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首页> 外文期刊>Ecological Applications >The cost of tolerance: Sensitivity of stream benthic communities to UV-B and metals
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The cost of tolerance: Sensitivity of stream benthic communities to UV-B and metals

机译:宽容的代价:河流底栖生物对UV-B和金属的敏感性

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The ability to tolerate disturbance is a defense strategy that minimizes the effects of damage to fitness and is essential for sustainability of populations, communities, and ecosystems. Despite the apparent benefits of tolerance, there may be an associated cost that results in a deficiency of a system to respond to additional disturbances. Aquatic ecosystems are often exposed to a variety of natural and anthropogenic disturbances, and the effects of these compound perturbations are not well known. In this investigation, we examine whether tolerance to one stressor, metals, results in a cost of increased sensitivity to an additional stressor, ultraviolet- B ( UV- B) radiation. Heavy metal pollution is recognized as a major environmental problem in Rocky Mountain streams. These high-elevation, typically clear streams may be at particular risk to elevated UVB levels associated with reduced levels of ozone. Microcosm experiments were conducted using natural stream benthic communities collected from a reference site and a site with a long- term history of heavy- metal pollution. Direct and interactive effects of heavy metals and UV- B radiation on structural and functional characteristics of benthic communities were evaluated among four treatments: control, UV- B, metals, and metal and UV- B. Communities from the metal- polluted site were more tolerant of metals but less tolerant to UV- B compared to reference communities. Increased mayfly drift and reduced metabolism in response to metal exposure were observed in reference communities but not in the metal- polluted communities. In contrast to these results, UV- B radiation significantly reduced community metabolism, total macroinvertebrate abundance, and abundances of mayflies, caddisflies, and dipterans from the metal- polluted site, but had no effects on benthic communities from the reference site. ANOSIM results demonstrated that community responses differed among treatments at both sites. Metals had the largest impact on community differences at both sites, while UV- B had greater impacts at the metal- polluted site. This research demonstrates the need to account for potential costs associated with tolerance and that these costs can result in behavioral, structural, and functional impacts to benthic communities.
机译:容忍干扰的能力是一种防御策略,可最大程度地减少对健康的损害,并且对于人口,社区和生态系统的可持续性至关重要。尽管容忍有明显的好处,但可能会有相关的成本,导致系统无法应对其他干扰。水生生态系统通常会受到各种自然和人为干扰,这些复合扰动的影响尚不清楚。在这项调查中,我们检查了对一种应激源(金属)的耐受性是否会导致对另一种应激源(紫外线B(UV-B))的敏感性增加。重金属污染被认为是落基山溪流中的主要环境问题。这些高海拔,通常是清澈的溪流可能会因与臭氧水平降低有关的UVB水平升高而特别危险。使用从参考站点和具有长期重金属污染历史的站点收集的自然溪流底栖生物进行缩影实验。在四种处理中评估了重金属和UV-B辐射对底栖生物群落结构和功能特性的直接和交互作用:对照,UV-B,金属以及金属和UV-B。来自金属污染地点的社区更多与参考社区相比,对金属具有耐受性,但对UV-B的耐受性较低。在参考群落中观察到响应金属暴露而增加的蝇蝇漂移和新陈代谢降低,但在金属污染的群落中未观察到。与这些结果相反,UV-B辐射显着降低了来自金属污染部位的群落代谢,总无脊椎动物的丰富度以及可能存在的五倍体,甲虫和and虫的含量,但对参考部位的底栖生物却没有影响。 ANOSIM的结果表明,两个地点的治疗之间的社区反应都不同。金属对两个地点的社区差异影响最大,而UV-B对金属污染地点的影响更大。这项研究表明,需要考虑与耐受性相关的潜在成本,并且这些成本可能会对底栖生物群落造成行为,结构和功能方面的影响。

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