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同种遗传变异和昼夜活动会影响日本鳗鲡环境 DNA 的检测。

Intraspecific genetic variability and diurnal activity affect environmental DNA detection in Japanese eel.

机构信息

Oita Junior College, Oita, Japan.

Faculty of Life and Environmental Science, Shimane University, Matsue, Shimane, Japan.

出版信息

PLoS One. 2021 Sep 16;16(9):e0255576. doi: 10.1371/journal.pone.0255576. eCollection 2021.

Abstract

Environmental DNA (eDNA) analysis with species-specific primer/probe sets is promising as a tool to quantify fish abundance and distribution. Nevertheless, several factors could reduce the accuracy of this method. Here, we aimed to analyze whether intraspecific variability and diel activity rhythm affect eDNA detection in Japanese eels (Anguilla japonica). For this purpose, we performed tank experiments focusing on two points. First, we assessed the effects of base pair sequences with probe region polymorphism on eDNA detection. Next, we evaluated the influences of diel rhythm, activity, and individual differences in eDNA release rate on eDNA concentration. We examined the base pair sequences of the probe regions of 20 individuals and found genetic mismatches in two of them. The eDNA concentration was estimated to be much lower in these variants than it was in the other individuals. We conducted a rearing experiment on four non-variant individuals to explore the influences of diel activity and inter-individual differences in eDNA detection. Nocturnal eel activity was reflected in the eDNA detection but the inter-individual differences remained large. The observed weak positive correlations between eDNA concentration and activity suggest that eDNA emission is highly dependent on basal metabolism. The present study suggests that consideration of polymorphic sites at the probe region and diel activity rhythms should improve the accuracy and precision of abundance estimation through eDNA. Such fine-tuning is applicable not only for eels but also for other fishes to be targeted by eDNA technology.

摘要

环境 DNA(eDNA)分析与物种特异性引物/探针集相结合,是一种定量鱼类丰度和分布的有前途的工具。然而,有几个因素可能会降低这种方法的准确性。在这里,我们旨在分析种内变异性和昼夜活动节律是否会影响日本鳗鱼(Anguilla japonica)的 eDNA 检测。为此,我们进行了水箱实验,重点关注两个方面。首先,我们评估了探针区域多态性碱基对序列对 eDNA 检测的影响。接下来,我们评估了昼夜节律、活动和个体间 eDNA 释放率差异对 eDNA 浓度的影响。我们检查了 20 个个体的探针区域碱基对序列,发现其中两个个体存在遗传不匹配。这些变体的 eDNA 浓度估计比其他个体低得多。我们对四个非变体个体进行了饲养实验,以探索昼夜活动和个体间 eDNA 检测差异的影响。鳗鱼的夜间活动反映在 eDNA 检测中,但个体间的差异仍然很大。观察到的 eDNA 浓度与活动之间的弱正相关表明,eDNA 的释放高度依赖于基础代谢。本研究表明,在探针区域考虑多态性位点和昼夜活动节律,可以提高通过 eDNA 进行丰度估计的准确性和精密度。这种微调不仅适用于鳗鱼,也适用于其他鱼类,以适应 eDNA 技术的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0c0/8445453/d148ce319038/pone.0255576.g001.jpg

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