Inhibitional Effects of Metal Zn2+ on the Reproduction of Aphis medicaginis and Its Predation by Harmonia axyridis
文献类型: 外文期刊
第一作者: Xie, Guoqiang
作者: Xie, Guoqiang;Zou, Jiaping;Zhao, Lina;Wu, Mengjing;Wang, Shigui;Tang, Bin;Zhang, Fan;Tang, Bin
作者机构:
期刊名称:PLOS ONE ( 影响因子:3.24; 五年影响因子:3.788 )
ISSN: 1932-6203
年卷期: 2014 年 9 卷 2 期
页码:
收录情况: SCI
摘要: Background: Contamination, including metals, can disturb the reproductive processes of many organisms, including both prey and predatory insects. However, there is virtually no information on the effects of high level Zinc (Zn) pollution on aphids and ladybirds. The high concentrations of Zn2+ or Zn pollution inhibit reproduction in the phytophagous aphid, Aphis medicaginis, and the predatory ladybird Harmonia axyridis could provide important information. Results: It was observed in this study that Zn concentrations in Vicia faba (broad bean) seeds and seedlings in all Zn2+ treatments were significantly higher than that in the control group, and increased with increasing Zn2+ concentrations in the solution. The rate of reproduction in A. medicaginis declined significantly (p<0.05) over time in the five groups fed on broad bean seedlings treated with different concentrations of Zn2+ solution compared with the control group. These results showed that higher concentrations of Zn2+ significantly inhibited the reproductive capacity of A. medicaginis. We also cloned and identified a gene encoding vitellogenin (Vg) from A. medicaginis, which has an important role in vitellogenesis, and therefore, reproduction was affected by exposure to Zn2+. Expression of AmVg was reduced with increasing exposure to Zn2+ and also in the F-1-F-3 generations of aphids exposed to different Zn2+ concentrations. Predation by H. axyridis was also reduced in aphids exposed to high-levels of Zn2+. Similarly, ovipositioning by H. axyridis was also reduced. Conclusions: Our results suggest that Zn2+ can significantly affect the reproductive capacity of both A. medicaginis and its predator H. axyridis, the former through effects on the expression of AmVg and the latter through avoidance of aphids containing high levels of Zn2+.
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