昆虫学报 ›› 2025, Vol. 68 ›› Issue (4): 463-476.doi: 10.16380/j.kcxb.2025.04.008

• 研究论文 • 上一篇    下一篇

毒死蜱对白背飞虱生长发育和繁殖的亚致死效应

任书瑾1, 刘露遥1, 伊丽姆努尔·玉山1, 桂航1, 张世燕1,2何树林1,2, 章冰川1, 乔梁1,2,*, 周操1,2,*   

  1. (1. 重庆师范大学生命科学学院, 重庆 401331; 2. 重庆师范大学昆虫与分子生物学研究所, 媒介生物控制和利用重庆市重点实验室, 重庆 401331)
  • 出版日期:2025-04-20 发布日期:2025-05-22

Sublethal effects of chlorpyrifos on the growth, development and reproduction of Sogatella furcifera (Hemiptera: Delphacidae)

REN Shu-Jin1, LIU Lu-Yao1, YUSHAN Yi-Li-Mu-Nu-Er1, GUI Hang1, ZHANG Shi-Yan1,2, HE Shu-Lin1,2, ZHANG Bing-Chuan1, QIAO Liang1,2,*, ZHOU Cao1,2,*   

  1. (1. College of Life Sciences, Chongqing Normal University, Chongqing 401331, China; 2. Chongqing Key Laboratory of Vector Control and Utilization, Institute of Entomology and Molecular Biology, Chongqing Normal University, Chongqing 401331, China)
  • Online:2025-04-20 Published:2025-05-22

摘要: 【目的】本研究旨在探究毒死蜱对白背飞虱Sogatella furcifera的亚致死效应,为合理使用杀虫剂防治白背飞虱提供理论依据。【方法】采用稻茎浸渍法分别以LC10浓度(1.5 mg/L)和LC25浓度(2.9 mg/L)毒死蜱处理白背飞虱3龄若虫,测定F0代雌成虫寿命、成虫羽化率和单雌产卵量,组建F1代年龄-龄期两性生命表来分析其发育历期、繁殖力和存活率的变化,采用RT-qPCR测定其F0代雌成虫体内生殖相关基因(SfRheb, SfTOR, SfS6K, SfHMGR, SfIPPI, SfFPPS1, SfFPPS2, SfJHAMT, SfFAMeT, SfMet, SfKrh1和SfVg)的相对表达量。【结果】LC10和LC25浓度毒死蜱处理组白背飞虱F0代成虫单雌产卵量较对照组(蒸馏水处理)显著降低,且LC25浓度毒死蜱处理组F0代成虫羽化率和雌成虫寿命均显著低于对照组的。LC10和LC25浓度毒死蜱处理组F1代成虫平均单雌产卵量分别为191.4和169.9粒,均显著低于对照组的(230.6粒); LC25浓度毒死蜱胁迫白背飞虱3龄若虫较对照组能显著缩短其F1代雌成虫历期且降低F1代存活率。此外,LC10和LC25浓度毒死蜱处理白背飞虱3龄若虫能够抑制其F0代雌成虫中保幼激素(juvenile hormone, JH)相关信号通路基因(SfFAMeT, SfFPPS1, SfFPPS2和SfKrh1)、TOR相关信号通路基因(SfRheb和SfTOR)和SfVg的表达。【结论】亚致死浓度毒死蜱胁迫会抑制白背飞虱的生长发育、存活率和繁殖力,从而在一定程度上抑制白背飞虱后代种群的增长,并且还能够抑制TOR和JH信号通路中相关基因的表达。这些发现不仅可为田间科学防治白背飞虱提供理论依据,同时为理解杀虫剂调控昆虫生殖的分子机制打下基础。

关键词: 白背飞虱, 毒死蜱, 亚致死效应, 年龄-龄期两性生命表, 繁殖力, 生长发育

Abstract:  【Aim】This study aims to explore the sublethal effects of chlorpyrifos on Sogatella furcifera, so as to provide a theoretical basis for the rational use of insecticides to control S. furcifera.【Methods】The 3rd instar nymphs of S. furcifera were treated with LC10 (1.5 mg/L) and LC25(2.9 mg/L) of chlorpyrifos using rice stem dipping method. The female adult longevity, adult emergence rate and number of eggs laid per female adult of the F0 generation were detected. The age-stage, two-sex life table of the F1 generation was constructed to analyze the changes in the developmental duration, fecundity and survival rates. The relative expression levels of reproduction-related genes (SfRheb, SfTOR, SfS6K, SfHMGR, SfIPPI, SfFPPS1, SfFPPS2, SfJHAMT, SfFAMeT, SfMet, SfKrh1 and SfVg) in the F0 adult females were determined by RT-qPCR.【Results】The numbers of eggs laid per F0 female adult of S. furcifera in the treatment groups with LC10 and LC25 of chlorpyrifos were significantly reduced, and the adult emergence rate and female adult longevity of the F0 generation in the treatment group with LC25 of chlorpyrifos were shortened significantly, as compared with those in the control group treated with distilled water. The average numbers of eggs laid per F1 female adult in the treatment groups with LC10 and LC25 of chlorpyrifos were 191.4 and 169.9, respectively, both significantly lower than that in the control group (230.6). Exposure of the 3rd instar nymphs of S. furcifera to LC25 of chlorpyrifos significantly shortened the female adult duration of the F1 generation and reduced the survival rate of the F1 generation of S. furcifera, compared to the control. Furthermore, exposure of the 3rd instar nymphs of S. furcifera to LC10 and LC25 of chlorpyrifos inhibited the expression of genes (SfFAMeT, SfFPPS1, SfFPPS2 and SfKrh1) related to juvenile hormone (JH) signaling pathways, genes (SfRheb and SfTOR) related to TOR signaling pathways, and SfVg in female adults of the F0 generation. 【Conclusion】Sublethal concentrations of chlorpyrifos stress inhibited the growth, development, survival rate and fecundity of S. furcifera, thereby suppressing the population growth of subsequent generations to a certain extent. Furthermore, sublethal concentrations of chlorpyrifos also down-regulated the expression of genes related to the TOR and JH signaling pathways. These findings provide a theoretical basis for the scientific control of S. furcifera in the field and lay a foundation for understanding the molecular mechanisms by which insecticides regulate insect reproduction.

Key words: Sogatella furcifera, chlorpyrifos, sublethal effect, age-stage, two-sex life table, fecundity, growth and development