Sun Kai-Feng, Xu Xiang-Rong, Duan Shun-Shan, Wang You-Shao, Cheng Hao, Zhang Zai-Wang, Zhou Guang-Jie, Hong Yi-Guo
Key Laboratory of Tropical Marine Bio-resources and Ecology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, China.
Department of Ecology, Jinan University, Guangzhou, 510632, China.
Ecotoxicology. 2015 Oct;24(7-8):1498-507. doi: 10.1007/s10646-015-1458-0. Epub 2015 Apr 9.
Organophosphate pesticides (OPs), as a replacement for the organochlorine pesticides, are generally considered non-toxic to plants and algae. Chlorpyrifos and dichlorvos are two OPs used for pest control all over the world. In this study, the dose-response of cyanobacteria Microcystis wesenbergii on OPs exposure and the stimulating effect of OPs with and without phosphorus source were investigated. The results showed that high concentrations of chlorpyrifos and dichlorvos caused significant decrease of chlorophyll a content. The median inhibitory concentrations (EC50) of chlorpyrifos and dichlorvos at 96 h were 15.40 and 261.16 μmol L(-1), respectively. Growth of M. wesenbergii under low concentration of OPs (ranged from 1/10,000 to 1/20 EC50), was increased by 35.85 % (chlorpyrifos) and 41.83 % (dichlorvos) at 120 h, respectively. Correspondingly, the highest enhancement on the maximum quantum yield (F v/F m) was 4.20 % (24 h) and 9.70 % (48 h), respectively. Chlorophyll fluorescence kinetics, known as O-J-I-P transients, showed significant enhancements in the O-J, J-I, and I-P transients under low concentrations of dichlorvos at 144 h, while enhancements of chlorophyll fluorescence kinetics induced by low concentrations of chlorpyrifos were only observed in the J-I transient at 144 h. Significant decreases of chlorophyll content, F v/F m and O-J-I-P transients with OPs as sole phosphorus source were found when they were compared with inorganic phosphate treatments. The results demonstrated an evidently hormetic dose-response of M. wesenbergii to both chlorpyrifos and dichlorvos, where high dose (far beyond environmental concentrations) exposure caused growth inhibition and low dose exposure induced enhancement on physiological processes. The stimulating effect of two OPs on growth of M. wesenbergii was negligible under phosphate limitation.
有机磷农药(OPs)作为有机氯农药的替代品,通常被认为对植物和藻类无毒。毒死蜱和敌敌畏是全球用于害虫防治的两种有机磷农药。本研究调查了蓝藻水华微囊藻对有机磷农药暴露的剂量反应以及有无磷源时有机磷农药的刺激作用。结果表明,高浓度的毒死蜱和敌敌畏导致叶绿素a含量显著下降。毒死蜱和敌敌畏在96小时时的半数抑制浓度(EC50)分别为15.40和261.16 μmol L(-1)。在低浓度有机磷农药(范围为1/10,000至1/20 EC50)下,水华微囊藻在120小时时的生长分别增加了35.85%(毒死蜱)和41.83%(敌敌畏)。相应地,最大量子产率(F v/F m)的最高增强分别为4.20%(24小时)和9.70%(48小时)。叶绿素荧光动力学,即O-J-I-P瞬变,在144小时时低浓度敌敌畏处理下的O-J、J-I和I-P瞬变中显示出显著增强,而低浓度毒死蜱诱导的叶绿素荧光动力学增强仅在144小时时的J-I瞬变中观察到。与无机磷酸盐处理相比,当以有机磷农药作为唯一磷源时,叶绿素含量、F v/F m和O-J-I-P瞬变显著下降。结果表明,水华微囊藻对毒死蜱和敌敌畏均呈现明显的剂量反应,其中高剂量(远超过环境浓度)暴露导致生长抑制,低剂量暴露诱导生理过程增强。在磷限制条件下,两种有机磷农药对水华微囊藻生长的刺激作用可忽略不计。