对后工业时代城市沿海栖息地鱼类组合的时空 eDNA 分析

Q1 Agricultural and Biological Sciences
Alice Cunnington, Erika Neave, Peter Shum, Rupert Collins, Stefano Mariani
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引用次数: 0

摘要

城市沿海生境由于靠近人类住区和人类活动而受到严重干扰。然而,尽管城市化对沿海环境产生了负面影响,但工业结构也可以提供人工栖息地。这些数据通常很容易用于定期调查,包括用于环境DNA (eDNA)分析的水样,这是监测水生生态系统生物多样性的一种新兴和强大的工具。在这项研究中,我们利用eDNA元条形码研究了英国迪伊河和默西河口之间的城市沿海生境中鱼类种群的时空变化趋势,这两个河口在历史上是世界上受人类活动影响最严重的后工业海岸之一。在12个月的时间里,我们在两个地点进行了9次取水旅行:利物浦市中心的阿尔伯特码头和西柯比的海洋湖。利用Illumina测序对鱼靶Tele02-12S元条形码区产生的PCR扩增子进行分析。我们发现不同月份的鱼类群落组成发生了显著变化。鱼类群落在两个地点之间也存在显著差异,它们之间的时间变化模式差异很大。特定分类群(如欧洲鳗鱼、沙鲑、比目鱼和鲱鱼)的季节性出现/消失揭示了可能具有管理意义的重要生态和行为过程。结果还证实了先前关于“分子副捕获物”(非目标序列)在扩大我们对人类对自然环境影响的理解方面的重要性的发现。总的来说,我们的研究结果强调了eDNA监测作为一种无侵入性、可负担得起的、敏感的方法对鱼类群落时间趋势的常规监测的价值,促进了弹性城市沿海地区的管理,并认识到可以增加生物多样性的干预措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Temporal and Spatial eDNA Analysis of Fish Assemblages in Postindustrial, Urban Coastal Habitats

Temporal and Spatial eDNA Analysis of Fish Assemblages in Postindustrial, Urban Coastal Habitats

Urban coastal habitats experience substantial disturbances due to their proximity to human settlements and activities. Yet, despite the negative impact of urbanization on coastal environments, industrial structures can also provide artificial habitats. These are often easily accessible to regular surveys, including water sampling for environmental DNA (eDNA) analysis, an emerging and powerful tool for monitoring biodiversity in aquatic ecosystems. In this study, we utilized eDNA metabarcoding to investigate temporal and spatial trends in fish assemblages within urban coastal habitats between the Dee and Mersey estuaries (United Kingdom), historically one of the most anthropogenically impacted postindustrial coasts in the world. Over a 12-month period, we conducted nine water sampling trips at two locations: the Albert Docks in central Liverpool, and the Marine Lake in West Kirby. Illumina sequencing was used to analyze PCR amplicons generated using the fish-targeted Tele02-12S metabarcoding region. We found significant changes in fish community composition across the different months. Fish communities also significantly differed between the two sites, with the patterns of temporal changes varying substantially between them. Seasonal appearances/disappearances of specific taxa (e.g., European eel, sand smelt, flounder, and herring) shed light on important ecological and behavioral processes that may have management implications. Results also corroborate previous findings on the importance of “molecular bycatch” (nontarget sequences) in expanding our understanding of the anthropogenic influences on the natural environment. Overall, our findings emphasize the value of eDNA monitoring as a noninvasive, affordable, and sensitive approach for routine monitoring of temporal trends in fish assemblages, facilitating the stewardship of resilient urban coastal zones, and recognizing interventions that could increase biodiversity.

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来源期刊
Environmental DNA
Environmental DNA Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
11.00
自引率
0.00%
发文量
99
审稿时长
16 weeks
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