南江大坝淡水排放对晋州湾浮游鱼类群落结构的影响

IF 1.5 4区 农林科学 Q3 FISHERIES
S. Myoung, S. Kwak, Jin-Koo Kim, J. Williamson
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引用次数: 3

摘要

在海湾和河口系统中,鱼卵和幼鱼的运动受到淡水排放的影响。本研究首次对韩国晋州湾浮游鱼鱼卵和幼虫的组合结构进行了评估,以确定晋州湾的产卵和育苗功能。2015年4月至2016年3月,每月对海湾内外鱼卵、鱼苗及若干环境参数进行采样。在湾内分别采集了25种和35种鱼卵和幼虫,比湾外分别采集了20种和28种鱼卵和幼虫的多样性更大。水温和盐度的波动在海湾内比在海湾外更大,叶绿素-a浓度在海湾内更高,可能是由于南江大坝的排放导致水从海湾内流向海湾外。这个过程影响了鱼类幼虫的丰度,因此在海湾外发现的幼虫比在海湾内发现的要多。我们还发现有28种鱼类以晋州湾为产卵地。对于某些物种来说,卵和幼虫出现的时间在海湾内外不同,这表明产卵的时间可能在两种环境之间有所不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of freshwater discharge from Namgang Dam on ichthyoplankton assemblage structure in Jinju Bay, Korea
The movement of fish eggs and larvae in bay and estuarine systems is affected by freshwater discharge. In this study, the assemblage structures of ichthyoplankton eggs and larvae were assessed for the first time in Jinju Bay, South Korea, to identify the spawning and nursery functions of the bay. Fish eggs and larvae and several environmental parameters were sampled monthly from April 2015 to March 2016 inside and outside of the bay. Within the bay we collected eggs and larvae from 25 and 35 species, respectively, indicating greater diversity than outside the bay, where we collected eggs and larvae of 20 and 28 species, respectively. Fluctuations in water temperature and salinity were larger inside than outside of the bay, and chlorophyll-a concentration was higher within the bay, likely due to discharge from the Namgang Dam, which causes water to flow from the inside to the outside of the bay. This process influences fish larva abundance, such that more larvae are found outside than inside the bay. We also found that 28 fish species use Jinju Bay as a spawning ground. For some species, the timing of egg and larva appearance differed inside and outside of the bay, suggesting that the timing of spawning may differ between the two environments.
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来源期刊
Aquatic Living Resources
Aquatic Living Resources 农林科学-海洋与淡水生物学
CiteScore
2.30
自引率
0.00%
发文量
10
审稿时长
>24 weeks
期刊介绍: Aquatic Living Resources publishes original research papers, review articles and propective notes dealing with all exploited (i.e. fished or farmed) living resources in marine, brackish and freshwater environments. Priority is given to ecosystem-based approaches to the study of fishery and aquaculture social-ecological systems, including biological, ecological, economic and social dimensions. Research on the development of interdisciplinary methods and tools which can usefully support the design, implementation and evaluation of alternative management strategies for fisheries and/or aquaculture systems at different scales is particularly welcome by the journal. This includes the exploration of scenarios and strategies for the conservation of aquatic biodiversity and research relating to the development of integrated assessment approaches aimed at ensuring sustainable and high quality uses of aquatic living resources.
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