害虫蓟马不会把田地的边缘放在一边:首选的野花维持害虫富兰克林氏蝇(蓟翅目:蓟科)及其在商业草莓中的迁移

IF 1.2 3区 农林科学 Q3 ENTOMOLOGY
Morgane Canovas, Jean-Frederic Guay, Valerie Fournier, Conrad Cloutier
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引用次数: 0

摘要

荒地边缘野花是农业生态系统中支持害虫和非害虫蓟马种群的重要资源。与野花相关的环境因素从未被用作邻近作物中害虫蓟马密度模型的预测因子。在加拿大魁北克市附近的orlsamans岛草莓田的农业生态系统中,对野生和栽培的花进行了取样。害虫花蓟马(Frankliniella intonsa)和小麦蓟马(F. tritici)的野花寄主范围较广,对普通菊(Leucanthemum vulgare)、三叶草(Trifolium pratense)、山楂(Sonchus asper)和菊苣(chichorium intybus)有偏好。回归模型显示,蓟马在特定野花上的密度与草莓花上的密度呈显著正相关。此外,作物内的蓟马密度随距离荒地边缘的距离而降低。在作物管理方面,了解蓟马害虫与草莓田首选野生植物的关系及其空间分布具有不可否认的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pest thrips do not set field margins aside: preferred wildflowers sustain pest Frankliniella spp. (Thysanoptera: Thripidae) and their migration in commercial strawberry

Wildflowers in uncultivated field margin are important resources supporting both pest and non-pest thrips populations in agroecosystems. Environmental factors related to wildflowers have never been used as predictors to model pest thrips density in adjacent crops. Wild and cultivated flowers were sampled in strawberry field agroecosystem in Orléans Island, near Quebec City, Canada. Pest flower thrips Frankliniella intonsa and F. tritici had a wide wildflower host range, with preferences toward Leucanthemum vulgare, Trifolium pratense, Sonchus asper, and Cichorium intybus. Regression modeling revealed significant positive relationships between pest thrips density on specific wildflowers (Vicia cracca, Sinapis arvensis, S. asper, C. intybus, L. vulgare) and their density in strawberry flowers. Furthermore, thrips density within the crop decreased with distance from uncultivated field margin. Regarding crop management, knowing the associations between thrips pests and preferred wild flora as well as their spatial distribution in strawberry fields is an undeniable advantage.

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来源期刊
Arthropod-Plant Interactions
Arthropod-Plant Interactions 生物-昆虫学
CiteScore
3.00
自引率
6.20%
发文量
58
审稿时长
6 months
期刊介绍: Arthropod-Plant Interactions is dedicated to publishing high quality original papers and reviews with a broad fundamental or applied focus on ecological, biological, and evolutionary aspects of the interactions between insects and other arthropods with plants. Coverage extends to all aspects of such interactions including chemical, biochemical, genetic, and molecular analysis, as well reporting on multitrophic studies, ecophysiology, and mutualism. Arthropod-Plant Interactions encourages the submission of forum papers that challenge prevailing hypotheses. The journal encourages a diversity of opinion by presenting both invited and unsolicited review papers.
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