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了解阻碍鱼类继续洄游的因素的影响;一种利用洄游鱼类的新方法。

Understanding the impact of barriers to onward migration; a novel approach using translocated fish.

作者信息

Jubb W M, Noble R A A, Dodd J R, Nunn A D, Lothian A J, Albright A J, Bubb D H, Lucas M C, Bolland J D

机构信息

Hull International Fisheries Institute, School of Natural Sciences, University of Hull, Hull, HU6 7RX, UK.

Hull International Fisheries Institute, School of Natural Sciences, University of Hull, Hull, HU6 7RX, UK.

出版信息

J Environ Manage. 2023 Jun 1;335:117488. doi: 10.1016/j.jenvman.2023.117488. Epub 2023 Feb 22.

Abstract

River catchments worldwide are heavily fragmented by anthropogenic barriers, reducing their longitudinal connectivity and contributing to the decline of migratory fish populations. Direct impacts of individual barriers on migratory fish are well-established, but barrier impacts on onward migration are poorly understood, despite their relevance to evidence-based, catchment-scale, management of threatened species. This study investigated the upstream spawning migration of 352 acoustic tagged river lamprey (Lampetra fluviatilis), translocated upstream of two key barriers (R2: n = 60 & 59; R3: n = 59 & 52) compared to a control group (R1: n = 61 & 59), across two contrasting (dry and wet, n = 180 and 172) years in the River Yorkshire Ouse, England, to reveal the impact of barriers on the onward migration of upstream migrating fish. Release further upstream increased the degree of catchment penetration, with median distance upstream of R1 56.1% and 68.6% greater for lamprey released at R2 and R3 respectively. Median delays at the two downstream-most main river barriers by the control group were 23.8 and 5.4 days (2018/19) and 9.3 and 11.4 days (2019/20). However, impacts of delay were only observed on the time to reach spawning habitat, time to reach final assumed spawning location and speed of movement in one upper catchment tributary during 2019/20 whilst they were only observed on time to reach spawning habitat during 2018/19 and on assumed spawning location distance during 2019/20 in the other. Ultimately, limited impacts of delay at barriers on onward fish migration post-passage were observed but median catchment penetration was increased with consecutive release upstream. This study demonstrated the importance of a true understanding of barrier impacts to inform catchment-wide planning, evidence vital for management worldwide. Although the findings of this study do support the use of trap and transport as a measure to remediate barrier impacts on migration, fish passage engineering improvements or barrier removal, at structures shown to be the most inhibiting to fish migration should be considered the best and most sustainable option to improve barrier passage.

摘要

全球的河流集水区因人为屏障而严重破碎化,降低了其纵向连通性,并导致洄游鱼类种群数量下降。单个屏障对洄游鱼类的直接影响已得到充分证实,但屏障对继续洄游的影响却知之甚少,尽管这与基于证据的、流域尺度的受威胁物种管理相关。本研究调查了352条声学标记的河七鳃鳗(Lampetra fluviatilis)向上游的产卵洄游情况,将其转移到两个关键屏障(R2:n = 60和59;R3:n = 59和52)的上游,并与对照组(R1:n = 61和59)进行比较,研究跨越了英国约克郡乌斯河两个截然不同的年份(干旱和湿润年份,n = 180和172),以揭示屏障对向上游洄游鱼类继续洄游的影响。在更上游释放增加了集水区的渗透程度,R2和R3处释放的七鳃鳗分别比R1处释放的七鳃鳗向上游的中位距离远56.1%和68.6%。对照组在最下游的两个主要河流屏障处的中位延迟分别为23.8天和5.4天(2018/19年)以及9.3天和11.4天(2019/20年)。然而,延迟影响仅在2019/20年期间在一个上游集水区支流中到达产卵栖息地的时间、到达最终假定产卵地点的时间和移动速度方面观察到,而在2018/19年期间仅在到达产卵栖息地的时间方面观察到延迟影响,在2019/20年期间仅在假定产卵地点距离方面观察到延迟影响。最终,观察到屏障处的延迟对鱼类通过后继续洄游的影响有限,但随着在上游连续释放,中位集水区渗透增加。本研究证明了真正了解屏障影响对于进行全流域规划的重要性,这是全球管理至关重要的证据。尽管本研究的结果确实支持使用诱捕和运输作为补救屏障对洄游影响的措施,但对于显示对鱼类洄游最具阻碍作用的结构,鱼类通道工程改进或屏障拆除应被视为改善屏障通过的最佳和最可持续选择。

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