沙质海底的物种丰富度有限,但对区域沿海鱼类 β 多样性的贡献很大:地中海中部案例研究

IF 3 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Marine environmental research Pub Date : 2024-08-19 DOI:10.1016/j.marenvres.2024.106701
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引用次数: 0

摘要

全球海洋生物多样性的丧失损害了整个生态系统及其稳定性。可靠的生物多样性估算是制定政策和管理策略的关键,需要考虑不同生境的贡献,包括那些生物多样性估算分散或完全缺失的生境。这项研究评估了与三种主要沿岸生境(岩石底层、海芋草甸和沙质底层)有关的鱼类多 样性,以及它们在形成整体沿岸鱼类多样性中的作用,同时还评估了影响沿岸地区鱼类多 样性模式的潜在环境和人为因素。通过水下目测普查,我们对分布在这三种生境的 62 个地点进行了取样,共 496 个重复。我们评估了各栖息地对 β 多样性的贡献,分为地方对 β 多样性的贡献(LCBD)和物种对 β 多样性的贡献(SCBD),前者是各栖息地对 β 多样性贡献的比较指标,后者衡量各物种对 β 多样性影响的相对重要性。最后,我们模拟了物种多样性与潜在环境和人为驱动因素的关系。总体而言,共记录了 72 个物种,岩石底层的物种丰富度最高(56 个物种,16 个为该生境独有),其次是大洋棕(38 个物种,0 个为该生境独有)和沙底(32 个物种,14 个为该生境独有)。沙底生物群对 LCBD 的贡献率明显高于大洋草甸和岩底,在对 SCBD 贡献率最高的 5 个物种中,有 2 个只与沙底有关。最后,海表温度、海表盐度和栖息地也是物种丰富度的重要预测因素。我们的研究结果除了强调地中海沿海鱼类多样性的环境驱动因素外,还揭示了沙底在促进沿海鱼类整体多样性方面的潜在关键作用,并可为保护规划提供信息。
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Sandy bottoms have limited species richness but substantially contribute to the regional coastal fish β-diversity: A case study of the Central Mediterranean Sea

Global marine biodiversity loss impairs entire ecosystems and their stability. Robust biodiversity estimates are key to inform policies and management strategies, and need to consider the contribution of diverse habitats, including those for which estimates of biodiversity are scattered or totally absent. This study assessed the fish diversity associated with three main coastal habitats (rocky bottoms, Posidonia oceanica meadows, sandy bottoms), and their role in shaping the overall coastal fish diversity, also in relation to potential environmental and anthropogenic drivers affecting patterns of fish diversity in coastal areas. Using underwater visual census, we sampled 62 sites distributed on the three habitats, for a total of 496 replicates. We assessed the contribution of each habitat to β-diversity, divided into Local Contribution to β-diversity (LCBD), a comparative indicator of the contributions to β-diversity of each habitat, and Species Contribution to β-diversity (SCBD), which measures the relative importance of each species in affecting β-diversity. Finally, we modelled species diversity in relation to potential environmental and anthropogenic drivers. Overall, 72 species were recorded, with the highest species richness observed on rocky bottoms (56 species, 16 unique to this habitat), followed by P. oceanica (38 species, 0 unique) and sandy bottoms (32 species, 14 unique). Sandy bottom assemblages had a significantly higher contribution to LCBD than P. oceanica meadows and rocky bottoms, and two of the five species with the highest contribution to SCBD are exclusively associated with sandy bottoms. Finally, sea surface temperature, sea surface salinity, and habitat were highlighted as significant predictors of species richness. Our findings, aside from highlighting the environmental drivers of coastal fish diversity in the Mediterranean Sea, unravel the potential key role of sandy bottoms in contributing to overall coastal fish diversity and can inform conservation planning.

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来源期刊
Marine environmental research
Marine environmental research 环境科学-毒理学
CiteScore
5.90
自引率
3.00%
发文量
217
审稿时长
46 days
期刊介绍: Marine Environmental Research publishes original research papers on chemical, physical, and biological interactions in the oceans and coastal waters. The journal serves as a forum for new information on biology, chemistry, and toxicology and syntheses that advance understanding of marine environmental processes. Submission of multidisciplinary studies is encouraged. Studies that utilize experimental approaches to clarify the roles of anthropogenic and natural causes of changes in marine ecosystems are especially welcome, as are those studies that represent new developments of a theoretical or conceptual aspect of marine science. All papers published in this journal are reviewed by qualified peers prior to acceptance and publication. Examples of topics considered to be appropriate for the journal include, but are not limited to, the following: – The extent, persistence, and consequences of change and the recovery from such change in natural marine systems – The biochemical, physiological, and ecological consequences of contaminants to marine organisms and ecosystems – The biogeochemistry of naturally occurring and anthropogenic substances – Models that describe and predict the above processes – Monitoring studies, to the extent that their results provide new information on functional processes – Methodological papers describing improved quantitative techniques for the marine sciences.
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