Establishment risk of invasive golden mussel in a water diversion project: An assessment framework

IF 14 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Science and Ecotechnology Pub Date : 2023-07-24 DOI:10.1016/j.ese.2023.100305
Yao Yang , Mengzhen Xu , Xingyu Chen , Jiahao Zhang , Shulei Wang , Jianying Zhu , Xudong Fu
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Abstract

Inter-basin water diversion projects have led to accelerated colonization of aquatic organisms, including the freshwater golden mussel (Limnoperna fortunei), exacerbating global biofouling concerns. While the influence of environmental factors on the mussel's invasion and biofouling impact has been studied, quantitative correlations and underlying mechanisms remain unclear, particularly in large-scale inter-basin water diversion projects with diverse hydrodynamic and environmental conditions. Here, we examine the comprehensive impact of environmental variables on the establishment risk of the golden mussel in China's 1432-km-long Middle Route of the South-to-North Water Diversion Project. Logistic regression and multiclass classification models were used to investigate the environmental influence on the occurrence probability and reproductive density of the golden mussel. Total nitrogen, ammonia nitrogen, water temperature, pH, and velocity were identified as crucial environmental variables affecting the biofouling risk in the project. Logistic regression analysis revealed a negative correlation between the occurrence probability of all larval stages and levels of total nitrogen and ammonia nitrogen. The multiclass classification model showed that elevated levels of total nitrogen hindered mussel reproduction, while optimal water temperature enhanced their reproductive capacity. Appropriate velocity and pH levels were crucial in maintaining moderate larval density. This research presents a quantitative analytical framework for assessing establishment risks associated with invasive mussels, and the framework is expected to enhance invasion management and mitigate biofouling issues in water diversion projects worldwide.

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引水工程中入侵金贻贝的建立风险:一个评估框架
跨流域调水项目加速了水生生物的定居,包括淡水金贻贝(Limnoperna fortunei),加剧了全球对生物淤积的担忧。虽然已经研究了环境因素对贻贝入侵和生物淤积影响的影响,但数量相关性和潜在机制仍不清楚,特别是在具有不同水动力和环境条件的大型跨流域引水项目中。在这里,我们考察了环境变量对中国1432公里长的南水北调中线工程金贻贝养殖风险的综合影响。采用Logistic回归和多类分类模型研究了环境对金贻贝发生概率和繁殖密度的影响。总氮、氨氮、水温、pH值和流速被确定为影响项目中生物淤积风险的关键环境变量。Logistic回归分析显示,幼虫各阶段的发生概率与总氮和氨氮水平呈负相关。多类分类模型表明,总氮水平的升高阻碍了贻贝的繁殖,而最佳水温提高了它们的繁殖能力。适当的速度和pH水平对于维持适度的幼虫密度至关重要。这项研究提供了一个定量分析框架,用于评估与入侵贻贝相关的建立风险,该框架有望加强入侵管理,缓解全球引水项目中的生物淤积问题。
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来源期刊
CiteScore
20.40
自引率
6.30%
发文量
11
审稿时长
18 days
期刊介绍: Environmental Science & Ecotechnology (ESE) is an international, open-access journal publishing original research in environmental science, engineering, ecotechnology, and related fields. Authors publishing in ESE can immediately, permanently, and freely share their work. They have license options and retain copyright. Published by Elsevier, ESE is co-organized by the Chinese Society for Environmental Sciences, Harbin Institute of Technology, and the Chinese Research Academy of Environmental Sciences, under the supervision of the China Association for Science and Technology.
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