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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Retrospective stable isotope analysis reveals ecosystem responses to river regulation over the last century
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Retrospective stable isotope analysis reveals ecosystem responses to river regulation over the last century

机译:回顾性稳定同位素分析揭示了上个世纪生态系统对河流调节的响应

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Disruption of natural flow regimes, nutrient pollution, and other consequences of human population growth and development have impacted most major rivers of the world. Alarming losses of aquatic biodiversity coincide with human-caused river alteration, but effects of biotic homogenization on aquatic ecosystem processes are not as well documented. This is because unaltered systems for comparison are scarce, and some ecosystem-wide effects may take decades to manifest. We evaluated aquatic ecosystem responses to extensive river-floodplain engineering and nutrient addition in the Rio Grande of southwestern North America as revealed by changes in trophic structure of, and resource availability to, the fish community. Stable Isotope Analysis (SIA) was conducted on museum-preserved fishes collected over a 70-year period of intensive river management and exponential human population growth. Trophic complexity and resource heterogeneity for fish consumers (measured as isotopic niche breadth) decreased following sediment deprivation and channelization, and these effects persist into the present. Increased nutrient inputs led to N-15 enrichment in the entire fish community at all affected sites, and a shift to autochthonous sources of carbon at the most proximal site downstream of wastewater release, probably via bottom-up transfer. Overall, retrospective SIA of apex consumers suggests radical change and functional impairment of a floodplain river ecosystem already marked by significant biodiversity loss.
机译:自然流动机制的破坏,养分污染以及人口增长与发展的其他后果已经影响到世界上大多数主要河流。水生生物多样性的惊人损失与人为造成的河流变化相吻合,但是生物同质化对水生生态系统过程的影响还没有得到充分的记录。这是因为未更改的比较系统稀缺,某些生态系统范围的影响可能需要数十年的时间才能显现出来。我们评估了北美西南部里奥格兰德州的水生生态系统对广泛的河漫滩工程和养分添加的反应,这通过鱼类群落的营养结构和资源可利用性的变化得以揭示。对经过70年的密集河流管理和人口指数增长的博物馆保存的鱼类进行了稳定同位素分析(SIA)。沉积物剥夺和渠道化之后,鱼类消费者的营养复杂性和资源异质性(以同位素生态位宽度衡量)下降,这些影响一直持续到现在。营养素输入的增加导致所有受影响地点整个鱼类群落中的N-15富集,并可能通过自下而上的转移方式向废水排放下游最近端的地点转移到碳源。总体而言,对先端消费者的回顾性SIA表明,洪泛区河流生态系统已经发生了根本性变化,并且功能受损,而该生态系统已经遭受了生物多样性的严重损失。

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