Spatial distribution patterns of fish egg and larval assemblages in the lower reach of the Yangtze River: Potential implications for conservation and management

文献类型: 外文期刊

第一作者: Ren, Peng

作者: Ren, Peng;Ren, Peng;Fang, Di-an;Xu, Dongpo;Schmidt, Bjorn V.;Schmidt, Bjorn V.

作者机构:

关键词: conservation and management; fish egg and larval assemblages; river-lake connectivity; spatial ecology; temporal-spatial distribution; tidal intrusion

期刊名称:AQUATIC CONSERVATION-MARINE AND FRESHWATER ECOSYSTEMS ( 影响因子:2.771; 五年影响因子:3.37 )

ISSN: 1052-7613

年卷期: 2021 年 31 卷 8 期

页码:

收录情况: SCI

摘要: River fish diversity is threatened by anthropogenic environmental alteration to landscapes. The early life-history stages of fish play an important role in maintaining diversity and population recruitment and can be heavily influenced by landscape patterns. Information on temporal and spatial distribution patterns of fish eggs and larvae is also important for biodiversity conservation and management of fish resources. The Yangtze River possesses a high diversity of fishes, including many commercially important species. The economy along the lower reach of the river is well developed, and most of the area is experiencing high pressure from human impacts. This section of the Yangtze River connects with the largest freshwater lake in China at the upstream end and flows into the estuary at the downstream end. These two landscape features are likely to have a significant impact upon the spatial distributions of fish egg and larval assemblages. Environmental variables, fish eggs, and larval assemblages were sampled in three locations, at Hukou, Anqing, and Jingjiang, in the lower reach of the Yangtze River. The results suggest that the higher number of species and greater abundance in upstream sites reflect the critical function of connectivity of Poyang Lake with the river for fish recruitment in the lower Yangtze. The delayed bloom of larval fish, occurrence of estuarine species, and a lower species number and abundance of freshwater fish downstream reflect the influence of tidal intrusion from the estuary. This study highlights the value of maintaining natural river-lakes connectivity in the Yangtze River as a conservation measure. The connected river-lake system should be designated as a priority area for fish resource protection in the lower reach of the Yangtze River. We recommend further measures to break down barriers between the river and other lakes and to restore the natural lateral connectivity of the floodplain ecosystem.

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