Fall armyworm females choose host plants that are detrimental to their offspring's performance but young larvae amend their mother's choices

IF 1.4 3区 农林科学 Q2 ENTOMOLOGY Entomologia Experimentalis et Applicata Pub Date : 2024-08-29 DOI:10.1111/eea.13512
Fabián R. Ortiz-Carreón, Julio S. Bernal, Julio C. Rojas, Leopoldo Cruz-López, Michael V. Kolomiets, Edi A. Malo
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Abstract

Fall armyworm (FAW), Spodoptera frugiperda (J.E. Smith) (Lepidoptera: Noctuidae), has a long association with maize (Zea mays mays L., Poaceae) and is among the crop's most significant pests worldwide. We contrasted the preference for and performance of FAW on three maize cultivars: the Mexican landrace Tuxpeño, the USA inbred B73 and B73-lox10; B73-lox10 is deficient in production of jasmonic acid (JA), green leaf volatiles (GLVs) and herbivore-induced plant volatiles (HIPVs). Female oviposition and neonate colonization preferences were assessed in triple-choice tests in greenhouse settings. Performance was assessed on the bases of larval, pupal and adult weights, larval and pupal development times, and adult longevity. We expected females to preferentially oviposit on plants on which their offspring performed best, and neonates to randomly colonize plants because they disperse aerially, presumably oriented solely by wind currents. Females preferred to oviposit on Tuxpeño plants, followed by B73-lox10 and B73 plants, whereas their offspring performed best on B73-lox10 and poorest on Tuxpeño. In contrast, neonates preferentially colonized plants on which they performed best, B73-lox10, though initially and transiently they colonized plants on which they performed poorly, B73 and Tuxpeño. Altogether, our results showed that FAW females preferred to oviposit on maize plants on which their offspring's performance was poorest (Tuxpeño), and neonates preferentially colonized plants on which their own performance was best (B73-lox10), though they initially colonized plants that were detrimental to their performance (Tuxpeño, B73). These results suggested that the ovipositional choices of FAW mothers are uncoupled from their offspring's performance, but newborn offspring rectified their mother's sub-optimal host plant choice by colonizing plants that enhanced their own performance. Notably, these results also suggested that aerially dispersing (ballooning) FAW larvae do not colonize plants randomly, and that plant volatiles (GLVs, HIPVs) and JA may be relevant to host plant selection by ballooning larvae.

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雌性秋粘虫会选择不利于其后代生长的寄主植物,但幼体会改变其母亲的选择
秋粘虫(FAW),又称夜蛾科(Spodoptera frugiperda, J.E. Smith),与玉米(Zea mays mays L.,禾草科)有着悠久的联系,是世界范围内危害作物最严重的害虫之一。比较了墨西哥地方玉米Tuxpeño、美国自交系B73和B73-lox10对FAW的偏好和性能;B73-lox10缺乏茉莉酸(JA)、绿叶挥发物(GLVs)和草食诱导植物挥发物(HIPVs)的产生。在温室环境下,通过三项选择测试评估雌性产卵和新生儿定植偏好。以幼虫、蛹和成虫体重、幼虫和蛹发育时间、成虫寿命为评价指标。我们预计雌性会优先在其后代表现最好的植物上产卵,而幼虫则会随机在植物上定居,因为它们是通过空中传播的,可能只受气流的影响。雌虫偏好在Tuxpeño植株上产卵,其次是B73-lox10和B73植株,而其后代在B73-lox10植株上产卵效果最好,在Tuxpeño植株上产卵效果最差。相比之下,新生儿优先定殖在它们表现最好的植物B73-lox10上,尽管它们最初和短暂地定殖在它们表现不佳的植物B73和Tuxpeño上。综上所述,我们的研究结果表明,雌性FAW倾向于在其后代表现最差的玉米植株上产卵(Tuxpeño),而新生FAW倾向于在其自身表现最好的植株上产卵(B73-lox10),尽管它们最初会在对其表现有害的植株上产卵(Tuxpeño, B73)。这些结果表明,一胎鸟母亲的产卵选择与其后代的表现是不耦合的,但新生后代通过定殖提高自身表现的植物来纠正母亲的次优寄主植物选择。值得注意的是,这些结果也表明FAW的空中分散(气球化)幼虫并不是随机定殖的,植物挥发物(GLVs, HIPVs)和JA可能与气球化幼虫对寄主植物的选择有关。
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来源期刊
CiteScore
3.90
自引率
5.30%
发文量
138
审稿时长
4-8 weeks
期刊介绍: Entomologia Experimentalis et Applicata publishes top quality original research papers in the fields of experimental biology and ecology of insects and other terrestrial arthropods, with both pure and applied scopes. Mini-reviews, technical notes and media reviews are also published. Although the scope of the journal covers the entire scientific field of entomology, it has established itself as the preferred medium for the communication of results in the areas of the physiological, ecological, and morphological inter-relations between phytophagous arthropods and their food plants, their parasitoids, predators, and pathogens. Examples of specific areas that are covered frequently are: host-plant selection mechanisms chemical and sensory ecology and infochemicals parasitoid-host interactions behavioural ecology biosystematics (co-)evolution migration and dispersal population modelling sampling strategies developmental and behavioural responses to photoperiod and temperature nutrition natural and transgenic plant resistance.
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