Aulacorthum solani(半翅目:蚜科)在抗性大豆和易感大豆上的取食行为、生活史特征和定居偏好。

Xue Han, Jiahui Lei, Yuhan Zhang, Yulong Jia, Xiaoyun Wang, Jian Liu, Zhenqi Tian
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摘要

狐尾草蚜 Aulacorthum solani Kaltenbach(半翅目:蚜科)是世界上的一种主要害虫。它能侵染包括大豆在内的多种作物,并降低产量。使用抗虫栽培品种可以有效控制虫害。Dowling 是一种大豆栽培品种,它能通过抗生和抗变态来控制甘蚜。在本研究中,我们使用电测图法(EPG)研究了蚜虫的取食行为,使用年龄阶段、双性别生命表研究了蚜虫的生命史特征,以及蚜虫在道林(抗性)和海农 51(HN51,感病)大豆栽培品种上的定居偏好。Dowling 栽培品种对蚜虫有很强的抗药性。在 Dowling 上取食的蚜虫存活率、繁殖力和寿命显著降低,若虫期延长。此外,Dowling 对蚜虫的繁殖参数也有负面影响。道林上的蚜虫个体数量明显少于 HN51,这表明道林具有抗蚜虫作用。如 EPG 所示,蚜虫取食 Dowling 后的机械阻滞波(F)明显长于取食 HN51 后的机械阻滞波(F),表明 Dowling 具有更高的机械抗性。总之,Dowling 对 A. solani 具有很强的抗性。这些结果有利于大豆田害虫综合防治和育种计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feeding behavior, life-history traits, and settling preference of Aulacorthum solani (Hemiptera: Aphididae) on resistant and susceptible soybeans.

Foxglove aphid, Aulacorthum solani Kaltenbach (Hemiptera: Aphididae), is a major pest worldwide. It can infest various crops, including soybean, and reduce yields. The use of insect-resistant cultivars can effectively manage pests. Dowling is a soybean cultivar that can control Aphis glycines through antibiosis and antixenosis. In this study, we investigated the feeding behavior of A. solani using electropenetrography (EPG), and its life-history traits using an age-stage, two-sex life table, and its settling preferences on Dowling (resistant) and Heinong 51 (HN51, susceptible) soybean cultivars. The Dowling cultivar showed strong antibiosis against A. solani. Aphids feeding on Dowling exhibited significantly reduced survival, fecundity, and longevity, and increased nymph duration. Moreover, Dowling had negative impacts on the demographic parameters of the aphids. The number of A. solani individuals was significantly less on Dowling than on HN51, indicating the antixenotic effects of Dowling. As shown using EPG, the mechanical blocking wave (F) of A. solani was significantly longer after feeding on Dowling than after feeding on HN51, indicating that Dowling has a higher mechanical resistance. In conclusion, Dowling exhibited strong resistance to A. solani. These results are beneficial for integrated pest management in soybean fields and breeding programs.

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