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Response of Fish and Macroinvertebrate Bioassessment Indices to Water Chemistry in a Mined Appalachian Watershed

机译:鱼和大型无脊椎动物生物评价指数对矿山阿巴拉契亚流域水化学的响应

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Multimetric indices based on fish and ben-thic macroinvertebrate assemblages are commonly used to assess the biological integrity of aquatic ecosystems. However, their response to specific stres-sors is rarely known. We quantified the response of a fish-based index (Mid-Atlantic Highlands Index of Biotic Integrity, MAH-IBI) and a benthic invertebrate-based index (West Virginia Stream Condition Index, WV-SCI) to acid mine drainage (AMD)-related stres-sors in 46 stream sites within the Cheat River watershed, West Virginia. We also identified specific stressor concentrations at which biological impairment was always or never observed. Water chemistry was extremely variable among tributaries of the Cheat River, and the WV-SCI was highly responsive across a range of AMD stressor levels. Furthermore, impairment to macroinvertebrate communities was observed at relatively low stressor concentrations, especially when compared to state water quality standards. In contrast to the WV-SCI, we found that the MAH-IBI was significantly less responsive to local water quality conditions. Low fish diversity was observed in several streams that possessed relatively good water quality. This pattern was especially pronounced in highly degraded subwatersheds, suggesting that regional conditions may have a strong influence on fish assemblagesrnin this system. Our results indicate that biomonitoring programs in mined watersheds should include both benthic invertebrates, which are consistent indicators of local conditions, and fishes, which may be indicators of regional conditions. In addition, remediation programs must address the full suite of chemical constituents in AMD and focus on improving linkages among streams within drainage networks to ensure recovery of invertebrate and fish assemblages. Future research should identify the precise chemical conditions necessary to maintain biological integrity in mined Appalachian watersheds.
机译:基于鱼类和本性大型无脊椎动物种群的多指标指标通常用于评估水生生态系统的生物完整性。但是,它们对特定strors的响应鲜为人知。我们量化了以鱼为基础的指数(中大西洋高地生物完整性指数,MAH-IBI)和以底栖无脊椎动物为基础的指数(西弗吉尼亚河水状况指数,WV-SCI)对酸性矿山排水(AMD)-西维吉尼亚Cheat河流域内46个溪流场中的相关应力场。我们还确定了始终或从未观察到生物损伤的特定应激源浓度。 Cheat River支流之间的水化学变化很大,并且WV-SCI在一系列AMD压力源水平上具有高响应能力。此外,在相对较低的应激源浓度下观察到对大型无脊椎动物群落的损害,特别是与州水质标准相比。与WV-SCI相比,我们发现MAH-IBI对当地水质状况的响应明显较弱。在几个水质较好的溪流中,鱼类多样性较低。这种模式在高度退化的小流域尤为明显,表明区域条件可能对该系统中的鱼群有很大影响。我们的结果表明,在矿山流域进行的生物监测计划应既包括底栖无脊椎动物(可能是当地情况的指标),又包括鱼类(可能是地区情况的指标)。此外,补救计划必须解决AMD中全套化学成分,并着重于改善排水网络内溪流之间的联系,以确保无脊椎动物和鱼类种群的恢复。未来的研究应确定维持已开采的阿巴拉契亚流域生物完整性所必需的精确化学条件。

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