Huang Rong, Chen Bolin, Ma Chengcheng, Deng Chao, Zhang Jiaqi, Xiao Zhihui, Wang Zhijian, Liu Yaqiu, Liu Xiaohong
Key Laboratory of Freshwater Fish Reproduction and Development (Ministry of Education), Key Laboratory of Aquatic Science of Chongqing, School of Life Sciences, Southwest University, Chongqing 400715, China.
School of Agronomy, Xinjiang Hetian College, Xinjiang 848000, China.
Animals (Basel). 2025 Aug 18;15(16):2416. doi: 10.3390/ani15162416.
(1) Background: Affected by multiple factors, the decline in fish species diversity in some aquatic ecosystems has become increasingly pronounced. At a broad spatial scale, economic development has been widely recognized as one of the key factors influencing the fish distribution pattern. However, at a small scale, within a single river basin, the effects of economic development on the freshwater fish distribution and communities remain largely uninvestigated. (2) Methods: environmental DNA (eDNA) samples were collected from 26 sampling sites of the Lixian River in both the summer (June) and winter (November). Economic data from the Lixian River basin were collected, and analyses, including multivariate regression tree analysis and generalized linear model fitting, were performed using R 4.3.2. (3) Results: A total of 65 fish species was characterized, and the Chao1 diversity indices in the upstream (13.42) and downstream (13.00) were significantly higher than those in the middle reaches (8.55, < 0.01) of this river. The species communities exhibited an obvious gradient changing pattern from the upstream to the downstream reaches, with parameters of water quality, including transparency, pH, dissolved oxygen and temperature, and climatic factors functioning as the key variables. Furthermore, the generalized linear model analysis revealed significant positive correlations between agricultural population ( = 0.00106), total grain production ( = 0.00476), total population ( = 0.00192) and the Chao1 index. (4) Conclusions: Climatic factors are the key factors affecting the fish diversity in the Lixian River. In less economically developed areas, the development of local economic activities may enhance fish diversity.
(1) 背景:受多种因素影响,一些水生生态系统中鱼类物种多样性的下降日益明显。在广泛的空间尺度上,经济发展已被广泛认为是影响鱼类分布格局的关键因素之一。然而,在小尺度上,即在单个流域内,经济发展对淡水鱼类分布和群落的影响在很大程度上仍未得到研究。(2) 方法:于夏季(6月)和冬季(11月)从里仙河的26个采样点采集环境DNA(eDNA)样本。收集了里仙河流域的经济数据,并使用R 4.3.2进行了包括多元回归树分析和广义线性模型拟合在内的分析。(3) 结果:共鉴定出65种鱼类,该河流上游(13.42)和下游(13.00)的Chao1多样性指数显著高于中游(8.55,<0.01)。物种群落从上游到下游呈现出明显的梯度变化模式,水质参数(包括透明度、pH值、溶解氧和温度)以及气候因素是关键变量。此外,广义线性模型分析显示农业人口(=0.00106)、粮食总产量(=0.00476)、总人口(=0.00192)与Chao1指数之间存在显著正相关。(4) 结论:气候因素是影响里仙河鱼类多样性的关键因素。在经济欠发达地区,当地经济活动的发展可能会提高鱼类多样性。