Laboratory of Algal Biology, Centre of Advanced Study in Botany, Banaras Hindu University, 221005, Varanasi, India.
Ecotoxicology. 1993 Dec;2(4):231-42. doi: 10.1007/BF00368532.
Impact of Cu, Ni and Fe on structure and function of a synthetic microcosm, comprising of four algae (Chlorella vulgaris, Chlamydomonas sp., Anabaena doliolum and Oscillatoria formosa), two arthropods (Cyclops and Cypris) and a protozoan (Paramecium) was tested with respect to nutrient depletion, changes in algal population, chlorophyll a content and carbon fixation. The control (untreated) microcosm registered complete depletion of NO3 (-) and PO4 (3-) on day 20, when the algal population had reached its maxima in terms of cell number, chlorophyll a content and carbon fixation. Metal treated microcosm, however, showed a delayed nutrient depletion, reduced algal maxima, and lower chlorophyll a content and carbon fixation rate than the control. Of the four algae tested Chlamydomonas sp. was found to the most sensitive and Oscillatoria formosa, the most tolerant to all the metals used. The hierarchy of metal toxicity was Cu>Ni>Fe. Cu and Ni combination interacted synergistically in contrast to the antagonism of Cu+Fe and Ni+Fe. Carbon fixation was inhibited most as compared to nutrient depletion, algal number and chlorophyll a content. A comparison of the microcosm results with batch cultures using the same metals and algae revealed a similar pattern, but a reduced degree of inhibition in the former. This study therefore, demonstrates that results of laboratory toxicity bioassays can be extrapolated to the field level though with a reduced precision.
采用含有四种藻类(普通小球藻、衣藻、鱼腥藻和美丽颤藻)、两种节肢动物(溞和卤虫)和一种原生动物(草履虫)的合成微宇宙,测试了铜、镍和铁对其结构和功能的影响,其测试指标为营养物质耗竭、藻类种群变化、叶绿素 a 含量和碳固定。在第 20 天,对照组(未经处理)微宇宙中硝酸盐(NO3 (-))和磷酸盐(PO4 (3-))完全耗竭,此时藻类种群在细胞数量、叶绿素 a 含量和碳固定方面达到最大值。然而,金属处理的微宇宙显示出营养物质耗竭延迟、藻类最大值降低以及叶绿素 a 含量和碳固定率低于对照组。在测试的四种藻类中,衣藻对所有使用的金属最敏感,而颤藻对所有金属最耐受。金属毒性的层次为 Cu>Ni>Fe。Cu 和 Ni 的组合表现出协同作用,而 Cu+Fe 和 Ni+Fe 则表现出拮抗作用。与营养物质耗竭、藻类数量和叶绿素 a 含量相比,碳固定受到的抑制最大。将微宇宙结果与使用相同金属和藻类的分批培养进行比较,发现结果具有相似的模式,但前者的抑制程度降低。因此,本研究表明,实验室毒性生物测定的结果可以外推到现场水平,但精度降低。