首页> 外文期刊>The Southwestern Naturalist >Relation between species assemblages of fishes and water quality in salt ponds and sloughs in South San Francisco Bay
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Relation between species assemblages of fishes and water quality in salt ponds and sloughs in South San Francisco Bay

机译:南旧金山湾盐塘和泥沼鱼类的鱼类组成与水质的关系

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This Study was conducted to characterize fishery resources inhabiting salt-evaporation ponds and Sloughs ill South San Francisco Bay, and to identify key environmental variables that influence distribution of fishes. The ponds, which were originally constructed and operated for commercial Production of salt, have undergone preliminary modifications (installation Of culverts, gates, and other water-control structures) in preparation for full restoration to mostly tidal wetlands over the next 2 decades. We sampled fish from two salt-pond complexes (Alviso complex and Eden Landing complex), each consisting of several pond systems and their associated Sloughs. Cluster analysis of species of fish indicated that at least two species assemblages were present, one characteristic of ponds and the other characteristic of sloughs and slough-like ponds. The slough-like ponds exhibited water-quality conditions (especially salinity) that resembled conditions found in the sloughs. Pond fishes were represented by 12 species, whereas slough fishes were represented by 22 species. Except for bay pipefish (Syngnathus leptorhynchus), which was unique to ponds, all species present in ponds also were in Sloughs and slough-like ponds. These results indicated that species of fish in ponds originated from the Sloughs. According to canonical-discriminant analysis, four environmental variables were useful for discriminating between the two species assemblages. Most discriminatory power was contributed by the index of habitat connectivity, a measure of minimum distance that a fish must travel to reach a particular pond from the nearest Slough. Apparently, as fish from sloughs enter and move through interconnected salt ponds, environmental stress factors increase in severity until only the more tolerant species remain. The most likely source of stress is salinity, because this variable was second in importance to the index of habitat connectivity in discriminating between the two species assemblages. Water temperature and concentration of dissolved oxygen also seemingly influenced spatial distribution of fishes, although they were less important than salinity.
机译:进行这项研究的目的是表征栖息在盐蒸发池和南旧金山湾泥沼中的渔业资源,并确定影响鱼类分布的关键环境变量。这些池塘最初是为商业生产盐而建造和运营的,已经进行了初步改造(安装涵洞,闸门和其他水控制结构),为在接下来的20年中完全恢复大部分潮汐湿地做准备。我们从两个盐塘区(Alviso区和Eden Landing区)中采样了鱼,每个区都由几个池塘系统及其相关的泥沼组成。鱼种的聚类分析表明,至少存在两种​​鱼群,一种是池塘特征,另一种是泥沼和类似泥沼的池塘。像泥沼一样的池塘表现出的水质状况(特别是盐度)类似于在泥沼中发现的状况。池塘鱼类以12种为代表,而泥沼鱼类以22种为代表。除了海湾独有的pipe鱼(Syngnathus leptorhynchus)外,池塘中存在的所有物种也都位于泥沼和泥沼状池塘中。这些结果表明池塘中的鱼种起源于泥ough。根据规范判别分析,可以使用四个环境变量来区分两个物种组合。最具歧视性的力量是由栖息地连通性指数决定的,该指数是鱼类从最近的泥沼到达特定池塘所必须经过的最小距离的量度。显然,随着泥鱼的进入和穿过相互连接的盐池,环境压力因素的严重程度会增加,直到只剩下更具耐受性的物种。压力最可能的来源是盐度,因为在区分两个物种组合时,该变量在栖息地连通性指数中的重要性次之。尽管水温和溶解氧的浓度不及盐度重要,但它们似乎也影响了鱼类的空间分布。

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