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林业科学 ›› 2015, Vol. 51 ›› Issue (11): 137-144.doi: 10.11707/j.1001-7488.20151118

• 研究简报 • 上一篇    下一篇

Bt+灭幼脲混剂对美国白蛾幼虫中肠蛋白酶、血淋巴蛋白的影响

徐明1, 徐福元1, 吴小芹2   

  1. 1. 江苏省林业科学研究院 南京 211153;
    2. 南京林业大学林学院 南京 210037
  • 收稿日期:2014-12-15 修回日期:2015-07-28 出版日期:2015-11-25 发布日期:2015-12-08
  • 基金资助:
    江苏省林业三项工程项目(lysx[2014]17); 中央财政林业科技推广示范资金项目([2014]TJS02号)。

Effects of the Mixture of Bt and Chlorbenzuron on the Activity of Midgut Proteinase, Haemolymph Proteins on 4th Instar Larvae of Hyphantria cunea

Xu Ming1, Xu Fuyuan1, Wu Xiaoqin2   

  1. 1. Forestry Academy of Jiangsu Province Nanjing 211153;
    2. Forestry College, Nanjing Forestry University Nanjing 210037
  • Received:2014-12-15 Revised:2015-07-28 Online:2015-11-25 Published:2015-12-08

摘要: [目的]通过测定Bt、灭幼脲及其混剂对美国白蛾4龄幼虫体内中肠有关生化指标的影响,探讨用混剂防治幼虫的增效机制。[方法]分别将Bt、灭幼脲及其混剂设置为5个浓度;采用生化测定法分别测定药剂对美国白蛾4龄幼虫血淋巴蛋白和中肠蛋白酶活力的影响。[结果] 5个浓度的Bt、灭幼脲及其混剂处理4龄幼虫后,混剂对幼虫中肠蛋白酶、血淋巴蛋白的抑制效果均优于单剂。混剂处理6 h后,幼虫体内中肠蛋白酶活力低于对照,各浓度处理间差异显著;24 h后各浓度处理的幼虫中肠蛋白酶的活性较对照明显降低,且与处理浓度呈负相关关系,说明Bt+灭幼脲混剂处理明显抑制白蛾4龄幼虫的中肠蛋白酶活力,进而直接影响到幼虫的取食。混剂处理美国白蛾4龄幼虫6 h后,幼虫的血淋巴蛋白含量分别为11.8,18.0,19.7,23.4和13.9 mg·mL-1,高于对照的14.0 mg·mL-1,处理组血淋巴蛋白含量增加,说明美国白蛾4龄幼虫启动防御反应;处理12 h后,血淋巴中部分蛋白质被消耗或破坏,其含量降低明显,且与处理时间呈负相关关系;至72 h后处理组幼虫体内血淋巴蛋白含量分别为6.2,8.9,2.3,3.2和9.0 mg·mL-1,均明显低于72 h对照的13.3 mg·mL-1,与对照相比下降显著(P<0.01)。[结论] Bt+灭幼脲混剂对白蛾4龄幼虫体内中肠蛋白酶活力和血淋巴蛋白的抑制作用均大于单剂,混剂有较强的增效作用,可加速白蛾4龄幼虫的死亡,提高死亡率。

关键词: 美国白蛾, Bt+灭幼脲混剂, 中肠蛋白酶, 血淋巴蛋白, 增效作用

Abstract: [Objective]The indoor virulence and field control test results showed that the mixture of Bt and chlorbenzuron had synergism to the second and third generation of the larvae of Hyphantria cunea. This paper analyzed the influence on the activity of midgut protease and haemolymph proteins on the 4th instar larvae of H. cunea for exploring its mechanism of synergism.[Method]The biochemical determination method was used to detect the mixture treatment effect on the activity of midgut protease and haemolymph proteins on the 4th instar larvae of H. cunea. [Result] In 6 h treatments with 5 concentrations of Bt, chlorbenzuron and its mixture to the 4th instar larvae, the activity of midgut protease was all lower than that of control, but there were significant differences among treatments. Compared with control the larval midgut protease activity decreased significantly after 24 h treatments with different concentrations, and the activity was negatively correlated with treatment times. Test results indicated that the activity of midgut protease was inhibited significantly by the mixture of Bt and chlorbenzuron, which directly affected the feeding of larvae. After being treated for 6 h with 5 concentrations of the mixture of Bt and chlorbenzuron, the content of haemolymph protein was 15.8, 18.0, 19.7, 23.4 and 13.9 mg·mL-1 of the 4th instar larvae and was higher than the content of 14 mg·mL-1of the control. The higher content of haemolymph protein in the treated larvae suggested that the larvae initiated defense responses; After being treated for 12 h the larvae were consumed or damaged the content of haemolymph protein, and the content of haemolymph protein decreased significantly, and the treatment concentration were negatively correlated with the treatment time; The content of haemolymph protein of the treated group was 6.2, 8.9, 2.3, 3.2 and 9.0 mg·mL-1 respectively after being treated for 72 h, and they were all significantly lower than 13.3 mg·mL-1of the corresponding control. The content of haemolymph protein significantly decreased compared with the control group (P < 0.01). [Conclusion]The inhibition of the mixture of Bt and chlorbenzur on the activity of midgut protease and haemolymph protein of the 4th instar larvae of H. cunea was stronger than that of the single agent, the mixture has strong inhibition and synergistic effect so as to accelerate and increase the death of the treated 4th instar larvae of H. cunea.

Key words: Hyphantria cunea, mixture of Bt and chlorbenzuron, the activity of midgut proteinase, haemolymph proteins, synergistic effect

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