Analysing the contribution of intermittent rivers to beta diversity can improve freshwater conservation in Mediterranean rivers

IF 2 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Aquatic Sciences Pub Date : 2024-04-25 DOI:10.1007/s00027-024-01074-x
Maria Soria, Núria Cid, Jean Ortega, Luis Mauricio Bini, Raúl Acosta, Cayetano Gutiérrez-Cánovas, Pablo Rodríguez-Lozano, Pau Fortuño, Dolors Vinyoles, Francesc Gallart, Narcís Prat, Núria Bonada
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Abstract

In Mediterranean climate regions, intermittent rivers (IRs) harbor highly dynamic communities with species and trait composition changing over time and space. Simultaneously considering multiple biodiversity facets and a spatiotemporal perspective is, therefore, key to developing effective conservation strategies for these ecosystems. We studied the spatiotemporal dynamics of aquatic macroinvertebrates in rivers of the western Mediterranean Basin by analysing (1) the taxonomic and functional richness and the local contribution to beta diversity (LCBD; measured considering taxonomic and functional facets) of perennial rivers and IRs over five sampling times, and (2) their relation with flow intermittence, local environmental uniqueness, and the number of anthropogenic impacts. Both analyses were also conducted for the subset of data including only IRs to compare values between their flowing and disconnected pool phases. According to our results, taxonomic and functional richness tended to be higher in perennial rivers than in IRs, while taxonomic and functional LCBD tended to be higher in IRs than in perennial rivers. When comparing IR sites over time, higher values of taxonomic and functional LCBD corresponded mostly to their disconnected pool phase. Flow intermittence, the number of anthropogenic impacts and the environmental uniqueness were significant predictors of taxonomic and functional richness, but only flow intermittence was an important predictor of taxonomic LCBD. For the IR-only data subset, disconnected pool permanence was the main predictor explaining spatiotemporal patterns. Our results highlight the importance of IRs to biodiversity conservation of Mediterranean climate rivers, especially during the disconnected pool phase, suggesting that these ecosystems cannot be ignored in conservation planning strategies.

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分析间歇性河流对贝塔多样性的贡献可改善地中海河流的淡水保护工作
在地中海气候区,间歇性河流(IRs)蕴藏着高度动态的群落,其物种和性状组成随着时间和空间的变化而变化。因此,同时考虑多个生物多样性方面和时空视角是为这些生态系统制定有效保护策略的关键。我们研究了西地中海盆地河流中水生大型无脊椎动物的时空动态,分析了(1)常年河流和IR在五个采样时间段内的分类和功能丰富度以及对β多样性的局部贡献(LCBD;考虑分类和功能面进行测量),以及(2)它们与水流间歇性、当地环境独特性和人为影响数量的关系。这两项分析还针对仅包括红河的数据子集进行,以比较其流动和断流池阶段的数值。根据我们的结果,常年河流的分类和功能丰富度往往高于IR,而IR的分类和功能LCBD往往高于常年河流。在比较不同时期的 IR 站点时,分类和功能 LCBD 值较高主要与它们的断流池阶段相对应。水流间歇性、人为影响的数量以及环境的独特性是预测分类和功能丰富度的重要因素,但只有水流间歇性是预测分类LCBD的重要因素。对于仅有 IR 的数据子集而言,断流水池的永久性是解释时空模式的主要预测因子。我们的研究结果凸显了IR对地中海气候河流生物多样性保护的重要性,尤其是在断流阶段,这表明在保护规划战略中不能忽视这些生态系统。
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来源期刊
Aquatic Sciences
Aquatic Sciences 环境科学-海洋与淡水生物学
CiteScore
3.90
自引率
4.20%
发文量
60
审稿时长
1 months
期刊介绍: Aquatic Sciences – Research Across Boundaries publishes original research, overviews, and reviews dealing with aquatic systems (both freshwater and marine systems) and their boundaries, including the impact of human activities on these systems. The coverage ranges from molecular-level mechanistic studies to investigations at the whole ecosystem scale. Aquatic Sciences publishes articles presenting research across disciplinary and environmental boundaries, including studies examining interactions among geological, microbial, biological, chemical, physical, hydrological, and societal processes, as well as studies assessing land-water, air-water, benthic-pelagic, river-ocean, lentic-lotic, and groundwater-surface water interactions.
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