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阻断引物和肽核酸(PNA)夹在食草性鱼类 18S 代谢组学饮食分析中的有效性。

Effectiveness of blocking primers and a peptide nucleic acid (PNA) clamp for 18S metabarcoding dietary analysis of herbivorous fish.

机构信息

The United Graduate School of Agricultural Sciences, Ehime University, Matsuyama, Japan.

Faculty of Agriculture and Marine Science, Kochi University, Nankoku, Kochi, Japan.

出版信息

PLoS One. 2022 Apr 20;17(4):e0266268. doi: 10.1371/journal.pone.0266268. eCollection 2022.

Abstract

The structure of food webs and carbon flow in aquatic ecosystems can be better understood by studying contributing factors such as the diets of herbivorous fish. Metabarcoding using a high-throughput sequencer has recently been used to clarify prey organisms of various fish except herbivorous fish. Since sequences of predator fish have dominated in sequences obtained by metabarcoding, we investigated a method for suppressing the amplification of fish DNA by using a blocking primer or peptide nucleic acid (PNA) clamp to determine the prey organisms of herbivorous fish. We designed three blocking primers and one PNA clamp that anneal to fish-specific sequences and examined how efficient they were in suppressing DNA amplification in various herbivorous fish. The results showed that the PNA clamp completely suppressed fish DNA amplification, and one of the blocking primers suppressed fish DNA amplification but less efficiently than the PNA clamp. Finally, we conducted metabarcoding using mock community samples as templates to determine whether the blocking primer or the PNA clamp was effective in suppressing fish DNA amplification. The results showed that the PNA clamp suppressed 99.3%-99.9% of fish DNA amplification, whereas the blocking primer suppressed 3.3%-32.9%. Therefore, we propose the application of the PNA clamp for clarifying the prey organisms and food preferences of various herbivorous fish.

摘要

通过研究草食性鱼类的饮食等因素,可以更好地了解水生生态系统中食物网的结构和碳流动。最近,高通量测序器的代谢条形码技术已被用于阐明各种鱼类(除草食性鱼类外)的猎物生物。由于代谢条形码中获得的序列主要是捕食性鱼类的序列,因此,我们研究了一种通过使用阻断引物或肽核酸(PNA)夹抑制鱼类 DNA 扩增的方法,以确定草食性鱼类的猎物生物。我们设计了三个与鱼类特异性序列结合的阻断引物和一个 PNA 夹,并研究了它们在抑制各种草食性鱼类 DNA 扩增方面的效率。结果表明,PNA 夹完全抑制了鱼类 DNA 的扩增,其中一个阻断引物抑制了鱼类 DNA 的扩增,但效率低于 PNA 夹。最后,我们使用模拟群落样本作为模板进行代谢条形码分析,以确定阻断引物或 PNA 夹是否有效抑制鱼类 DNA 扩增。结果表明,PNA 夹抑制了 99.3%-99.9%的鱼类 DNA 扩增,而阻断引物抑制了 3.3%-32.9%。因此,我们建议应用 PNA 夹来阐明各种草食性鱼类的猎物生物和食物偏好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99d0/9020718/ddb0f2c4c6d6/pone.0266268.g001.jpg

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