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分层湖泊中冷水鱼类的垂直环境DNA分布对环境变量的响应

Vertical eDNA distribution of cold-water fishes in response to environmental variables in stratified lake.

作者信息

Fukumori Kayoko, Kondo Natsuko I, Kohzu Ayato, Tsuchiya Kenji, Ito Hiroshi, Kadoya Taku

机构信息

Biodiversity Division National Institute for Environmental Studies (NIES) Ibaraki Japan.

Regional Environment Conservation Division National Institute for Environmental Studies (NIES) Ibaraki Japan.

出版信息

Ecol Evol. 2024 Mar 18;14(3):e11091. doi: 10.1002/ece3.11091. eCollection 2024 Mar.

Abstract

In summer, the survival zones of cold-water species are predicted to narrow by both increasing water temperatures from the surface and by expanding hypoxic zones from the lake bottom. To examine how the abundance of cold-water fishes changes along environmental gradients, we assessed the vertical environmental DNA (eDNA) distributions of three salmonid species which may have different water temperature tolerances during both stratification and turnover periods using quantitative PCR (qPCR). In addition, we examined on the vertical distribution of diverse fish fauna using an eDNA metabarcoding assay. The results suggested that the kokanee salmon () eDNA were abundant in deep, cold waters. On the other hand, rainbow trout () eDNA were distributed uniformly throughout the water column, suggesting that they may have high water-temperature tolerance compared with kokanee salmon. The eDNA concentrations of masu salmon () were below the detection limit (i.e., <10 copies μL) at all stations and depths and hence could not be quantified during stratification. Together with the finding that the eDNA distributions of other prey fish species were also constrained vertically in species-specific ways, our results suggest that climate change will result in substantial changes in the vertical distributions of lake fish species and thus affect their populations and interactions.

摘要

在夏季,预计冷水物种的生存区域会因表层水温升高和湖底缺氧区域扩大而变窄。为了研究冷水鱼类的丰度如何随环境梯度变化,我们使用定量聚合酶链反应(qPCR)评估了三种鲑科鱼类在分层期和周转期可能具有不同水温耐受性的垂直环境DNA(eDNA)分布。此外,我们使用eDNA宏条形码分析方法研究了不同鱼类群落的垂直分布。结果表明,红大麻哈鱼的eDNA在深层冷水中含量丰富。另一方面,虹鳟的eDNA在整个水柱中分布均匀,这表明与红大麻哈鱼相比,它们可能具有较高的水温耐受性。在分层期,所有站点和深度的马苏大麻哈鱼的eDNA浓度均低于检测限(即<10拷贝/微升),因此无法进行定量分析。连同其他猎物鱼类物种的eDNA分布也以物种特异性方式受到垂直限制这一发现,我们的结果表明气候变化将导致湖泊鱼类物种的垂直分布发生重大变化,从而影响它们的种群和相互作用。

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