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淡水主要离子浓度升高对大型溞成体血淋巴离子浓度和 pH 的影响

Alterations in Hemolymph Ion Concentrations and pH in Adult Daphnia magna in Response to Elevations in Major Ion Concentrations in Freshwater.

机构信息

Department of Biology, McMaster University, Hamilton, Ontario, Canada.

出版信息

Environ Toxicol Chem. 2021 Feb;40(2):366-379. doi: 10.1002/etc.4919. Epub 2020 Dec 15.

Abstract

Increases in the concentrations of major ions (Na , K , Ca , Mg , Cl ) in freshwater are a growing concern for ecosystem health. These increases may originate from anthropogenic activities such as road deicing, fracking spills, mining, and fertilizer application and have detrimental effects on freshwater organisms through disturbances in ionoregulation and acid-base balance. The cladoceran Daphnia magna is adapted for active ion uptake and reduction of ion loss to maintain osmotic balance, but alterations in ionic composition of the environmental water are associated with toxicity. In the present study, hemolymph ion concentrations were measured using ion-selective microelectrode techniques. Increases in the hemolymph concentrations of Na and K correspond to elevations in the concentrations of these ions in ambient water. Water concentrations associated with sustained increases in hemolymph ion concentrations correlate well with median lethal concentration values from previous toxicology studies, indicating that Na and K concentrations in hemolymph may predict toxicity. When water K concentration is increased, a simultaneous increase in water Na concentration mitigates the increase in hemolymph K concentration, a finding which is consistent with the reported mitigation of K toxicity by Na . When ambient concentrations of K , Na , and Cl are increased, not only is there a rise in hemolymph ion concentration but hemolymph pH is altered and pH regulation appears to be prioritized over regulation of hemolymph Na , K , and Cl in D. magna. Environ Toxicol Chem 2021;40:366-379. © 2020 SETAC.

摘要

淡水环境中主要离子(Na+、K+、Ca2+、Mg2+、Cl-)浓度的增加正日益成为生态系统健康的关注焦点。这些增加可能源自人为活动,如道路除冰、水力压裂泄漏、采矿和施肥,并且通过干扰离子调节和酸碱平衡对淡水生物产生有害影响。枝角类动物大型溞(Daphnia magna)适应于主动离子摄取和减少离子损失以维持渗透平衡,但环境水中离子组成的改变与毒性有关。在本研究中,使用离子选择性微电极技术测量了血淋巴中的离子浓度。血淋巴中 Na+和 K+浓度的增加与环境水中这些离子浓度的升高相对应。与血淋巴离子浓度持续升高相关的水浓度与先前毒理学研究的半数致死浓度值很好地相关,表明血淋巴中的 Na+和 K+浓度可能预示着毒性。当水 K+浓度增加时,水 Na+浓度的同时增加减轻了血淋巴 K+浓度的增加,这一发现与 Na+减轻 K+毒性的报道一致。当环境中 K+、Na+和 Cl-浓度增加时,不仅血淋巴离子浓度升高,而且血淋巴 pH 发生改变,并且似乎优先调节血淋巴 Na+、K+和 Cl-,而不是 pH 调节。Environ Toxicol Chem 2021;40:366-379. © 2020 SETAC.

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