入侵藻类巨鸟如何影响沿海生物多样性?来自大加那利岛(大西洋东北部)沿海鱼类群落的见解

IF 2.1 4区 地球科学 Q2 MARINE & FRESHWATER BIOLOGY
Xavier Bachot, Rodrigo Riera
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引用次数: 0

摘要

生物入侵对全球生物多样性和生态系统功能构成重大威胁。入侵物种的引入会导致生态系统同质化,改变群落动态,并对本地物种和栖息地产生负面影响。okamurrugulopteryx okamurae是一种原产于西北太平洋的棕色海藻,它已迅速入侵欧洲的海洋生态系统,改变了沿海栖息地。本研究考察了冈村r.o okamurae对大加那利岛不同区域鱼类群落的影响,特别关注了入侵梯度。结果表明,各样地鱼类的丰度和丰富度存在显著差异,在冈村田鼠入侵严重的地区,鱼类的多样性呈下降趋势,机会性物种的流行率较高。入侵梯度对群落结构的影响大于典型的边缘效应,表明冈村田鼠的广泛传播导致了生境的同质化。持续监测和适应性管理策略对于充分了解和减轻冈村田径虫对大加那利岛海洋生物多样性的影响至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How the invasive algae Rugulopteryx okamurae affect coastal biodiversity? Insights from coastal fish communities of gran Canaria (NE Atlantic Ocean)
Biological invasions present significant threats to global biodiversity and ecosystem functioning. The introduction of invasive species can lead to ecosystem homogenization, altering community dynamics and negatively impacting native species and habitats. Rugulopteryx okamurae, a brown seaweed native to the Northwest Pacific, has rapidly invaded marine ecosystems in Europe, transforming coastal habitats. This study examines the impact of R. okamurae on fish communities across different zones of Gran Canaria, with a particular focus on the invasion gradient. We observed significant variations in fish species abundance and richness across sites, with a noticeable trend towards reduced diversity and a higher prevalence of opportunistic species in areas heavily invaded by R. okamurae. The invasion gradient, rather than typical edge effects, appeared to play a more substantial role in shaping community structure, suggesting that the pervasive spread of R. okamurae leads to habitat homogenization. Ongoing monitoring and adaptive management strategies are crucial to fully understand and mitigate the impacts of R. okamurae on marine biodiversity in Gran Canaria.
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来源期刊
Journal of Sea Research
Journal of Sea Research 地学-海洋学
CiteScore
3.20
自引率
5.00%
发文量
86
审稿时长
6-12 weeks
期刊介绍: The Journal of Sea Research is an international and multidisciplinary periodical on marine research, with an emphasis on the functioning of marine ecosystems in coastal and shelf seas, including intertidal, estuarine and brackish environments. As several subdisciplines add to this aim, manuscripts are welcome from the fields of marine biology, marine chemistry, marine sedimentology and physical oceanography, provided they add to the understanding of ecosystem processes.
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