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Negative Impact on Growth and Photosynthesis in the Green Alga Chlamydomonas reinhardtii in the Presence of the Estrogen 17α-Ethynylestradiol

机译:存在雌激素17α-乙炔雌二醇对绿藻衣藻衣藻的生长和光合作用的负面影响

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摘要

It is well known that estrogenic compounds affect development of fertilized eggs of many species of birds, fish and amphibians through disrupted activity of carbonic anhydrase (CA). The most potent activity comes from the most commonly occurring synthetic sterol, 17α-Ethynylestradiol (EE2). Less is known about the responses of aquatic phytoplankton to these compounds. Here we show for the first time that, in comparision to the control, the addition of 7 µM EE2 reduced the growth rate of the green alga Chlamydomonas reinhardtii by 68% for cells grown at high CO2. When cells were grown in ambient air (low Ci) with a fully activated carbon concentrating mechanism through the induction of CA activity, the growth rates were reduced by as much as 119%. A reduced growth rate could be observed at EE2 concentrations as low as 10 pM. This was accompanied by a reduced maximum capacity for electron transport in photosystem II as determined by a lower FV/FM for low Ci-grown cells, which indicates the involvement of CAH3, a CA specifically located in the thylakoid lumen involved in proton pumping across the thylakoid membranes. These results were in agreement with an observed reduction in the chloroplastic affinity for Ci as shown by a strong increase in the Michaelis-Menten K0.5 for HCO3 . In itself, a lowering of the growth rate of a green alga by addition of the sterol EE2 warrants further investigation into the potential environmental impact by the release of treated waste water.
机译:众所周知,雌激素化合物会破坏碳酸酐酶(CA)的活性,从而影响许多鸟类,鱼类和两栖动物受精卵的发育。最有效的活性来自最常见的合成固醇17α-乙炔雌二醇(EE2)。关于水生浮游植物对这些化合物的反应知之甚少。在这里,我们首次表明,与对照相比,对于在高CO2下生长的细胞,添加7 µM EE2可使绿藻莱茵衣藻的生长速率降低68%。当细胞通过诱导CA活性在具有完全活性炭浓缩机制的环境空气(低Ci)中生长时,生长速率降低了119%。在低至10 pM的EE2浓度下可以观察到生长速度降低。这伴随着光系统II中电子传输的最大容量降低,这是由低Ci生长的细胞的FV / FM降低所决定的,这表明CAH3参与了这一过程,CAH3专门位于类囊体腔中,参与质子泵浦穿过类囊体膜。这些结果与观察到的对Ci的叶绿体亲和力降低一致,如Michaelis-Menten K0.5对HCO3 -的强烈增加所表明。就其本身而言,通过添加固醇EE2降低绿藻的生长速度,需要进一步研究释放已处理废水的潜在环境影响。

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