Changes in the Functional Role of the Tejo Estuary (Portugal, Europe) According to Fish Ecological Guilds

IF 2.1 3区 农林科学 Q2 FISHERIES
Fishes Pub Date : 2023-11-08 DOI:10.3390/fishes8110545
Susana França
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引用次数: 0

Abstract

Estuaries are extremely productive ecosystems, providing habitats for numerous aquatic species and crucial ecological services. The Tejo estuary, one of the largest European estuaries, has been thoroughly studied, and its important functional role as a nursery for several commercially important fish species is already established. In the present work, a trait-based approach was applied to functionally describe the fish community structure of the Tejo estuary and to enlighten potential changes in the ecosystem functioning at this level, following environmental changes expected to occur. To predict the distribution of species from the two most representative ecological guilds of the Tejo estuary, estuarine residents and marine migrants, species distribution models were built using an ensemble technique (combining forecasts of single models). The predictions obtained were more accurate for the marine migrants and the species distribution was strongly related with salinity, whereas estuarine species, were also influenced by depth, habitat type and river flow. The potential distributions of these ecological guilds showed that marine migrants will tend to use upstream areas in the estuary, where salinity is lower. Nonetheless, salinity is expected to increase as extreme weather events such as droughts tend to occur more frequently, decreasing favorable habitat availability for these species, and thus threatening the crucial role this ecosystem plays for these species.
根据鱼类生态协会,特茹河口(葡萄牙,欧洲)功能角色的变化
河口是极具生产力的生态系统,为众多水生物种提供栖息地和重要的生态服务。特茹河口是欧洲最大的河口之一,人们对它进行了深入的研究,它作为几种重要商业鱼类的苗圃的重要功能已经确立。本文采用基于特征的方法对特茹河口的鱼类群落结构进行了功能描述,并对该水平上生态系统功能的潜在变化进行了启示,以应对预期发生的环境变化。为了预测特霍河河口最具代表性的两个生态行会——河口居民和海洋候鸟的物种分布,采用集合技术(综合单一模型预测)建立了物种分布模型。对海洋候鸟的预测更为准确,物种分布与盐度密切相关,而河口物种也受深度、栖息地类型和河流流量的影响。这些生态行会的潜在分布表明,海洋移民倾向于利用盐度较低的河口上游地区。尽管如此,随着干旱等极端天气事件的频繁发生,盐度预计会增加,减少这些物种的有利栖息地,从而威胁到生态系统对这些物种的关键作用。
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来源期刊
Fishes
Fishes Multiple-
CiteScore
1.90
自引率
8.70%
发文量
311
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