Environmental determinants of round goby invasion refuges at a river scale: implications for conservation of native biodiversity

IF 1.9 2区 农林科学 Q2 FISHERIES
Olivier Morissette, Cristina Charette, Matthew Windle, Abraham Francis, Annick Drouin, Jesica Goldsmit, Alison M. Derry
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Abstract

Introductions of exotic invasive species are a global disturbance for natural habitats. The severity of invasions can greatly vary from local to global scales, as observed in invasion refuges, exhibiting lower-than-expected invasion intensity. In this study, we analyzed the effects of water conductivity and wetland presence on the density of the round goby (Neogobius melanostomus) in a large-scale study (> 1300 sites), spanning a 400 km stretch of the St. Lawrence River (Canada). Our results showed that round goby density was null in sites with water conductivity under 100 µS/cm and increased toward a probable biological optimum at 300 µS/cm. The presence of wetlands appeared to also decrease round goby density along the conductivity continuum. Similarly, fish community diversity was maximal outside of the round goby water conductivity optimum. Hence, low water conductivity (<100 µS/cm), in interaction with the presence of wetlands, can provide a refuge for native aquatic species, establishing a simple risk assessment tool for managers. Our results also highlighted the high value of wetland conservation for conservation of native species biodiversity.
河流尺度上圆虾虎鱼入侵避难所的环境决定因素:对本地生物多样性保护的启示
外来入侵物种的引入是对自然生境的全球性干扰。从局部到全球范围,入侵的严重程度可能有很大差异,正如在入侵避难所所观察到的那样,入侵强度低于预期。在这项研究中,我们分析了水的电导率和湿地的存在对圆虾虎鱼(Neogobius melanostomus)密度的影响。1300处遗址),横跨400公里的圣劳伦斯河(加拿大)。我们的研究结果表明,在水电导率低于100µS/cm的区域,圆虾虎鱼的密度为零,在300µS/cm时,圆虾虎鱼的密度可能会增加。湿地的存在似乎也降低了圆虾虎鱼沿传导性连续体的密度。同样,圆形虾虎鱼外的鱼类群落多样性最大,水电导率最佳。因此,低水电导率(<100µS/cm)与湿地的存在相互作用,可以为本地水生物种提供避难所,为管理者建立一个简单的风险评估工具。湿地保护对保护本地物种生物多样性具有重要的价值。
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来源期刊
Canadian Journal of Fisheries and Aquatic Sciences
Canadian Journal of Fisheries and Aquatic Sciences 农林科学-海洋与淡水生物学
CiteScore
4.60
自引率
12.50%
发文量
148
审稿时长
6-16 weeks
期刊介绍: The Canadian Journal of Fisheries and Aquatic Sciences is the primary publishing vehicle for the multidisciplinary field of aquatic sciences. It publishes perspectives (syntheses, critiques, and re-evaluations), discussions (comments and replies), articles, and rapid communications, relating to current research on -omics, cells, organisms, populations, ecosystems, or processes that affect aquatic systems. The journal seeks to amplify, modify, question, or redirect accumulated knowledge in the field of fisheries and aquatic science.
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