Spatiotemporal dynamics of microcystin contamination in fish across the Lake Chaohu basin under the Yangtze River ten-year fishing ban: Ecological and human health implications

IF 6.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Ecotoxicology and Environmental Safety Pub Date : 2025-05-01 Epub Date: 2025-04-12 DOI:10.1016/j.ecoenv.2025.118185
Shengpan Han , Wulai Xia , Jun He , Qianhui Wu , Wenli Xu , Jia Yu , Jun Chen , Ping Xie
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Abstract

Microcystins (MCs), produced by harmful cyanobacterial blooms, pose a threat to aquatic ecosystems and public health in the Yangtze River basin, including Lake Chaohu, which implemented a ten-year fishing ban in 2021 for ecological restoration. This study provides the first basin-wide assessment of MC contamination in fish muscle tissues from Lake Chaohu and its major tributaries during the ban's initial phase (2022–2023), with comparisons to pre-ban data. Using UHPLC-MS/MS, we quantified MC-LR and MC-RR in fish from four trophic levels (planktivorous, omnivorous, herbivorous, and carnivorous). Results revealed that MC-RR was the predominant variant, and planktivorous fish exhibited the highest MC levels, followed by omnivorous, herbivorous, and carnivorous species, reflecting dynamics of trophic transfer. Overall, fish MC concentrations were significantly lower during the ban compared to pre-ban levels, demonstrating positive initial effects. Seasonal analysis revealed higher MC levels in warmer seasons, but detectable MCs persisted during cold seasons, reflecting ongoing contamination. Spatially, while fish in the lake exhibited higher MC concentrations, contamination was also detected in riverine fish, highlighting the basin-wide spread. Despite a lower overall health risk from fish consumption relative to the pre-ban period, high consumption of planktivorous species, especially during warm seasons and in lake regions, may still pose potential health risks. Additionally, MCs likely pose ecological risks to fish populations. These findings provide a crucial baseline for evaluating the long-term effectiveness of the fishing ban and underscore the need for integrated watershed management to safeguard both ecological and public health.
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长江十年禁渔期巢湖流域鱼类微囊藻毒素污染的时空动态变化:对生态和人类健康的影响
有害藻华产生的微囊藻毒素对包括巢湖在内的长江流域的水生生态系统和公众健康构成威胁,巢湖于2021年实施了为期10年的禁渔令,以恢复生态。本研究首次对禁令初始阶段(2022-2023年)巢湖及其主要支流鱼类肌肉组织中的MC污染进行了全流域评估,并与禁令前的数据进行了比较。采用UHPLC-MS/MS定量分析了浮游、杂食性、草食性和肉食性4个营养水平鱼类的MC-LR和MC-RR。结果表明,MC- rr是主要变异,浮游鱼类的MC水平最高,其次是杂食性、草食性和肉食性,反映了营养转移的动态。总体而言,与禁令前的水平相比,禁令期间鱼类MC浓度显著降低,显示出积极的初步效果。季节分析显示,温暖季节的MC水平较高,但在寒冷季节可检测到的MC持续存在,反映了持续的污染。从空间上看,虽然湖中鱼类的MC浓度较高,但河流鱼类也存在污染,突出了整个流域的分布。尽管与禁捕前相比,鱼类消费的总体健康风险较低,但浮游生物物种的大量消费,特别是在温暖季节和湖泊地区,仍可能构成潜在的健康风险。此外,微生物可能对鱼类种群构成生态风险。这些调查结果为评估禁止捕鱼的长期效力提供了一个重要的基线,并强调需要对流域进行综合管理,以保障生态和公众健康。
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来源期刊
CiteScore
12.10
自引率
5.90%
发文量
1234
审稿时长
88 days
期刊介绍: Ecotoxicology and Environmental Safety is a multi-disciplinary journal that focuses on understanding the exposure and effects of environmental contamination on organisms including human health. The scope of the journal covers three main themes. The topics within these themes, indicated below, include (but are not limited to) the following: Ecotoxicology、Environmental Chemistry、Environmental Safety etc.
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