地中海中西部三个生态区域珊瑚悬崖的结构和多样性模式

IF 4.6 2区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION
Edoardo Casoli, Stefano Moro, Matteo Falasca, Monica Montefalcone, Lucia Rizzo, Núria Teixidó, Luigi Piazzi, Caterina Longo, Maria Mercurio, Paola Gennaro, Enrico Cecchi, Marina Penna, Maria Cristina Gambi, Alice Mirasole, Enric Ballesteros, Marco Andrello, Daniele Ventura, Gianluca Mancini, Andrea Belluscio, Simonetta Fraschetti, Giandomenico Ardizzone, Giovanna Jona-Lasinio
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引用次数: 0

摘要

目的就地中海盆地的空间分布而言,原生珊瑚礁是主要的海洋生物构造。根据海底的表面和地形特征,可以区分出两种不同的珊瑚礁形态:形成垂直斜坡的悬崖和位于缓陡或水平海底的堤岸。尽管这些形态对监测和保护工作非常重要,但有关生物地理形态变化的观察却很少。在此,我们旨在评估这些悬崖在不同生态区域的组成和结构差异,并估计非生物环境特征、地理位置和连通性在形成多样性模式方面的相对作用。方法我们通过潜水员采集的照片样本评估了珊瑚礁的组成和结构。利用广义加法(GAM)和条件自回归(CAR)模型,将α和β多样性的模式与 9 个非生物环境变量、纬度和纵向梯度以及连通性测量值联系起来。围绕中间值分群(PAM)聚类方法成功地划分出七个不同的聚类,这些聚类在所研究的生态区域内分布不均匀。东部和北部地点的α多样性随磷酸盐浓度的增加而增加,而随温度、叶绿素和硝酸盐浓度的增加而减少。站点水平的 β 多样性随温度升高而增加,但受北向流速和叶绿素浓度的负面影响。主要结论崖壁土著生物的多样性既与栖息地的物理化学特征有关,也与栖息地之间的连通性有关。然而,我们的研究结果表明,小尺度的非生物和生物过程可能有助于解释所观察到的变异性。这些发现将极大地促进对这一地中海特有生态系统的监测和保护工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structure and diversity patterns of coralligenous cliffs across three ecoregions in the Central-Western Mediterranean Sea

Structure and diversity patterns of coralligenous cliffs across three ecoregions in the Central-Western Mediterranean Sea

Aim

Coralligenous reefs are the main marine bioconstructions in terms of spatial distribution within the Mediterranean basin. Two distinct reef morphologies can be distinguished based on the surface and topographical features of the seafloor: cliffs developing vertical slopes and banks found on gently steep or horizontal bottoms. Despite their importance for monitoring and conservation efforts, observations regarding the variability of biogeographical patterns are scarce. Here, we aimed to assess the differences in the composition and structure of these cliffs across ecoregions and estimate the relative role of abiotic environmental features, geographic location, and connectivity in shaping diversity patterns.

Location

The study was carried out in the Central-Western Mediterranean Sea. Samples were collected at 65 sites across the Algero-Provençal Basin, the Ionian Sea and the Tyrrhenian Sea.

Methods

We assessed the composition and structure of coralligenous cliffs through photographic samplings collected by scuba divers. Patterns in α- and β-diversity were associated with 9 abiotic environmental variables, latitudinal and longitudinal gradients, and connectivity measures using Generalized Additive (GAM) and Conditional Autoregressive (CAR) models.

Results

Coralligenous cliffs were primarily composed of algae and displayed a high degree of variability. The Partition Around Medoids (PAM) clustering method successfully delineated seven distinct clusters with a non-uniform distribution within the studied ecoregions. The α-diversity increased in eastern and northern sites and with phosphate concentration, while decreased with temperature, chlorophyll and nitrates concentration. β-diversity at the site level increased with temperature, while it was negatively affected by northward current speed and chlorophyll concentration. Moveover, β-diversity increased within connected sites.

Main Conclusions

Coralligenous cliff diversity responds both to the physico-chemical features of the habitat and between-habitats connectivity. However, our findings suggest that small-scale abiotic and biotic processes could contribute to explaining the variability observed. These findings can significantly enhance the monitoring and conservation efforts of this Mediterranean endemic ecosystem.

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来源期刊
Diversity and Distributions
Diversity and Distributions 环境科学-生态学
CiteScore
8.90
自引率
4.30%
发文量
195
审稿时长
8-16 weeks
期刊介绍: Diversity and Distributions is a journal of conservation biogeography. We publish papers that deal with the application of biogeographical principles, theories, and analyses (being those concerned with the distributional dynamics of taxa and assemblages) to problems concerning the conservation of biodiversity. We no longer consider papers the sole aim of which is to describe or analyze patterns of biodiversity or to elucidate processes that generate biodiversity.
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