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Structural and Functional Responses of Plankton to a Mixture of Four Tetracyclines in Aquatic Microcosms

机译:浮游生物对水生微观世界中四种四环素混合物的结构和功能响应

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Pharmaceuticals are routinely detected at low concentrations in surface waters, but effects on non-target organisms are not well understood. Microcosms were used to assess ecological responses in freshwater ecosystems to a mixture of four tetracyclines commonly used in veterinary and human medicine. Triplicate microcosms were treated with tetracycline, oxytetra eye line, doxycycline, and chlortetracycline, resulting in measured time-weighted average total mixture concentrations of 0,0.080,0.218,0.662, and 2.29 μM, respectively. Responses were assessed in terms of structure and function based on measurements of zooplankton and phytoplankton communities, ecosystem productivity, and water quality. Effects were observed for some endpoints ≥ the 0.218 μM treatment. The largest responses were concentration-dependent reductions in total phytoplankton abundance and species richness. Phytoplankton abundance recovered to control levels in all microcosms after treatment was terminated, and resilience (time to return to normal operating range during stress) was observed with respect to phytoplankton species richness. Zooplankton were generally unaffected by the tetracyclines. Responses also included decreased water clarity, lower oxygen concentration, and water temperature. Functional endpoints showed varying sensitivity. On the basis of dissolved oxygen concentrations, community respiration (R) increased while primary productivity (P) was unchanged with increased treatment concentration. The effects observed occurred at considerably greater concentrations than are currently measured in the environment, indicating minimal risk to aquatic organisms.
机译:通常在地表水中以低浓度检测到药物,但对非目标生物的影响尚不清楚。缩影用于评估淡水生态系统对兽药和人类医学中常用的四种四环素混合物的生态响应。一式三份的微观世界用四环素,土霉素眼线,强力霉素和金霉素进行了处理,得出的时间加权平均总混合物浓度分别为0,0.080,0.218,0.662和2.29μM。根据浮游动物和浮游植物群落,生态系统生产力和水质的测量结果,根据结构和功能评估了反应。在≥0.218μM处理的某些终点观察到效果。最大的反应是总浮游植物丰度和物种丰富度的浓度依赖性降低。终止处理后,所有微观世界中的浮游植物丰度恢复到控制水平,并且观察到了浮游植物物种丰富度的恢复力(在压力下恢复正常工作范围的时间)。浮游动物通常不受四环素的影响。应对措施还包括降低水的透明度,降低氧气浓度和水温。功能终点显示出不同的敏感性。基于溶解氧浓度,随着处理浓度的增加,社区呼吸(R)增加,而初级生产力(P)不变。所观察到的影响发生在比目前环境中所测量的浓度高得多的浓度下,表明对水生生物的风险最小。

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