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Cold as Ice: a novel eradication and control method for invasive Asian clam, Corbicula fluminea , using pelleted dry ice

机译:像冰一样冷:使用颗粒状干冰消灭入侵亚洲蛤CorCorbicula fluminea的新方法

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Eradication and control measures for invasive aquatic organisms require innovative methods that maximise efficacy whilst minimising environmental damage. Such methods should also ideally utilise readily available materials and have a relatively straightforward field application. The Asian clam, Corbicula fluminea (Müller, 1774) is a high impact freshwater invader that can dominate macroinvertebrate communities and physically alter benthic habitats. Moreover, C. fluminea has shown a high degree of physiological and ecological plasticity, and has displayed a remarkable capacity for human-mediated passive dispersal. Globally, despite repeated efforts to mitigate spread and implement substantial population control measures, C. fluminea continues to invade and spread. Accordingly, effective population eradication and control measures are urgently required. Here, we examine the efficacy of commercially available dry ice (DI) pellets (i.e. solid COSUB 2 /SUB pellets at ?78 °C) to kill C. fluminea , when applied both directly (water absent) and indirectly (clams submerged). Experiment 1 revealed the ability of 9 mm DI pellets to induce substantial C. fluminea mortality, with a direct application of 300 g DI at 5 min exposure inducing 100% clam mortality. In experiments 2 and 3, DI pellets of 9 mm induced higher clam mortality than 3 mm pellets, DI slices and mixed DI pellet sizes (3 and 9 mm) at simulated clam densities of 1179 and 3930 individuals mSUP -2 /SUP, especially when clams were submerged. Experiments 4 and 5 showed that DI application was highly effective even with clams that were covered in gravel or mud, due to the freezing of their surrounding substrate. Accordingly, these results demonstrate that DI can potentially be used for effective, rapid response control and eradication of C. fluminea populations. Whilst promising, our laboratory results require scaling up to field application and examination of the effects of water current, substrate, increased water depth, and greater C. fluminea population densities.
机译:根除和控制侵入性水生生物的措施需要创新的方法,以最大限度地发挥功效,同时将对环境的破坏降至最低。这样的方法在理想情况下还应该利用容易获得的材料并且具有相对简单的现场应用。亚洲蛤Cor(Corbicula fluminea,Müller,1774年)是一种高影响力的淡水入侵者,可以控制大型无脊椎动物群落并实际改变底栖生境。此外,C。fluminea表现出高度的生理和生态可塑性,并且对人类介导的被动扩散显示出显着的能力。在全球范围内,尽管为减少传播和采取了实质性的人口控制措施做出了反复努力,但流感嗜血杆菌仍继续入侵和传播。因此,迫切需要有效的人口消灭和控制措施。在这里,我们研究了直接(无水)和间接施用时,市售干冰(DI)颗粒(即在78°C下的固态CO 2 颗粒)杀死氟尿杆菌的功效。 (淹没了)。实验1揭示了9 mm DI团粒可诱导大量C. fluminea死亡的能力,在5分钟的暴露时间直接施用300 g DI可诱导100%蛤类死亡率。在实验2和3中,在1179和3930个个体的模拟蛤密度m -2 下,9 mm的DI团块比3 mm的团块,DI切片和混合的DI团块尺寸(3和9 m​​m)引起的蛤死亡率更高。 SUP>,尤其是当蛤被淹没时。实验4和5表明,由于蛤surrounding周围的底物冻结,即使用砾石或泥覆盖的蛤DI,DI施用也非常有效。因此,这些结果表明,DI可以潜在地用于有效,快速的反应控制和消灭C. fluminea种群。尽管前景良好,但我们的实验室结果仍需要扩大规模,以扩大现场应用范围,并检查水流,基质,增加的水深和更大的C. fluminea种群密度的影响。

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