长江禁渔后鄱阳湖鱼类的群落结构特征与变化

Fishes Pub Date : 2024-07-15 DOI:10.3390/fishes9070281
Yanping Zhang, Haixin Zhang, Zijun Wu, Mingguang Zhao, Guangpeng Feng
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摘要

为了解 2021 年长江禁渔期后鄱阳湖鱼类群落结构特征及变化,2020-2021 年期间,在湖口、庐山、都昌、永修、南矶山、瑞洪、鄱阳 7 个采样站进行了渔业资源调查。结果显示,共发现 93 种鱼类,隶属于 11 目 20 科 61 属,比禁渔期前增加了 4.5%。其中,发现鲤科鱼类 52 种,所占比例最高(55.91%)。发现外来入侵物种 4 种(杂交鲟、胭脂鱼、桡足类和鲻鱼),鄱阳湖外来物种数量高于禁渔期前。肉食性鱼类和中下层鱼类显著增加,分别占总种数的 47.31%和 38.71%。与禁渔期前的长江相比,鄱阳湖主要经济鱼类的体长和体重分别增加了 6.10%-61.26%和 15.14%-291.57%。从鱼龄结构来看,1-2龄的主要经济鱼类所占比例明显下降,而老龄鱼类所占比例大幅上升。鄱阳湖各站鱼类群落多样性差异不大。在生物多样性方面,香农-维纳指数在 2.158 至 2.909 之间,鄱阳湖最高,南矶山最低。Margalef 指数在 4.265 至 6.459 之间,庐山指数最高,南矶山指数最低。Pielou 的指数在 0.617 至 0.822 之间,其中都昌指数最高,南矶山指数最低。因此,长江禁渔对鄱阳湖渔业资源的恢复起到了重要的积极作用。但要全面评价鄱阳湖禁渔期的生态影响,还需要长期的跟踪监测。
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Community Structure Characteristics and Changes in Fish Species at Poyang Lake after the Yangtze River Fishing Ban
To understand the fish community structure characteristics and changes in Poyang Lake after the Yangtze River fishing ban in 2021, seven sampling stations were established, namely in Hukou, Lushan, Duchang, Yongxiu, Nanjishan, Ruihong, and Poyang, for fishery resource surveys between 2020 and 2021. The results showed that 93 fish species were identified, belonging to 11 orders, 20 families, and 61 genera, which was an increase of 4.5% from before the fishing ban. Of these, 52 Cyprinidae species were identified, comprising the highest proportion (55.91%). Four invasive alien species (hybrid sturgeon, Cirrhina mrigala, Piaractus brachypomus, and Mugil cephalus) were identified, and the number of alien species in Poyang Lake was higher than before the fishing ban. Carnivorous and mid-lower-level fish showed a significant increase, accounting for 47.31% and 38.71% of the total species, respectively. Compared with the Yangtze River before the fishing ban, the body length and body weight of the main economic fish in Poyang Lake increased by 6.10–61.26% and by 15.14–291.57%, respectively. In terms of age structure, the proportion of major economically important fish aged 1 or 2 years decreased significantly, while the proportion of older fish increased substantially. There was little difference in the diversity of fish communities at different stations in Poyang Lake. In terms of biodiversity, the Shannon–Wiener index ranged from 2.158 to 2.909, with Poyang having the highest value and Nanjishan the lowest. Margalef’s index ranged from 4.265 to 6.459, with Lushan having the highest value and Nanjishan the lowest. Pielou’s index ranged from 0.617 to 0.822, with Duchang having the highest value and Nanjishan the lowest. Hence, the Yangtze river fishing ban has played an important and positive role in the restoration of fishery resources in Poyang Lake. However, long-term tracking and monitoring are needed to provide information to comprehensively evaluate the ecological impact of the Poyang Lake fishing ban.
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