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比较河流藻类和节肢动物的环境 RNA 和 DNA 宏条形码分析,用于生态调查和水质评估。

Comparative environmental RNA and DNA metabarcoding analysis of river algae and arthropods for ecological surveys and water quality assessment.

机构信息

R&D Safety Science Research, Kao Corporation, 2606 Akabane, Ichikai-Machi, Haga-Gun, Tochigi, 321-3497, Japan.

Bioindicator Co., Ltd., 18 Iwato-Cho, Shinjuku-Ku, Tokyo, 162-0832, Japan.

出版信息

Sci Rep. 2022 Nov 18;12(1):19828. doi: 10.1038/s41598-022-23888-1.

Abstract

Environmental DNA (eDNA) metabarcoding is widely used for species analysis, while the use of environmental RNA (eRNA) metabarcoding is more limited. We conducted comparative eDNA/eRNA metabarcoding of the algae and arthropods (aquatic insects) in water samples from Naka River, Japan, to evaluate their potential for biological monitoring and water quality assessment. Both methods detected various algae and arthropod species; however, their compositions were remarkably different from those in traditional field surveys (TFSs), indicating low sensitivity. For algae, the species composition derived from eDNA and eRNA metabarcoding was equivalent. While TFSs focus on attached algae, metabarcoding analysis theoretically detects both planktonic and attached algae. A recently expanded genomic database for aquatic insects significantly contributed to the sensitivity and positive predictivity for arthropods. While the sensitivity of eRNA was lower than that of eDNA, the positive predictivity of eRNA was higher. The eRNA of terrestrial arthropods indicated extremely high or low read numbers when compared with eDNA, suggesting that eRNA could be an effective indicator of false positives. Arthropod and algae eDNA/eRNA metabarcoding analysis enabled water quality estimates from TFSs. The eRNA of algae and arthropods could thus be used to evaluate biodiversity and water quality and provide insights from ecological surveys.

摘要

环境 DNA(eDNA)宏条形码广泛用于物种分析,而环境 RNA(eRNA)宏条形码的应用则更为有限。我们对来自日本中川河的水样中的藻类和节肢动物(水生昆虫)进行了 eDNA/eRNA 宏条形码的比较分析,以评估它们在生物监测和水质评估方面的潜力。两种方法都检测到了各种藻类和节肢动物物种;然而,它们的组成与传统的实地调查(TFS)显著不同,表明敏感性较低。对于藻类来说,eDNA 和 eRNA 宏条形码衍生的物种组成是等效的。而 TFS 主要关注附着藻类,宏条形码分析理论上可以检测到浮游和附着藻类。水生昆虫最近扩展的基因组数据库极大地提高了对节肢动物的敏感性和阳性预测率。虽然 eRNA 的敏感性低于 eDNA,但 eRNA 的阳性预测率更高。与 eDNA 相比,陆地节肢动物的 eRNA 显示出极高或极低的读数数量,这表明 eRNA 可能是假阳性的有效指标。藻类和节肢动物的 eDNA/eRNA 宏条形码分析使我们能够从 TFS 中估算水质。因此,藻类和节肢动物的 eRNA 可以用来评估生物多样性和水质,并提供生态调查的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c5c/9674700/492d5102b265/41598_2022_23888_Fig1_HTML.jpg

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