首页> 外文期刊>Environmental toxicology and chemistry >EXPLORING LEMNA GIBBA THRESHOLDS TO NUTRIENT AND CHEMICAL STRESSORS: DIFFERENTIAL EFFECTS OF TRICLOSAN ON INTERNAL STOICHIOMETRY AND NITRATE UPTAKE ACROSS A NITROGEN:PHOSPHORUS GRADIENT
【24h】

EXPLORING LEMNA GIBBA THRESHOLDS TO NUTRIENT AND CHEMICAL STRESSORS: DIFFERENTIAL EFFECTS OF TRICLOSAN ON INTERNAL STOICHIOMETRY AND NITRATE UPTAKE ACROSS A NITROGEN:PHOSPHORUS GRADIENT

机译:探索LEMNA GIBBA阈值来测定营养和化学应激:三氯生对氮,磷梯度吸收对内部化学计量法和硝酸盐吸收的不同影响

获取原文
获取原文并翻译 | 示例
       

摘要

Nutrient enrichment often co-occurs with chemical stressors in aquatic ecosystems, but the impacts of these multiple stressors across nutrient gradients is poorly understood and not typically addressed in ecotoxicity studies of lower trophic level models. Moreover, laboratory assays performed to determine threshold responses of aquatic macrophytes to contaminants typically use growth and morphometric endpoints to establish threshold effects and seldom report other important functional responses of lower trophic levels. Using the aquatic macrophyte Lemna gibba, we examined influences of varying nitrogen (N) and phosphorus (P) levels in combination with triclosan, a widely used antimicrobial agent in consumer care products, on internal carbon (C):N:P and NO_3~- uptake kinetics. Triclosan modulated L. gibba tissue N and P content, and these stoichiometric responses for P-limited plants to triclosan exposure were more sensitive than growth endpoints employed in standardized phytotoxicity assays. Nitrate uptake capacities were also differentially inhibited by triclosan exposure according to external nutrient levels. Uptake rates for plants cultured and exposed under saturating N-levels were inhibited by more than threefold compared with N-limited plants. The results suggest that stoichiometric and nutrient uptake responses to chemical stressors provide useful information regarding adverse ecological thresholds not defined in standardized phytotoxicity assays with aquatic macrophytes. Our findings further indicate that site-specific impacts of chemicals associated with the wide ambient ranges of N and P typical of surface waters may be anticipated in lower trophic levels. Future studies should examine adverse effects of other stressors to these ecologically relevant endpoints, which may be useful in environmental assessment and management.
机译:在水生生态系统中,营养丰富经常与化学胁迫同时发生,但这些多重胁迫对营养梯度的影响了解甚少,在较低营养水平模型的生态毒性研究中通常没有解决。此外,为确定水生植物对污染物的阈值响应而执行的实验室分析通常使用生长和形态计量学终点来确定阈值效应,并且很少报告较低营养水平的其他重要功能响应。我们使用水生大型植物Lemna gibba检验了氮(N)和磷(P)水平变化与三氯生(消费品中广泛使用的抗菌剂)组合对内部碳(C):N:P和NO_3〜的影响-吸收动力学。三氯生调节了L. gibba组织N和P的含量,P限制植物对三氯生暴露的化学计量响应比标准植物毒性测定法中采用的生长终点更为敏感。根据外部营养水平,三氯生暴露还可以不同程度地抑制硝酸盐的吸收能力。与受氮限制的植物相比,在饱和氮水平下培养和暴露的植物的吸收速率被抑制了三倍以上。结果表明,化学应激源的化学计量和养分吸收反应提供了关于不利生态阈值的有用信息,这些不利生态阈值在水生植物的标准植物毒性试验中未定义。我们的发现进一步表明,在较低的营养水平下,与地表水典型的N和P的宽环境范围相关的化学物质对特定地点的影响是可以预期的。未来的研究应检查其他压力因素对这些与生态相关的终点的不利影响,这可能对环境评估和管理有用。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2010年第10期|p.2363-2370|共8页
  • 作者单位

    Department of Environmental Science, Baylor University, Waco, Texas, USA Center for Reservoir and Aquatic Systems Research, Baylor University, Waco, Texas, USA;

    rnDepartment of Environmental Science, Baylor University, Waco, Texas, USA Center for Reservoir and Aquatic Systems Research, Baylor University, Waco, Texas, USA;

    rnDepartment of Environmental Science, Baylor University, Waco, Texas, USA Center for Reservoir and Aquatic Systems Research, Baylor University, Waco, Texas, USA;

    rnCenter for Reservoir and Aquatic Systems Research, Baylor University, Waco, Texas, USA Department of Biology, Baylor University, Waco, Texas, USA;

    rnDepartment of Environmental Science, Baylor University, Waco, Texas, USA Center for Reservoir and Aquatic Systems Research, Baylor University, Waco, Texas, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multiple stressors; chemical mixtures; eutrophication; alternative endpoints; ecological risk;

    机译:多种压力源;化学混合物;富营养化替代端点;生态风险;
  • 入库时间 2022-08-17 13:32:25

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号