首页> 外文期刊>European journal of entomology >Host plants and aphid hosts influence the selection behaviour of three aphid parasitoids (Hymenoptera: Braconidae: Aphidiinae)
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Host plants and aphid hosts influence the selection behaviour of three aphid parasitoids (Hymenoptera: Braconidae: Aphidiinae)

机译:宿主植物和蚜虫宿主会影响三个蚜虫寄生虫的选择行为(Hymenoptera:Braconidae:蚜虫)

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Aphis fabae and Myzus persicae (Hemiptera: Aphididae) are insect pests that damage sugar beet and bean crops. Both are responsible for losses in yield and transmission of viral diseases, and may be present on the same host at the same time. Three parasitoid species, Aphidius colemani , Lysiphlebus testaceipes and Lysiphlebus fabarum (Hymenoptera: Braconidae: Aphidiinae) have the potential to be used as biological control agents against at least one of these species of aphids. As a first step prior to the implementation of a biological control program, our aim was to understand the host selection behaviour of the parasitoids, particularly when both aphids are present. We recorded the host acceptance (number of insertions of the ovipositor / number of antennal contacts), suitability (number of mummies / the number of insertions of the ovipositor) and emergence (number of adults emerging from mummies) of these three aphid parasitoids when parasitizing the two aphids. We also analyzed the effect of the host plant on the host preference of the parasitoid. Females of each parasitoid species (n = 15) were exposed to 20 aphids of A. fabae or M. persicae , or a mixture of these two species of aphids, for 15 min, on a leaf disc of each of the two host plants, sugar beet and bean. Higher host acceptance and suitability were recorded for A . colemani attacking both species of aphid: A. fabae (43 and 46%) and M. persicae (43 and 46%) on beet and bean plants respectively, compared to L. testaceipes and L. fabarum . L. testaceipes and L. fabarum showed a clear preference for A. fabae . L. fabarum accepted M. persicae on both plants only when it was mixed with A. fabae, probably due to a confusion effect. We found that the host plant played a significant role in host acceptance, host suitability. We conclude that A. colemani is the better of the three parasitoids studied for the biological control in bean, and particularly, sugar beet crops.
机译:Aphis fabae和myzus persicae(hemiptera:蚜虫)是害虫害虫甜菜和豆类作物的害虫。两者都负责病毒疾病的产量和传播损失,并且可能同时存在于同一宿主上。三种寄生虫物种,蚜虫科学生,Lysiphlebus Testaceipes和Lysiphlebus Fabarum(Hymenoptera:Braconidae:蚜虫)具有抗针对这些物种中的至少一种的生物对照剂的可能性。作为在实施生物控制程序之前的第一步,我们的目的是理解寄生素的宿主选择行为,特别是当存在两个蚜虫时。我们录制了主机接受(输卵管的插入次数/抗腹触点的数量),适用性(种植体的插入次数/分配的数量)以及在寄生过程中的这三个蚜虫寄生囊肿的出现(从木乃伊出现的成年人数量)两个蚜虫。我们还分析了宿主植物对寄生虫宿主偏好的影响。将每种寄生虫种类(n = 15)的雌性暴露于20个蚜虫的20个蚜虫,或这两个蚜虫的混合物15分钟,在两个宿主植物的叶片上,甜菜和豆。为a记录了更高的主机接受和适用性。与L. testapees和L. Fabarum相比,Cohemani分别攻击甜菜和豆类植物的蚜虫:A.Babae(43和46%)和M.Spericae(43和46%)。 L. testaceipes和L. Fabarum表现出对A. fabae的清晰偏好。 L. Fabarum在两种植物中仅接受M. Persicae,只有在与A.Babae混合时,可能是由于混淆效果。我们发现,主机厂在主机接受方面发挥了重要作用,主机适宜性。我们得出结论,A.COLEMANI在豆类生物控制中研究的三种寄生蛋白是更好的,特别是糖甜菜作物。

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