首页> 外文期刊>Environmental toxicology and chemistry >SINGLE AND COMBINED EFFECTS OF MICROCYSTIN- AND SAXITOXIN-PRODUCING CYANOBACTERIA ON THE FITNESS AND ANTIOXIDANT DEFENSES OF CLADOCERANS
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SINGLE AND COMBINED EFFECTS OF MICROCYSTIN- AND SAXITOXIN-PRODUCING CYANOBACTERIA ON THE FITNESS AND ANTIOXIDANT DEFENSES OF CLADOCERANS

机译:产微囊藻毒素和沙糖毒素的蓝藻对克拉多菌的适宜性和抗氧化剂防御的单一和联合作用

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Cyanobacteria produce different toxic compounds that affect animal life, among them hepatotoxins and neurotoxins. Because cyanobacteria are able to produce a variety of toxic compounds at the same time, organisms may be, generally, subjected to their combined action. In the present study, we demonstrate the single and combined effects on cladocerans of cyanobacteria that produce microcystins (hepatotoxins) and saxitoxins (neurotoxins). Animals were exposed (either singly or combined) to 2 strains of cyanobacteria isolated from the same environment (Funil Reservoir, Rio de Janeiro, Brazil). The effects on clearance rate, mobility, survivorship, fecundity, population increase rate (r), and the antioxidant enzymes glutathione-S-transferase (GST) and catalase (CAT) were measured. Cladoceran species showed a variety of responses to cyanobacterial exposures, going from no effect to impairment of swimming movement, lower survivorship, fecundity, and general fitness (r). Animals ingested cyanobacteria in all treatments, although at lower rates than good food (green algae). Antioxidant defense responses were in accordance with fitness responses, suggesting that oxidative stress may be related to such effects. The present study emphasizes the need for testing combined actions of different classes of toxins, because this is often, and most likely, the scenario in a more eutrophic world with global climatic changes. (C) 2017 SETAC
机译:蓝细菌产生影响动物生命的不同有毒化合物,其中包括肝毒素和神经毒素。由于蓝细菌能够同时产生多种有毒化合物,因此生物通常会受到其共同作用。在本研究中,我们证明了对蓝细菌的分支杆菌的单一和联合作用,产生微囊藻毒素(肝毒素)和沙门毒素(神经毒素)。使动物暴露(单独或合并)暴露于从相同环境(巴西里约热内卢的Funil Reservoir)中分离出的2种蓝细菌菌株。测量对清除率,迁移率,存活率,繁殖力,种群增加率(r)以及抗氧化酶谷胱甘肽-S-转移酶(GST)和过氧化氢酶(CAT)的影响。枝角类物种对蓝细菌暴露有多种反应,从无影响到游泳运动受损,较低的存活率,繁殖力和总体适应性(r)。在所有处理中,动物均摄取蓝细菌,尽管其摄取速率低于优质食物(绿藻)。抗氧化防御反应与适应性反应一致,表明氧化应激可能与这种作用有关。本研究强调需要测试不同种类毒素的联合作用,因为在全球气候变化更加富营养的世界中,这种情况经常发生,而且很可能是这种情况。 (C)2017年SETAC

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