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应用生态学报 ›› 2025, Vol. 36 ›› Issue (6): 1915-1922.doi: 10.13287/j.1001-9332.202506.033

• 研究论文 • 上一篇    下一篇

S-烯虫酯对豌豆蚜生长发育和繁殖的影响

辛佳瑜, 张廷伟*, 袁月, 常婧雯, 于方玮   

  1. 甘肃农业大学植物保护学院, 甘肃省农作物病虫害生物防治工程实验室, 兰州 730070
  • 收稿日期:2024-12-24 接受日期:2025-04-05 出版日期:2025-06-18 发布日期:2025-12-18
  • 通讯作者: *E-mail: zhangtw@gsau.edu.cn
  • 作者简介:辛佳瑜, 女, 2000年生, 硕士研究生。主要从事植物保护方面研究。E-mail: xjy13257630320@163.com
  • 基金资助:
    国家自然科学基金地区项目(31960227)

Effects of S-methoprene on growth, development, and reproduction of Acyrthosiphon pisum

XIN Jiayu, ZHANG Tingwei*, YUAN Yue, CHANG Jingwen, YU Fangwei   

  1. Bio-control Engineering Laboratory of Crop Diseases and Pests of Gansu Province, College of Plant Protection, Gansu Agricultural University, Lanzhou 730070, China
  • Received:2024-12-24 Accepted:2025-04-05 Online:2025-06-18 Published:2025-12-18

摘要: S-烯虫酯作为保幼激素类似物,通过干扰昆虫体内保幼激素的正常代谢水平,可调控昆虫的发育、变态以及生殖等过程,已作为生物化学杀虫剂在害虫综合治理中推广应用。为明确S-烯虫酯对蚜虫生长发育和繁殖的影响,本研究以豌豆蚜为研究对象,在室内采用离体叶片植物介导法,观察不同浓度(0、50、100、500、1000 mg·L-1)S-烯虫酯处理对豌豆蚜存活率、发育历期、成蚜体型、寿命、繁殖力以及生殖系统的影响。结果表明: S-烯虫酯处理对豌豆蚜若蚜存活率和发育历期无显著影响,而对成蚜体型大小、寿命以及繁殖具有显著影响。随着S-烯虫酯处理浓度的升高,豌豆蚜成蚜中不育蚜比例显著升高,且成蚜体型逐渐减小、体重逐渐减轻、成蚜寿命和产蚜历期逐渐缩短;平均每雌产蚜量和日均每雌产蚜量逐渐减少。在1000 mg·L-1S-烯虫酯处理浓度下,豌豆蚜成蚜体重(2.41 mg)较对照减轻1.30 mg,体长(3.74 mm)、体宽(1.34 mm)、后足胫节长度(2.68 mm)及表面积(3.95 mm2)较对照分别减少12.4%、15.7%、11.3%、26.1%,不育成蚜数量占比达50.9%,成蚜寿命(14.3 d)和产蚜历期(12.2 d)最短,平均每雌产蚜量(83.5 ind)和日均每雌产蚜量(6.8 ind·d-1)最低。S-烯虫酯处理下豌豆蚜成蚜卵巢内新发育胚胎数目明显减少,具有眼点的成熟胚胎数目逐渐递增,且成熟胚胎的触角和足等附肢愈发明显,但即将产出的第1胚胎体型明显减小。研究表明,S-烯虫酯可导致豌豆蚜寿命缩短、繁殖力下降,并显著抑制豌豆蚜卵巢管中新生胚胎的产生和胚胎体型大小。本研究为利用保幼激素类似物调控蚜虫种群增长提供理论基础。

关键词: 保幼激素类似物, 昆虫生长调节剂, 豌豆蚜, 种群繁殖, 生物化学杀虫剂

Abstract: As an analogue of juvenile hormone, S-methoprene regulates the development, metamorphosis, and reproduction of insects by interfering with the normal metaboilic level of juvenile hormone in insects, and thus has been widely used as a biochemical insecticide. To clarify the effects of S-methoprene on the growth, development, and reproduction of Acyrthosiphon pisum, we measured the survival rate, developmental duration, adult body size, body weight, longevity, fecundity and reproductive system of A. pisum under different concentrations (0, 50, 100, 500, 1000 mg·L-1) of S-methoprene by plant mediation in vitro. The results showed that S-methoprene treatment did not affect the survival rate and developmental duration of A. pisum, but had significant effects on body size, adult longevity and fecundity of A. pisum adult. With the increases of S-methoprene concentration, the proportion of sterile adult increased significantly, adult body size and weight decreased gradually, and the adult longevity and reproductive period shortened gradually. The average fecundity of per female and the average daily fecundity per female gradually decreased. At the concentration of 1000 mg·L-1 S-methoprene, adult body weight (2.41 mg) was 1.30 mg lower than that of the control, and body length (3.74 mm), body width (1.34 mm), hind food tibia length (2.68 mm) and surface area (3.95 mm2) were 12.4%, 15.7%, 11.3% and 26.1% lower than those of the control. The number of sterile adult accounted for 50.9%, and the adult longevity (14.3 d) and reproductive period of A. pisum (12.2 d) were the shortest. The average fecundity of per female (83.5 ind) and the average daily fecundity of per female (6.8 ind·d-1) were the lowest. Under S-methoprene treatments, the number of newly deve-loped embryos in the ovary of A. pisum adults significantly decreased, and the number of mature embryos with eye spots increased gradually and the appendages such as antennae and feet of mature embryos became more obvious, but the size of the first embryo was significantly reduced. The results showed that S-methoprene shortened adult longevity and decreased fecundity, and significantly inhibited the new embryo production and embryo size in the ovarian tubes of A. pisum. This study would provide a theoretical basis for the potential value of juvenile hormone analogues in regulating aphid population.

Key words: juvenile hormone analogue, insect growth regulator, Acyrthosiphon pisum, population reproduction, biochemical insecticide