Evaluating the Efficacy of Approaches to Control Invasive Populations: A Conceptual Model Development for the Signal Crayfish

IF 1.7 Q3 ECOLOGY
Ecologies Pub Date : 2022-05-05 DOI:10.3390/ecologies3020008
Sandra Hudina, I. Maguire, Paula Dragičević, N. Galic
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引用次数: 1

Abstract

Invasive crayfish are among the major threats to freshwater ecosystems, with the signal crayfish, Pacifastacus leniusculus, being one of the most successful crayfish invaders in Europe. Approaches to invasive crayfish control range from manual and physical to biological and biocidal control methods. However, all of these approaches have their drawbacks and have limited efficacy. Among traditional approaches with minimal impacts on environment and non-target species, manual control via trapping is the most frequently applied. More innovative approaches comprise, among others, usage of sterile male release technique, whose efficacy in the field is yet to be fully tested, especially how it combines with more traditional approaches. A good alternative to costly and logistically challenging field comparisons of these approaches and their combinations is population modeling. Population models can integrate all relevant species-specific biological and ecological information and can be applied to identify management scenarios of highest impact on invasive crayfish abundances. In this study, we developed a conceptual population model of the invasive P. leniusculus following the Pop-GUIDE framework. In addition, we expanded on the framework to increase its applicability to other fields beyond environmental risk assessment. Finally, we discuss potential application of the model and its future use as a management tool.
评估入侵种群控制方法的有效性:信号小龙虾概念模型的发展
入侵的小龙虾是淡水生态系统的主要威胁之一,信号小龙虾太平洋小龙虾是欧洲最成功的小龙虾入侵者之一。入侵小龙虾的控制方法包括人工和物理控制方法以及生物和杀生物剂控制方法。然而,所有这些方法都有其缺点,并且效果有限。在对环境和非目标物种影响最小的传统方法中,最常用的是通过诱捕进行人工控制。更创新的方法包括,除其他外,使用不育雄性释放技术,其在实地的效力尚未得到充分测试,特别是如何与更传统的方法相结合。对这些方法及其组合进行昂贵且具有逻辑性挑战性的现场比较的一个很好的替代方法是人口建模。种群模型可以整合所有相关的物种特异性生物和生态信息,并可用于确定对入侵小龙虾丰度影响最大的管理方案。在本研究中,我们建立了一个基于Pop-GUIDE框架的概念种群模型。此外,我们对该框架进行了扩展,使其在环境风险评估以外的其他领域具有更大的适用性。最后,我们讨论了该模型的潜在应用及其作为管理工具的未来用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.80
自引率
0.00%
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