首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >The effects of selenium biofortification on mercury bioavailability and toxicity in the lettuce-slug food chain
【24h】

The effects of selenium biofortification on mercury bioavailability and toxicity in the lettuce-slug food chain

机译:硒生物侵蚀对莴苣 - SLUG食物链中汞生物利用度和毒性的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The effects of foliar Se biofortification (Se+) of the lettuce on the transfer and toxicity of Hg from soil contaminated with HgCl2 (H) and soil collected near the former Hg smelter in Idrija (I), to terrestrial food chain are explored, with Spanish slug as a primary consumer. Foliar application of Se significantly increased Se content in the lettuce, with no detected toxic effects. Mercury exerted toxic effects on plants, decreasing plant biomass, photochemical efficiency of the photosystem II (Fv/Fm) and the total chlorophyll content. Selenium biofortification (Se+ test group) had no effect on Hg bioaccumulation in plants. In slugs, different responses were observed in H and I groups; the I/Se+ subgroup was the most strongly affected by Hg toxicity, exhibiting lower biomass, feeding and growth rate and a higher hepatopancreas/muscle Hg translocation, pointing to a higher Hg mobility in comparison to H group. Selenium increased Hg bioavailability for slugs, but with opposite physiological responses: alleviating stress in H/Se+ and inducing it in I/Se+ group, indicating different mechanisms of Hg-Se interactions in the food chain under HgCl2 and Idrija soil exposures that can be mainly attributed to different Hg speciation and ligand environment in the soil.
机译:探讨了Idrija(i)前Hg冶炼厂附近污染的土壤污染的土壤污染的土壤的转移和毒性莴苣对陆地食物链的影响。作为主要消费者的slug。生菜中Se的叶面含量显着增加,没有检测到的毒性效应。汞对植物产生了毒性作用,降低了植物生物质,光照效率II(FV / FM)和总叶绿素含量的光化学效率。硒生物化(SE +试验组)对植物的Hg生物累积没有影响。在Slugs中,在H和I组中观察到不同的反应; I / SE +亚组是HG毒性最强烈的影响,表现出降低的生物量,饲养和生长速率以及较高的肝病/肌肉HG易位,与H组相比,较高的HG流动性。硒提高了Slugs的Hg生物利用度,但具有相反的生理反应:缓解H / SE +中的应力并在I / SE +基团中诱导,表明HGCL2和Idrija土壤暴露下的食物链中的Hg-Se相互作用的不同机制归因于土壤中不同的HG物质和配体环境。

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