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异丙隆脉冲顺序暴露对空星藻的影响。

Effect of sequential isoproturon pulse exposure on Scenedesmus vacuolatus.

作者信息

Vallotton Nathalie, Eggen Rik Ilda Lambertus, Chèvre Nathalie

机构信息

Eawag, Swiss Federal Institute of Aquatic Science and Technology, Duebendorf, Switzerland.

出版信息

Arch Environ Contam Toxicol. 2009 Apr;56(3):442-9. doi: 10.1007/s00244-008-9200-z. Epub 2008 Aug 15.

Abstract

Aquatic organisms are typically exposed to fluctuating concentrations of herbicides in streams. To assess the effects on algae of repeated peak exposure to the herbicide isoproturon, we subjected the alga Scenedesmus vacuolatus to two sequential pulse exposure scenarios. Effects on growth and on the inhibition of the effective quantum yield of photosystem II (PSII) were measured. In the first scenario, algae were exposed to short, 5-h pulses at high isoproturon concentrations (400 and 1000 microg/l), each followed by a recovery period of 18 h, while the second scenario consisted of 22.5-h pulses at lower concentrations (60 and 120 microg/l), alternating with short recovery periods (1.5 h). In addition, any changes in the sensitivity of the algae to isoproturon following sequential pulses were examined by determining the growth rate-EC(50) prior to and following exposure. In both exposure scenarios, we found that algal growth and its effective quantum yield were systematically inhibited during the exposures and that these effects were reversible. Sequential pulses to isoproturon could be considered a sequence of independent events. Nevertheless, a consequence of inhibited growth during the repeated exposures is the cumulative decrease in biomass production. Furthermore, in the second scenario, when the sequence of long pulses began to approach a scenario of continuous exposure, a slight increase in the tolerance of the algae to isoproturon was observed. These findings indicated that sequential pulses do affect algae during each pulse exposure, even if algae recover between the exposures. These observations could support an improved risk assessment of fluctuating exposures to reversibly acting herbicides.

摘要

水生生物通常会接触到溪流中浓度波动的除草剂。为了评估反复峰值暴露于除草剂异丙隆对藻类的影响,我们让藻类空星藻(Scenedesmus vacuolatus)经历了两种连续的脉冲暴露情况。测量了对生长以及对光系统II(PSII)有效量子产率的抑制作用。在第一种情况下,藻类在高浓度异丙隆(400和1000微克/升)下暴露于短时间的5小时脉冲,每次之后有18小时的恢复期,而第二种情况则是在较低浓度(60和120微克/升)下进行22.5小时的脉冲,与短恢复期(1.5小时)交替。此外,通过测定暴露前后的生长速率-半数有效浓度(EC50)来检查藻类在连续脉冲后对异丙隆敏感性的任何变化。在两种暴露情况下,我们发现藻类生长及其有效量子产率在暴露期间受到系统性抑制,并且这些影响是可逆的。对异丙隆的连续脉冲可被视为一系列独立事件。然而,反复暴露期间生长受抑制的一个后果是生物量生产的累积减少。此外,在第二种情况下,当长脉冲序列开始接近连续暴露情况时,观察到藻类对异丙隆的耐受性略有增加。这些发现表明,即使藻类在暴露之间恢复,连续脉冲在每次脉冲暴露期间确实会影响藻类。这些观察结果有助于改进对可逆作用除草剂波动暴露的风险评估。

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