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Using osmotic shock to control invasive aquatic species

机译:使用渗透冲击来控制侵入水生物种

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Coastal estuaries are especially vulnerable to the arrival and establishment of invasive aquatic species (IAS) as they are often the receiving locations of ship-based introductions. Rapid response tools, such as mechanical or chemical treatments to capture, remove, and contain of IAS, are needed to prevent subsequent spread into adjacent marine and freshwater systems. Abrupt salinity change, created when infrastructure in estuaries situated at the proximity of river mouths is operated, offers a novel, low-cost and environmentally friendly method for potentially controlling IAS. We investigated the use of osmotic shock to control the invasive brackish water clam Rangia cuneata that is quickly spreading through Europe. Clams were exposed in the laboratory to eight salinity concentrations ranging from 0.5 to 32.0‰ and monitored for 60 days. Saline shock, but not freshwater shock, could control R. cuneata. Salinities >26%o killed 95% R. cuneata in two weeks. All specimens exposed to full strength seawater (32‰) were killed within 30 days. At lower salinities, clams collected from the most freshwater locality (1.2%o) showed lower mortality than clams from the most saline site (3.1‰). Furthermore, even modest increases in salinity during spawning periods of R. cuneata may prevent recruitment. Given the vulnerability of coastal estuaries to introduction of IAS, saline flushing presents a novel and effective management tool for many species.
机译:沿海河口尤其容易受到侵入水生物种(IAS)的到来和建立,因为它们通常是船舶介绍的接收地点。需要快速响应工具,例如捕获,去除和含有IAS的机械或化学处理,以防止随后的涂抹到相邻的海洋和淡水系统中。突然盐度变化,当河口附近的河口基础设施进行基础设施时,为潜在控制IAS提供了一种新颖的,低成本和环保的方法。我们调查了使用渗透震动来控制迅速通过欧洲迅速蔓延的侵入性咸水蛤蜊rangia cuneata。蛤蜊在实验室暴露至八个盐度浓度,范围为0.5至32.0‰并监测60天。盐水休克,但不是淡水休克,可以控制R. CUNEATA。盐度> 26%o在两周内造成95%R. CUNEATA。暴露于全强力海水(32次)的所有标本在30天内丧生。在较低的盐度下,从最淡水局部地区收集的蛤蜊(1.2%O)表现出比来自最盐渍位点的蛤蜊较低的死亡率(3.1‰)。此外,在R. CUNEATA的产卵期间盐度的盐度甚至可能导致招生。鉴于沿海河口的脆弱性引入IAS,盐水冲洗为许多物种提出了一种新颖且有效的管理工具。

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