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评估修正后的雷曼模型在受河流支配的亚热带南部非洲沿海系统中的鱼类物种中的应用。

Assessing the application of the revised Remane Model to fish species in a fluvially dominated cool-temperate southern African coastal system.

机构信息

Department of Fisheries and Ocean Sciences, University of Namibia, P.O Box 462, Henties Bay, Namibia.

Department of Zoology, Nelson Mandela University, P.O Box 77000, Port Elizabeth, South Africa.

出版信息

Sci Rep. 2023 May 8;13(1):7465. doi: 10.1038/s41598-023-31259-7.

Abstract

Estuaries are ecologically important areas which support a variety of aquatic species, particularly marine and estuarine fish species. This study represents a case study of the Orange River and Estuary (ORE) to understand patterns in fish assemblages and diversity trends that were compared to the revised Remane Model predictions in an estuary with poor marine fish species richness. A total of 30 species were recorded in the River continuum that comprised 14 freshwater, 10 marine and six estuarine species. Species diversity revealed seasonal variation in fish assemblages during the high-flow and low-flow seasons but not inter-annually. The results revealed that species diversity is lower in higher salinity areas when compared to low salinity areas. These patterns are consistent with the biogeographical trend of decreasing species richness along the South African coast from east to west, however, inconsistent with Remane predictions. The extremely low marine fish richness at its lower end and the extremely large freshwater influx at its upper end are the primary causes of the inconsistency. This may reflects the unsuitability of the Remane model for the Orange Estuary. In comparison to similar river-dominated South African estuaries, the ORE has a low marine species richness. When compared to more conventional South African estuaries, the ORE has a unique biotic environment with low fish species richness of estuarine-associated marine species adjacent to the Benguela upwelling zone and therefore the region does not offer suitable habitat for such species. As a result, the ORE is not a good candidate to test the Remane Model. The data does, however, confirm the left-hand part of the Remane model, which shows a decline in the fish species richness of freshwater fish species as salinity rises towards mesohaline and polyhaline levels.

摘要

河口是生态重要的区域,支持着各种水生物种,特别是海洋和河口鱼类物种。本研究以奥兰治河和河口(ORE)为例,了解鱼类组合的模式和多样性趋势,这些模式与在一个海洋鱼类物种丰富度较差的河口的修订后的 Remane 模型预测进行了比较。在河流连续体中记录了 30 种鱼类,其中包括 14 种淡水鱼、10 种海洋鱼和 6 种河口鱼。物种多样性揭示了高流量和低流量季节期间鱼类组合的季节性变化,但不具有年际变化。结果表明,与低盐度地区相比,高盐度地区的物种多样性较低。这些模式与南非沿海从东到西生物地理物种丰富度减少的趋势一致,但与 Remane 预测不一致。在其较低端海洋鱼类丰富度极低,在上端淡水大量涌入是不一致的主要原因。这可能反映了 Remane 模型不适用于奥兰治河口。与类似的河流主导型南非河口相比,ORE 的海洋物种丰富度较低。与更传统的南非河口相比,ORE 具有独特的生物环境,与本格拉上升流区相邻的河口相关的海洋鱼类物种的物种丰富度较低,因此该地区不适合这些物种生存。因此,ORE 不是测试 Remane 模型的合适候选地。然而,数据确实证实了 Remane 模型的左手部分,即随着盐度升高到中盐度和高盐度水平,淡水鱼类物种的物种丰富度下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c03/10167243/160880d5e1c0/41598_2023_31259_Fig1_HTML.jpg

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