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The use of environmental DNA of fishes as an efficient method of determining habitat connectivity

机译:利用鱼类的环境DNA作为确定栖息地连通性的有效方法

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摘要

This study demonstrated the use of environmental DNA (eDNA) to determine habitat connectivity for migration of fishes between the sea and river. Environmental DNA is DNA fragments released by fishes in water, which can be used as a species-specific marker of the presence/absence of the target species. A year-round water sampling regime at 15 sites on the Yodo River, Japan, was conducted to determine whether three major man-made barriers on the river inhibited the migration of fishes using species-specific detection of DNA fragments from three target migrant species, temperate seabass, Lateolabrax japonicas, flathead grey mullet, Mugil cephalus, and ayu, Plecoglossus altivelis altivelis. The presence/absence of eDNA from target species was consistent with known patterns of species' seasonal migration. The detection of the DNA of temperate seabass and flathead grey mullet at sites upstream of the dam closest to the river mouth indicated successful upstream migration of these species via a fish ladder bypassing the dam. On the other hand, DNA of these two species was not detected from the upstream side of the two remaining dams, which are not equipped with fish ladders. Ayu is the only species among the three target species with a land-locked population in Lake Biwa located at the headwater of Yodo River. Ayu DNA was detected at most of the sites in the freshwater area during the warm months; however, in the coldest month of February, eDNA was only detected in the uppermost site of Yodo River at the southern tip of Lake Biwa. The eDNA we detected at this site suggests that it was derived from juvenile ayu spending their winter months in the lake. These results suggest that the eDNA analysis presented here can accurately track the seasonal migration of fishes in a river, demonstrating its application as an indicator of habitat connectivity for fishes in association with man-made barriers in a river. The sampling of eDNA involves merely scooping a tank full of water; therefore, it is a simple, rapid, and cost-effective method for long-term monitoring of habitat connectivity associated with the construction of barriers in a river. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究证明了使用环境DNA(eDNA)来确定栖息地的连通性,以实现鱼类在海河之间的迁移。环境DNA是鱼类在水中释放的DNA片段,可用作目标物种存在/不存在的物种特异性标记。在日本淀江的15个地点进行了全年水采样制度,以通过对三种目标移民物种的DNA片段进行物种特异性检测来确定河流上的三个主要人为屏障是否抑制了鱼类的迁移,温带的鲈鱼,日本紫花鲈,扁平灰gray鱼,头状Mu鼠和香鱼(Plecoglossus altivelis altivelis)。目标物种中eDNA的存在与否与已知物种的季节性迁移模式相一致。在最靠近河口的大坝上游部位检测到温带鲈鱼和flat鱼的DNA,表明这些物种通过绕过大坝的鱼梯成功地向上游迁移。另一方面,在剩下的两个没有配备鱼梯的水坝的上游,没有检测到这两个物种的DNA。阿育是三个目标物种中唯一的物种,该物种位于淀河源头的琵琶湖内陆。在温暖的月份中,在淡水区域的大多数地点都检测到了Ayu DNA;然而,在2月最冷的月份中,仅在琵琶湖南端的淀河最上端发现了eDNA。我们在此位点检测到的eDNA暗示它是从幼小的ayu那里度过的,他们在湖中度过了冬季。这些结果表明,本文介绍的eDNA分析可以准确跟踪河流中鱼类的季节性迁移,证明其与河流中的人为障碍相关联,可以作为鱼类栖息地连通性的指标。 eDNA的采样仅涉及将盛满水的水箱捞出;因此,这是一种简单,快速且具有成本效益的方法,可用于长期监测与河流屏障建设相关的栖息地连通性。 (C)2015 Elsevier Ltd.保留所有权利。

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