subsequent focus on certain organisms detected among the preserved specimens. In this study, we present a proof of concept via the analysis of freshwater invertebrate samples from the Tatra Mountain lakes (Slovakia). Besides highlighting a match between the lake-specific environmental conditions and the results of our fixative DNA metabarcoding, we observed an option to fine-tune the fixation time: to prefer two weeks over a day or a month. This effect emerged from the presence/absence of individual taxa rather than from coarse per-sample records of taxonomic richness, demonstrating that metabarcoding studies-and efforts to optimize their protocols-can use the robust metrics to explore even subtle trends. We also provide evidence that fixative DNA might better capture large freshwater species than terrestrial or meiofauna.

摘要

生物多样性和生态系统状况评估可受益于DNA宏条形码技术,该技术可简化样本处理和标本鉴定过程。此外,处理固定介质而非珍贵材料引入了简单的方案,使后续能够专注于在保存标本中检测到的某些生物。在本研究中,我们通过分析来自塔特拉山湖泊(斯洛伐克)的淡水无脊椎动物样本,展示了一个概念验证。除了突出特定湖泊的环境条件与我们的固定剂DNA宏条形码结果之间的匹配外,我们还观察到一种微调固定时间的选择:相较于一天或一个月,更倾向于两周。这种效应源于个别分类群的存在与否,而非分类丰富度的粗略样本记录,表明宏条形码研究以及优化其方案的努力,可以使用稳健的指标来探索甚至是细微的趋势。我们还提供了证据,表明固定剂DNA可能比陆地或小型动物更能捕捉大型淡水物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d75e/11310421/5fa1cefc430c/41598_2024_68939_Fig1_HTML.jpg

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