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The effectiveness of non-native fish removal techniques in freshwater ecosystems: a systematic review

机译:淡水生态系统中非原生鱼去除技术的有效性:系统评价

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In aquatic systems, biological invasions can result in adverse ecological effects. Management techniques available for non-native fish removal programs (including eradication and population size control) vary widely, but include chemicals, harvest regimes, physical removal, or biological control. For management agencies, deciding on what non-native fish removal program to use has been challenging because there is little reliable information about the relative effectiveness of these measures in controlling or eradicating non-native fish. We conducted a systematic review, including a critical appraisal of study validity, to assess the effectiveness of different non-native fish removal methods and to identify the factors that influence the overall success rate of each type of method. We found 95 relevant studies, generating 158 data sets. The evidence base was dominated by poorly documented studies with inadequate experimental designs (76% of removal projects). When the management goal was non-native fish eradication, chemical treatments were relatively successful (antimycin 89%; rotenone 75%) compared with other interventions. Electrofishing and passive removal measure studies indicated successful eradication was possible (58% each) but required intensive effort and multiple treatments over a number of years. Of these studies with sufficient information, electrofishing had the highest success for population size control (56% of data sets). Overall, inadequate data quality and completeness severely limited our ability to make strong conclusions about the relationships between non-native fish abundance and different methods of eradication and population control and the factors influencing the overall success rate of each method. Our review highlights that there is considerable scope for improving our evaluations of non-native fish removal methods. It is recommended that programs should have explicitly stated objectives, better data reporting, and study designs that (when possible and appropriate) incorporate replicated and controlled investigations with rigorous, long-term quantitative monitoring. Future research on the effectiveness of non-native fish removal methods should focus on: (i) the efficacy of existing or potentially new removal measures in larger, more complex environments; (ii) a broader range of removal measures in general; and (iii) phenotypic characteristics of individual fish within a population that fail to be eradicated or controlled.
机译:在水生系统中,生物侵犯可能导致生态效应不利。可用于非本地鱼类去除计划(包括根除和人口大小控制)的管理技术各不均匀,但包括化学品,收获制度,物理去除或生物控制。对于管理机构来说,决定使用的非本地鱼类移除计划是具有挑战性的,因为有关这些措施控制或消除非本土鱼类的相对有效性的可靠信息。我们进行了系统审查,包括对研究有效性的批判性评估,评估不同非本地鱼类去除方法的有效性,并确定影响每种方法的总成功率的因素。我们发现95项相关研究,产生158个数据集。证据基础是以经济实验设计不足的缺乏研究的缺乏研究(76%的拆除项目)。当管理目标是非本土鱼类根除时,化学处理相对成功(抗霉素89%; Rotenone 75%)与其他干预措施相比。电拍和被动移除措施研究表明,可能的删除成功(每项58%),但需要密集的努力和多年来多年的治疗。在这些具有足够信息的研究中,电拍摄对人口大小控制(56%的数据集)具有最高成功。总体而言,数据质量不足和完整性严重限制了我们对非本土鱼类丰富和不同消除和人口控制方法之间的关系的强烈结论以及影响每种方法总成功率的因素的能力。我们的评论强调,有很大的范围,以改善我们对非本地鱼类清除方法的评估。建议课程应明确说明目标,更好的数据报告,以及研究设计(当可能且适当)的研究设计,并将复制和受控调查与严格,长期的定量监测合并。未来对非本土鱼类清除方法的有效性的研究应该专注于:(i)现有或潜在的新的去除措施在更大,更复杂的环境中的疗效; (ii)一般的更广泛的清除措施; (iii)未能灭绝或控制的人口中单个鱼的表型特征。

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