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与法兰西金盏菊伴种通过排放空气传播的柠檬烯来保护番茄植株免受温室白粉虱的侵害。

Companion planting with French marigolds protects tomato plants from glasshouse whiteflies through the emission of airborne limonene.

机构信息

School of Natural and Environmental Sciences, Newcastle University, Newcastle-upon-Tyne, United Kingdom.

Stockbridge Technology Centre, North Yorkshire, United Kingdom.

出版信息

PLoS One. 2019 Mar 1;14(3):e0213071. doi: 10.1371/journal.pone.0213071. eCollection 2019.

DOI:10.1371/journal.pone.0213071
PMID:30822326
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6396911/
Abstract

Horticulturalists and gardeners in temperate regions often claim that planting marigolds next to tomato plants protects the tomatoes from the glasshouse whitefly (Trialeurodes vaporariorum Westwood). If shown to hold true, this technique could be used in larger-scale tomato production, protecting the crop and helping to introduce greater plant diversity into these agro-ecosystems. Here we present two large-scale glasshouse trials corresponding to the two main ways growers are likely to use marigolds to control whiteflies. In the first, marigolds are grown next to tomato throughout the growing period and we quantify whitefly population growth from the seedling stage over a 48 day infestation period. Here we show that association with marigolds significantly slows whitefly population development. Introducing additional whitefly-attractive 'pull' plants around the perimeter of plots has little effect, but reducing the proportion of marigolds and introducing other non-hosts of whiteflies (basil, nasturtium and Chinese cabbage) also reduces whitefly populations on tomato. The second experiment assesses the efficacy of marigolds when used as an 'emergency' measure. Here we allow whitefly populations to build to a high density on unprotected tomatoes then introduce marigolds and assess whitefly population over a further period. Following laboratory work showing limonene to be a major chemical component of French marigolds and a negative behaviour response of whiteflies to this compound, limonene dispensers are added as an additional treatment to this experiment. "Emergency" marigold companion planting yielded minimal reductions in whitefly performance, but the use of limonene dispensers was more effective. Our work indicates that companion planting short vine tomatoes with French marigolds throughout the growing season will slow development of whitefly populations. Introducing marigolds to unprotected tomatoes after significant whitefly build-up will be less effective. The use of limonene dispensers placed near to tomato plants also shows promise. It is argued that this work supports the possibility of the development of a mixture of tomato companion plants that infer 'associational resistance' against many major invertebrate pests of tomato. Such a mixture, if comprising edible or ornamental plants, would be economically viable, would reduce the need for additional chemical and biological control, and, if used outdoors, would generate plant-diverse agro-ecosystems that are better able to harbour invertebrate wildlife.

摘要

在温带地区,园艺家和园丁们常说在番茄植株旁种植万寿菊可以防止玻璃温室粉虱(Trialeurodes vaporariorum Westwood)侵害番茄。如果这一说法得到证实,这种技术可以应用于大规模的番茄生产中,保护作物,并有助于在这些农业生态系统中引入更多的植物多样性。在这里,我们呈现了两个与种植者可能使用万寿菊来控制粉虱的两种主要方式相对应的大型温室试验。在第一个试验中,万寿菊在番茄整个生长期间都种植在旁边,我们从幼苗阶段开始量化了 48 天的感染期内粉虱种群的生长情况。结果表明,与万寿菊的共生显著减缓了粉虱种群的发展。在地块周围引入其他吸引粉虱的“拉”植物几乎没有效果,但减少万寿菊的比例并引入其他非粉虱宿主(罗勒、旱金莲和白菜)也会降低番茄上的粉虱数量。第二个实验评估了在紧急情况下使用万寿菊的效果。在这里,我们让粉虱种群在未受保护的番茄上大量繁殖,然后引入万寿菊,并在进一步的时间内评估粉虱种群。在实验室工作表明柠檬烯是法国万寿菊的主要化学成分,并且粉虱对这种化合物有负面的行为反应之后,我们将柠檬烯分配器作为该实验的附加处理添加。“紧急”万寿菊伴种的效果最小,但使用柠檬烯分配器更为有效。我们的工作表明,在整个生长季节将短藤番茄与法国万寿菊伴种将减缓粉虱种群的发展。在粉虱大量繁殖后将万寿菊引入未受保护的番茄中效果较差。将柠檬烯分配器放置在靠近番茄植株的地方也显示出了希望。有人认为,这项工作支持开发一种混合番茄伴生植物的可能性,这种植物可以对番茄的许多主要无脊椎害虫产生“关联抗性”。如果这种混合物包含可食用或观赏植物,那么它在经济上是可行的,将减少对额外的化学和生物控制的需求,如果在户外使用,将产生植物多样化的农业生态系统,这些生态系统更能够容纳无脊椎野生动物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f3b/6396911/2956c9e92a62/pone.0213071.g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f3b/6396911/f359f4173f32/pone.0213071.g001.jpg
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https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f3b/6396911/f359f4173f32/pone.0213071.g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f3b/6396911/89050be87aa9/pone.0213071.g002.jpg
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