Effects of hypoxia and toxicant exposure on phosphoarginine, intracellular pH, and free Mg2+ in abalone as measured by 31P-NMR

Scott L. Shofer , James A. Willis , Ronald S. Tjeerdema
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引用次数: 8

Abstract

The effects of hypoxia, sodium azide and pentachlorophenol (PCP) exposure on high-energy phosphorylated compounds, intracellular pH (pHi) and intracellular free Mg2+ (Mgf) in intact red abalone (Haliotis rufescens) were determined using 31P-NMR. Abalone made hypoxic by bubbling sea water with N2 showed modest changes in phosphoarginine (PA) and inorganic phosphate (Pi) concentrations, no significant changes in pHi and a moderate decrease in Mgf that was not statistically significant. Azide (50 mg/l) exposed animals displayed severe declines in PA dropping to 0.53 of reference values, coupled with large increases in Pi to 10.66 times resting concentrations that occurred just after the 2-hr exposure period. pHi also showed significant declines from a resting value of 7.17-7.06 (P < 0.05) but fully recovered by the end of the 6-hr clean seawater recovery period, whereas Mgf concentrations declined slightly during the exposure period but increased by 18% at the end of the recovery period relative to reference Mgf. PCP (1.2 mg/l) exposed animals displayed similar increases and declines in Pi and PA, respectively, as did azide-exposed animals by the end of the exposure period, but recovery was much slower and occurred in a bimodal fashion with some animals completely recovering at the end of 6 hr and others essentially stabilized at the end of the exposure period and did not show any significant changes during the recovery period.

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缺氧和毒物暴露对鲍鱼体内磷酸甘氨酸、细胞内pH和游离Mg2+的影响
采用31P-NMR测定了缺氧、氮化钠和五氯酚(PCP)暴露对完整红鲍鱼(Haliotis rufescens)高能磷酸化化合物、细胞内pH (pHi)和细胞内游离Mg2+ (Mgf)的影响。经氮气泡海水缺氧处理的鲍鱼,其磷酸甘氨酸(PA)和无机磷酸盐(Pi)浓度变化不大,pHi变化不显著,Mgf下降不大,但差异无统计学意义。叠氮化物(50 mg/l)暴露的动物PA严重下降,降至参考值的0.53,同时在暴露2小时后,Pi大幅增加,达到静息浓度的10.66倍。pHi也从静息值7.17-7.06显著下降(P <0.05),但在6小时清洁海水回收期结束时完全恢复,而Mgf浓度在暴露期间略有下降,但在回收期结束时相对于参考Mgf增加了18%。暴露于PCP (1.2 mg/l)的动物在暴露期结束时Pi和PA分别表现出类似的上升和下降,与叠氮化物暴露的动物一样,但恢复速度要慢得多,并且以双峰方式发生,一些动物在6小时结束时完全恢复,而其他动物在暴露期结束时基本稳定,并且在恢复期间没有表现出任何显着变化。
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