Efficacy of Steinernema carpocapsae as a biological control agent for Ostrinia furnacalis pupae: Effects of distance, developmental stage, and soil depth

生物 草螟科 生物病虫害防治 玉米螟 毒理 长寿 有害生物分析 病虫害综合治理 昆虫病原线虫 病虫害防治 文化控制 农学 生殖器鳞翅目 幼虫 兽医学 园艺 植物 医学 遗传学
作者
Wu Hai Chao,Rizhao Chen,Jamin Ali,Sohail Abbas,Aleena Alam,Ge Chen,Geng Chen,Jian Liang,Arzlan Abbas,Feng Xiao,Bilal Ahmad,Huang Jing-Xuan,Zhao Jian-Ye,Khalid Ali Khan,Hamed A. Ghramh,Adil Tonğa
出处
期刊:Bulletin of Entomological Research [Cambridge University Press]
卷期号:: 1-9
标识
DOI:10.1017/s0007485325000264
摘要

Abstract Asian corn borer, Ostrinia furnacalis Guenée (Lepidoptera: Crambidae), is a major pest in corn production, and its management remains a significant challenge. Current control methods, which rely heavily on synthetic chemical pesticides, are environmentally detrimental and unsustainable, necessitating the development of eco-friendly alternatives. This study investigates the potential of the entomopathogenic nematode Steinernema carpocapsae as a biological control agent for O. furnacalis pupae, focusing on its infection efficacy and the factors influencing its performance. We conducted a series of laboratory experiments to evaluate the effects of distance, pupal developmental stage, soil depth, and light conditions on nematode attraction, pupal mortality and sublethal impacts on pupal longevity and oviposition. Results demonstrated that S. carpocapsae exhibited the highest attraction to pupae at a 3 cm distance, with infection declining significantly at greater distances. Younger pupae (<12 h old), were more attractive to nematodes than older pupae, and female pupae were preferred over males. Nematode infection was highest on the head and thorax of pupae, with a significant reduction in infection observed after 24 h. Infection caused 100% mortality in pupae within 2 cm soil depth, though efficacy was reduced under light conditions. Sublethal effects included a significant reduction in the longevity of infected adults and a decrease in the number of eggs laid by infected females compared to controls. These findings underscore the potential of S. carpocapsae as an effective biocontrol agent for sustainable pest management in corn production, offering a viable alternative to chemical pesticides.
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