Horizon scanning for potentially invasive non-native marine species to inform trans-boundary conservation management – Example of the northern Gulf of Mexico

IF 2.2 3区 环境科学与生态学 Q2 ECOLOGY
Kathryn A. O’Shaughnessy, Lorenzo Vilizzi, Wesley Daniel, Monica E. McGarrity, Hanna Bauer, Leslie Hartman, Stephen Geiger, Paul Sammarco, Steve Kolian, Scott Porter, Jessica Dutton, Matthew R. McClure, Michael Norberg, Alex Fogg, Timothy J. Lyons, Justin Procopio, Lauren Bantista, Wayne Bennett, Mary Wicksten, David Reeves, Julie Lively, Elizabeth Robinson, Jorge Brenner, Joseph Goy, Ashley Morgan-Olvera, Anna L. E. Yunnie, Gordon H. Copp
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Abstract

Prevention of non-native species introductions and establishment is essential to avoid adverse impacts of invasive species in marine environments. To identify potential new invasive species and inform non-native species management options for the northern Gulf of Mexico (Alabama, Mississippi, Louisiana, Texas), 138 marine species were risk screened for current and future climate conditions using the Aquatic Species Invasiveness Screening Kit. Species were risk-ranked as low, medium, high, and very high risk based on separate (calibrated) thresholds for fishes, tunicates, and invertebrates. In the basic screening, 15 fishes, two tunicates, and 26 invertebrates were classified as high or very high risk under current climate conditions. Whereas, under future climate conditions, 16 fishes, three tunicates, and 33 invertebrates were classified as high or very high risk. Very high risk species included: California scorpionfish Scorpaena guttata , red scorpionfish Scorpaena scrofa , purple whelk Rapana venosa , and Santo Domingo false mussel Mytilopsis sallei under both current and future climates, with weedy scorpionfish Rhinopias frondosa , Papuan scorpionfish Scorpaenopsis papuensis , daggertooth pike conger Muraenesox cinereus , yellowfin scorpionfish Scorpaenopsis neglecta , tassled scorpionfish Scorpaenopsis oxycephalus , brush-clawed shore crab Hemigrapsus takanoi , honeycomb oyster Hyotissa hyotis , carinate rock shell Indothais lacera , and Asian green mussel Perna viridis under climate change conditions only. This study provides evidence to inform trans-boundary management plans across the five Gulf of Mexico states to prevent, detect, and respond rapidly to new species arrivals.
对潜在入侵的非本地海洋物种进行水平扫描,为跨界保护管理提供信息——以墨西哥湾北部为例
防止外来物种的引入和建立是避免外来入侵物种对海洋环境产生不利影响的必要措施。为了确定潜在的新入侵物种,并为墨西哥湾北部(阿拉巴马州、密西西比州、路易斯安那州和德克萨斯州)的非本地物种管理提供信息,使用水生物种入侵筛选试剂盒对138种海洋物种进行了当前和未来气候条件下的风险筛选。根据鱼类、被囊动物和无脊椎动物的单独(校准)阈值,将物种的风险分为低、中、高和极高风险。在基本筛选中,15种鱼类、2种被囊动物和26种无脊椎动物在当前气候条件下被列为高风险或极高风险。而在未来气候条件下,16种鱼类、3种被囊动物和33种无脊椎动物被列为高风险或极高风险。高危物种包括:加利福尼亚蝎子、红蝎子、紫海螺、圣多明各假贻贝,以及现在和未来气候下的斑纹蝎子、巴布亚蝎子、剑齿梭子鱼、黄鳍蝎子、虎尾蝎子、虎尾蝎子、刷爪岸蟹、仅在气候变化条件下,蜂窝牡蛎Hyotissa hyotis,石贝壳Indothais lacera和亚洲绿贻贝Perna viridis。这项研究为墨西哥湾五个州的跨界管理计划提供了证据,以预防、检测和快速应对新物种的到来。
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来源期刊
Aquatic Invasions
Aquatic Invasions ECOLOGY-MARINE & FRESHWATER BIOLOGY
CiteScore
4.30
自引率
0.00%
发文量
20
审稿时长
6-12 weeks
期刊介绍: Aquatic Invasions is an open access, peer-reviewed international journal focusing on academic research of biological invasions in both inland and coastal water ecosystems from around the world. It was established in 2006 as initiative of the International Society of Limnology (SIL) Working Group on Aquatic Invasive Species (WGAIS) with start-up funding from the European Commission Sixth Framework Programme for Research and Technological Development Integrated Project ALARM. Aquatic Invasions is an official journal of International Association for Open Knowledge on Invasive Alien Species (INVASIVESNET). Aquatic Invasions provides a forum for professionals involved in research of aquatic non-native species, including a focus on the following: • Patterns of non-native species dispersal, including range extensions with global change • Trends in new introductions and establishment of non-native species • Population dynamics of non-native species • Ecological and evolutionary impacts of non-native species • Behaviour of invasive and associated native species in invaded areas • Prediction of new invasions • Advances in non-native species identification and taxonomy
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