首页> 外文期刊>Ecotoxicology and Environmental Safety >Individual and combined effect of anthracene, cadmium, and chloridazone on growth and activity of SOD izoformes in three Scenedesmus species
【24h】

Individual and combined effect of anthracene, cadmium, and chloridazone on growth and activity of SOD izoformes in three Scenedesmus species

机译:蒽,镉和氯虫酮对三种场景动物物种中SOD异形体生长和活性的单独和联合作用

获取原文
获取原文并翻译 | 示例
       

摘要

Short-term (12-48 h) experiments were carried out to examine the effect of anthracene (three-ring aromatic hydrocarbon), cadmium (CdCl_2), and chloridazone (triazine herbicide), individually and in combination, on growth and SOD activity of three green algae Scenedesmus: S. subspicatus, S. obliquus, and S. microspina, grown in a batch-culture system. The relative toxicity of chemicals to algae was anthracene > chloridazone cadmium. The species revealed similar growth sensitivity to individual chemicals after 24 h of exposure but there were differences between them when exposed to their combinations. Two methods were used to determine the modes of interaction effects of the chemical combinations; both led to the same results, with two exceptions of all 36 variants examined. In general, mixtures of two and three chemicals behaved toward algal growth mainly in an antagonistic manner (20 cases), whereas additive and synergistic interaction occurred 13 and 3 times, respectively. Antagonism was the most frequently observed to growth of S. obliquus; antagonistic interaction and additive effect was noted in relation to S. subspicatus, while response of S. microspina depended markedly on applied combination. There is a relationship between SOD activity and growth response to stress. The markedly higher level of SOD isoforms activities was noticed in cells (especially S. microspina and S. obliquus) exposed to 12 h to combined chemicals, as compared to individually treated and control cells. SOD activities in cells of three Scenedesmus grown 24 h were similar in all experimental variants and after 48 h of exposure significantly decreased in almost all cases (especially in S. subspicatus). There were no differences observed between SOD profiles obtained for all variants examined. Chloroplasts seems to be the main target site of interaction effects of dissimilarly acting chemicals.
机译:进行了短期(12-48小时)实验,以单独和组合方式研究蒽(三环芳烃),镉(CdCl_2)和氯达酮(三嗪除草剂)对番茄生长和SOD活性的影响。三个绿藻Scenedesmus:在分批培养系统中生长的S. subspicatus,S。obliquus和S.microspina。化学物质对藻类的相对毒性为蒽>氯虫酮镉。暴露24小时后,该物种对单个化学物质的生长敏感性相似,但暴露于其组合时它们之间存在差异。两种方法用于确定化学组合的相互作用效应的模式。两者均得出相同的结果,但所检查的所有36个变体中有两个例外。通常,两种和三种化学物质的混合物主要以拮抗方式对藻类生长起作用(20例),而加性和协同相互作用分别发生13和3次。拮抗作用最常见于斜生链球菌的生长。相对于亚种S.spicatus,有拮抗作用和加性作用,而S.microspina的反应明显取决于所应用的组合。 SOD活性和对压力的生长反应之间存在关系。与单独处理的细胞和对照细胞相比,在暴露于混合化学物质12 h的细胞(尤其是微链霉菌和斜纹链球菌)中,SOD亚型的活性明显升高。在所有实验变体中,生长在24小时内的三个场景动物的细胞中的SOD活性均相似,并且在暴露48小时后,几乎在所有情况下(特别是在亚链球菌中)均明显降低。对于所检查的所有变体,在SOD谱图之间均未观察到差异。叶绿体似乎是作用不同的化学物质相互作用的主要目标部位。

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