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三营养层效应调节两种角斑谷蛾(鳞翅目:螟蛾科)寄生蜂对食用桃仁的适合度。

Tritrophic effects mediate host suitability for two parasitoids of the carob moth (Lepidoptera: Pyralidae), infesting pistachio kernels.

机构信息

Pistachio Safety Research Center, Rafsanjan University of Medical Sciences, Rafsanjan, Iran.

Department of Entomology, Agricultural Research Center-Hays, Kansas State University, Hays, KS, USA.

出版信息

Environ Entomol. 2024 Feb 20;53(1):94-100. doi: 10.1093/ee/nvae004.

Abstract

The carob moth, Ectomyelois ceratoniae (Zeller) (Lepidoptera: Pyralidae), is an important pest of pistachio causing direct damage to nuts during ripening, and in storage. We examined the tritrophic effects of 5 pistachio cultivars, representing the full range of kernel suitability for E. ceratoniae, on 2 larval parasitoids, Habrobracon hebetor (Say) (Hymenoptera: Braconidae), a gregarious, synovigenic, idiobiont, ectoparasitoid, and Venturia canescens Gravenhorst (Hymenoptera: Ichneumonidae), a solitary, pro-ovigenic, koinobiont, endoparasitoid. The suitability of pistachio cultivars for development and reproduction of the 2 parasitoids was closely correlated, despite their divergent lifestyles and developmental patterns, and paralleled variation in kernel suitability for host larvae. Although kernels of the most resistant cultivar reduced demographic parameters of the parasitoids, the potential impact on numerical responses was minor. Successful biological control of carob moth within the vulnerable period of nut ripening will likely depend on the functional responses of earlier generations of adult parasitoids emerging from other fruit and nut crops, or those released in an augmentation program.

摘要

地中海油橄榄实蝇,Ectomyelois ceratoniae(Zeller)(鳞翅目:麦蛾科),是一种重要的开心果害虫,在果实成熟和储存期间会直接损害坚果。我们研究了 5 个开心果品种对 2 种幼虫寄生蜂的三营养关系,这些品种代表了 E. ceratoniae 完全适合的坚果范围,这 2 种寄生蜂是:群居、同步生殖、单寄生、外寄生的甜菜夜蛾黑瘤姬蜂 Habrobracon hebetor(Say)(膜翅目:Braconidae),以及独居、预生殖、共生物、内寄生的白蛾黑瘤姬蜂 Venturia canescens Gravenhorst(膜翅目:Ichneumonidae)。尽管这两种寄生蜂的生活方式和发育模式不同,但它们对寄生蜂发育和繁殖的适宜性密切相关,与宿主幼虫的坚果适宜性变化相平行。尽管最具抗性的品种的内核会降低寄生蜂的人口参数,但对数量反应的潜在影响较小。要在坚果成熟的脆弱时期成功地对地中海油橄榄实蝇进行生物防治,可能取决于在其他水果和坚果作物中或在增植计划中释放的成虫寄生蜂的早期世代的功能反应。

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