特定の被覆作物が害虫を攻撃する昆虫を引き寄せる可能性(Specific cover crops may help attract insects that target harmful pests)

20026-08-27 ペンシルベニア州立大学(Penn State)

ペンシルベニア州立大学の研究チームは、特定のカバークロップ(被覆作物)を畑に導入することで、害虫を捕食・寄生する有益な昆虫を誘引し、農作物の害虫管理に役立てられる可能性を示した。研究では、カバークロップの種類によって、昆虫群集の構成や有益な捕食者・寄生者の集まり方が異なることを調査。単に土壌侵食防止や雑草抑制を目的に作物を選ぶのではなく、害虫の天敵を呼び込む機能を考慮してカバークロップを選定することが重要だとした。こうした生物的防除を農業生産体系に組み込むことで、化学農薬への依存を減らしながら害虫を管理できる可能性がある。また、カバークロップは土壌保全や生物多様性の向上にも寄与するため、複数の生態系サービスを同時に高める農業技術として期待される。研究成果は、作物と昆虫の相互作用を踏まえた持続可能な害虫管理や、環境負荷の低い農業体系の設計に有用な知見を提供する。

<関連情報>

防御資源配分におけるトレードオフ:土壌の遺産が植物・草食動物・捕食動物の動態をどのように調節するか Trade-offs in defense allocation: How soil legacy modulates plant-herbivore-predator dynamics

Sujay M. Paranjape, Sahil V. Pawar, Annett Richter, Nathaniel McCartney, Gary W. Felton, Georg Jander, Jared G. Ali
Basic and Applied Ecology  Available online: 18 April 2026
DOI:https://doi.org/10.1016/j.baae.2026.04.003

特定の被覆作物が害虫を攻撃する昆虫を引き寄せる可能性(Specific cover crops may help attract insects that target harmful pests)

Abstract

Cover crops, non-cash crops grown between cash crop cycles, are increasingly recognized for their ability to improve soil quality and regulate pest populations. Yet the ecological mechanisms by which cover crop legacies influence plant defenses and multitrophic interactions remain poorly understood. We hypothesized that distinct cover crops establish unique soil legacies that shape the defensive responses of subsequent plants to herbivory, leading to trade-offs between direct and indirect defense strategies. Using soils conditioned by three cover crops (Pea (Pisum sativum), Radish (Raphanus sativus), and Triticale (× Triticosecale) and a fallow control, we examined how these soil legacies affected maize defense chemistry and interactions with both herbivores and their natural enemies. We measured herbivory-induced volatile emissions, benzoxazinoid (BX) toxins in plants and herbivores, and protease inhibitor activity, and conducted predator choice assays to assess changes in trophic interactions. Distinct cover crop legacies resulted in defense trade-offs in maize. Plants grown in pea conditioned soils emitted higher proportions of indole in their volatile blends, enhancing indirect defenses, but exhibited lower BX levels, reducing direct chemical protection. Conversely, maize from fallow-conditioned soils invested more in direct chemical defenses but had weaker volatile-mediated attraction of predators. Notably, predators preferred herbivores fed on pea-conditioned maize, which accumulated more BXs despite lower plant BX content. Our findings show that cover crop legacies can act as an ecological levers, influencing how plants allocate defenses shape aboveground food web dynamics. By aligning cover crop selection with desired defense outcomes, farmers could leverage soil legacies as a natural means of pest suppression, linking fundamental ecological processes with sustainable agricultural management.

1207植物保護
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