...
首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Trophic barriers to fertilizer Cd bioaccumulation through the food chain: a case study using a plant--insect predator pathway.
【24h】

Trophic barriers to fertilizer Cd bioaccumulation through the food chain: a case study using a plant--insect predator pathway.

机译:在食物链中肥料Cd生物积累的营养障碍:使用植物-昆虫捕食者途径的案例研究。

获取原文
获取原文并翻译 | 示例
           

摘要

The objective of this study was to assess the uptake and subsequent transfer of Cd and Zn from a soil amended with a single application (150 kg P ha(-1)) of triple super phosphate fertilizer to wheat plants, aphids, and a predator and biocontrol agent of aphids, lacewings. The fertilizer amended soil and wheat plants grown on this soil had elevated concentrations of Cd compared to the controls, but similar concentrations of Zn. Aphids feeding on wheat plants on the fertilized soil had between three and seven times the concentrations of Cd and Zn observed in aphids feeding on the control plants. However, the lacewings showed no significant accumulation of Cd or Zn, and no differences in larval performance were recorded. Changes in the availability of Cd and Zn in the soils and the transfer through the plant-insect pathway were monitored using isotope dilution, by labeling the soils with carrier-free (109)Cd and (65)Zn. Decreases in the specific activities for Cd in the plants and aphids were observed for the fertilized soils compared to the controls, suggesting an increase in bioavailable Cd. On the fertilized soils the Cd:Zn ratio of the phloem-feeding aphids (0.008) was significantly less than the host plants (0.025), indicating a reduced relative uptake of Cd and a possible barrier for Cd along the soil--plant--herbivorous insect pathway--reducing uptake by phloem feeders and subsequently their predators.
机译:这项研究的目的是评估从一次施用(150 kg P ha(-1))的三重超级磷酸盐肥料改良的土壤中吸收的Cd和Zn以及随后向小麦植物,蚜虫和捕食者中的转移蚜虫,草lace的生物防治剂。与对照相比,改良的土壤肥料和生长在该土壤上的小麦植物的Cd浓度较高,但Zn的浓度相似。以肥沃的土壤饲喂小麦植物的蚜虫的镉和锌浓度是对照植物饲喂的蚜虫的三至七倍。然而,草lace没有显示出镉或锌的显着积累,并且未记录到幼虫性能的差异。使用同位素稀释法,通过用无载体的(109)Cd和(65)Zn标记土壤,监测土壤中Cd和Zn的有效性变化以及通过植物-昆虫途径的转移。与对照相比,在施肥土壤中观察到的植物和蚜虫中Cd的比活降低,表明Cd的生物利用度增加。在肥沃的土壤上,韧皮部养蚜的Cd:Zn比(0.008)明显小于寄主植物(0.025),这表明Cd相对吸收减少,并且Cd沿土壤-植物-的可能障碍草食性昆虫途径-减少韧皮部食肉动物及其食肉动物的摄取。

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