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Ecological Status of a Patagonian Mountain River: Usefulness of Environmental and Biotic Metrics for Rehabilitation Assessment

机译:巴塔哥尼亚山区河流的生态状况:环境和生物指标对恢复评估的实用性

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This work evaluates the consequences of anthropogenic pressures at different sections of a Patagonian mountain river using a set of environmental and biological measures. A map of risk of soil erosion at a basin scale was also produced. The study was conducted at 12 sites along the Percy River system, where physicochemical parameters, riparian ecosystem quality, habitat condition, plants, and macroinvertebrates were investigated. While livestock and wood collection, the dominant activities at upper and mean basin sites resulted in an important loss of the forest cover still the riparian ecosystem remains in a relatively good status of conservation, as do the in-stream habitat conditions and physicochemical features. Besides, most indicators based on macroinvertebrates revealed that both upper and middle basin sections supported similar assemblages, richness, density, and most functional feeding group attributes. Instead, the lower urbanized basin showed increases in conductivity and nutrient values, poor quality in the riparian ecosystem, and habitat condition. According to the multivariate analysis, ammonia level, elevation, j current velocity, and habitat conditions had explanatory power on benthos assemblages. Discharge, naturalness of the river channel, flood plain morphology, conservation status, and percent of urban areas were important moderators of plant composition. Finally, although the present land use in the basin would not produce a significant risk of soil erosion, unsustainable practices that promotes the substitution of the forest for shrubs would lead to severe consequences. Mitigation efforts should be directed to protect headwater forest, restore altered riparian ecosystem, and to control the incipient eutrophication process.
机译:这项工作使用一套环境和生物措施来评估巴塔哥尼亚山区河流不同部分的人为压力的后果。还绘制了流域规模的水土流失风险图。这项研究是在珀西河沿岸的12个地点进行的,这些地点的理化参数,河岸生态系统质量,栖息地条件,植物和大型无脊椎动物都得到了调查。在收集牲畜和木材时,流域上游和中部流域的主要活动造成森林覆盖率的重大损失,但河岸生态系统仍处于相对良好的保护状态,河流内生境条件和理化特征也是如此。此外,大多数基于大型无脊椎动物的指标表明,上,中流域剖面都支持相似的组合,丰富度,密度和大多数功能性摄食组属性。相反,城市化程度较低的盆地表现出电导率和营养价值增加,河岸生态系统质量较差以及栖息地状况。根据多变量分析,氨水平,海拔,当前流速和生境条件对底栖生物的组合具有解释力。流量,河道的自然性,洪泛平原形态,保护状况和城市面积百分比是植物组成的重要调节剂。最后,尽管流域目前的土地利用不会带来严重的水土流失风险,但不可持续的做法会促使森林替代灌木,这将导致严重的后果。应采取缓解措施,以保护源头森林,恢复改变的河岸生态系统并控制初期的富营养化过程。

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