本地小型鱼种 (SIF) 栖息水体的一些物理化学参数的特征:案例研究

Sangeeta Roy, S. K. Saikia
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引用次数: 0

摘要

水体的物理化学特性在决定栖息鱼类的生活史和种类方面起着至关重要的作用。本研究旨在分析居民水体的一些水和沉积物含量参数,并调查物理化学参数与鱼类种类之间是否存在任何关联。研究选取了印度西孟加拉邦比尔布姆地区附近的淡水池塘,采集水、沉积物和鱼类样本。分析了水和沉积物的温度(°C)、溶解氧(DO)、pH 值、氮和磷含量。计算了鱼类生态形态指数。测量了池塘水理化参数的变化范围。为确定决定物种组合的因素,首先分析了各因素在不同季节的交互效应。水和沉积物中氮、磷含量的分析结果表明,季节差异不大,且与物种组合无明显相关性。接着,分析了鱼类物种的生态形态指数与温度(T)、溶解氧(DO)、总溶解固体(TDS)和 pH 值的相关性。相关性分析表明,温度和酸碱度与大多数生态形态指数有中等至较强的相关性,这些指数决定了 SIF 的行为。这两个参数可被视为了解 SIF 在水体中分布情况的主要直接参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Some Physico-Chemical Parameters of Water Bodies Inhabited by Small Indigenous Fish Species (SIFs): A Case Study
The physico-chemical properties of water bodies play crucial role in determining the life history as well as assemblage of inhabitant fish. The aim of this study was to analyse some water and sediment content parameters of inhabitant water bodies and investigate if there persists any correlation between physico-chemical parameters and fish assemblage. Freshwater ponds around Birbhum district, West Bengal (India) were selected for collection of water, sediment, and fish species samples. Temperature (°C), dissolved oxygen (DO), pH, nitrogen and phosphorous contents of water and sediment were analysed. Fish ecomorphological indices were calculated. The range of variations of the physico-chemical parameters in pond water were measured. For identifying the factors determining species assemblage, interaction effects of the factors throughout the seasons were first analysed. The analysis results of N and P contents from water and sediment showed no significant seasonal difference and correlation with assemblage. Next, fish species wise correlation of ecomorphological indices to temperature (T), dissolved oxygen (DO), total dissolved solid (TDS) and pH was analysed. Correlation analysis showed that temperature and pH had a moderate to strong correlation with most of the ecomorphological indices that determines the behaviour of SIFs as depicted by the indices. These two parameters could be considered as major direct parameters to understand the distribution of SIFs in water bodies.
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