...
首页> 外文期刊>Aquatic Toxicology >Accumulation and depuration of microcystins (cyanobacteria hepatotoxins) in Tilapia rendalli (Cichlidae) under laboratory conditions
【24h】

Accumulation and depuration of microcystins (cyanobacteria hepatotoxins) in Tilapia rendalli (Cichlidae) under laboratory conditions

机译:在实验室条件下,罗非鱼(罗非鱼)中微囊藻毒素(蓝细菌的肝毒素)的积累和净化

获取原文
获取原文并翻译 | 示例
           

摘要

In order to understand accumulation and depuration of microcystins (MCYSTs) in Tilapia rendalli, three experiments with juveniles were done. The experiments simulated the fish diet during a Microcystis aeruginosa bloom in three different situations. In the first one each fish received daily, during 15 days, fish food plus toxic cells of M. aeruginosa (20.4 mug MCYSTs fish(-1) day(-1)). In the following 15 days they were fed without toxic cells. In the second experiment, fish were fed only with toxic cells during 28 days (14.6 mug MCYSTs fish(-1) day(-1)) and in the third experiment, during 42 days, fish were fed with fish food plus toxic cells (29.2 mug MCYSTs fish(-1) day(-1)) previously disrupted (to simulate a senescent bloom). MCYSTs analyses were done by enzyme-linked immunosorbent assay (ELISA) in liver and muscle samples in all experiments and in faeces in the first one (only in the depuration period). The results demonstrated different profiles of MCYSTs accumulation in liver and muscle of T rendalli. Comparing the experiments, the highest MCYSTs accumulation in the liver (2.8 mug g(-1)) occurred in the second one, where fish had only toxic cells as feeding source. In the first experiment, the highest MCYSTs accumulation in liver (0.6 mug MCYSTs g(-1)) was observed during the accumulation period, while in muscle, interestingly, the highest concentration (0.05 mug MCYSTs g(-1)) occurred in the depuration period. In this same period, it was also observed elimination of toxins through faeces. The second and third experiments showed almost the same average concentrations in tissues although fish have received more MCYSTs in third one. With respect to implications of the fish comsumption, MCYSTs accumulation in muscle of T rendalli in all three experiments reached concentrations that would represent an intake of these toxins above the tolerable limit for humans and these results confirmed our previous observations from a field study. In conclusion, in this study it was observed that T rendalli is able to accumulate MCYSTs and the availability of other feeding sources, besides toxic cells, probably interferes with the accumulation rate. Therefore, the occurrence of toxic cyanobacterial blooms produncing MCYSTs in aquaculture ponds could represent a risk to the quality of fish to the consumers.
机译:为了了解罗非鱼中微囊藻毒素(MCYSTs)的积累和净化,对青少年进行了三个实验。实验模拟了三种不同情况下铜绿微囊藻开花期间的鱼类饮食。在第一个鱼中,每条鱼在15天内每天接受鱼食和铜绿假单胞菌的有毒细胞(20.4杯MCYSTs鱼(-1)天(-1))。在接下来的15天中,他们被喂食时没有毒性细胞。在第二个实验中,仅在28天(14.6杯MCYSTs鱼(-1)天(-1))中向鱼类喂食了毒性细胞,而在第三个实验中,在42天中,鱼食中添加了有毒细胞( 29.2杯MCYSTs先前打碎过的鱼(-1)天(-1))(模拟衰老绽放)。 MCYSTs分析是通过酶联免疫吸附测定(ELISA)在所有实验的肝和肌肉样品中以及在第一个实验(仅在净化阶段)的粪便中进行的。结果表明不同的MCYSTs积累在T rendalli的肝脏和肌肉中。与实验进行比较,第二个实验中肝脏中MCYSTs的积累最高(2.8杯g(-1)),其中鱼仅以毒性细胞为食。在第一个实验中,在积累期间观察到肝脏中最高的MCYSTs积累(0.6杯MCYSTs g(-1)),而在肌肉中,有趣的是,最高的浓度(0.05杯MCYSTs g(-1))出现在肝脏中。净化期。在同一时期,还观察到通过粪便消除毒素。第二和第三次实验显示组织中的平均浓度几乎相同,尽管在第三次实验中鱼类接受了更多的MCYST。关于鱼类食用的影响,在所有三个实验中,雷氏杆菌属肌肉中MCYSTs的积累均达到代表人体摄入的上述毒素摄入量以上的浓度,这些结果证实了我们先前从现场研究中获得的观察结果。总之,在这项研究中,我们观察到雷纳德氏菌能够积累MCYSTs,除毒性细胞外,其他饲料来源的可用性可能会干扰其积累速率。因此,在水产养殖池塘中出现可能会产生MCYSTs的有毒蓝藻水华,可能会给消费者带来鱼类质量的风险。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号