在樱桃树冠条上施用汉森氏菌与久效磷(spinosad)复配杀虫剂,可减少杀虫剂用量,同时不影响对樱桃果蝇的控制

IF 2.5 2区 农林科学 Q1 AGRONOMY Crop Protection Pub Date : 2024-07-31 DOI:10.1016/j.cropro.2024.106868
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引用次数: 0

摘要

樱桃果蝇是一种重要的甜樱桃害虫,传统上一直使用广谱杀虫剂进行控制。众所周知,各种酵母菌能吸引和刺激苍蝇在酵母菌覆盖的表面取食。我们在意大利和德国的六项田间试验中,研究了一种基于汉逊酵母菌和杀虫剂丁硫克百威的引诱-杀灭制剂,该制剂用于 80-100 厘米宽、1 米高的树冠带,以控制樱桃中的铃木虫害。诱杀制剂的施用剂量为每公顷施用 21.6 至 34.9 克 spinosad(根据培训系统而定),可使受樱桃小铃虫侵染的百分比降低 41.74% 至 84.26%,沉积卵的平均数量降低 79.51% 至 95.56%。其效果与常规单独施用 spinosad 的效果相当,后者的施用剂量为每公顷 84 至 216 克。常规施药使受侵染樱桃的比例降低了 53.00-92.00%,虫卵数量减少了 77.10-92.96%。诱杀技术通过在樱桃树的有限部分施药,减少了高达 90% 的杀虫剂用量。这种有针对性的方法不仅最大限度地减少了每公顷的杀虫剂用量,还降低了经处理果实的残留水平。
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Canopy strip applications of Hanseniaspora uvarum combined with spinosad reduce insecticide use without compromising Drosophila suzukii control in cherry

Drosophila suzukii, a significant sweet cherry pest, has traditionally been controlled using broad-spectrum insecticides. Various yeasts are known to attract and stimulate flies to feed on yeast-covered surfaces. We investigated an attract-and-kill formulation based on the yeast Hanseniaspora uvarum and the insecticide spinosad, applied to an 80–100 cm wide canopy strip at 1-m height in six field trials across Italy and Germany to manage D. suzukii infestation in cherry. The attract-and-kill formulation, applied at a dose ranging from 21.6 to 34.9 g per hectare of spinosad, according to the training system, decreased the percentage of D. suzukii infested cherries by 41.74–84.26% and the average number of deposited eggs by 79.51–95.56%. The efficacy was comparable to the conventional application of spinosad alone, which was applied at a dose ranging from 84 to 216 g per hectare. The conventional application decreased the percentage of infested cherries by 53.00–92.00% and reduced the number of deposited eggs by 77.10–92.96%. The attract-and-kill technique led to a reduction of up to 90% of insecticide use by targeting the application on limited section of the cherry tree. The targeted approach not only minimized insecticide quantities per hectare, but also resulted in lower residue levels on treated fruits.

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来源期刊
Crop Protection
Crop Protection 农林科学-农艺学
CiteScore
6.10
自引率
3.60%
发文量
200
审稿时长
29 days
期刊介绍: The Editors of Crop Protection especially welcome papers describing an interdisciplinary approach showing how different control strategies can be integrated into practical pest management programs, covering high and low input agricultural systems worldwide. Crop Protection particularly emphasizes the practical aspects of control in the field and for protected crops, and includes work which may lead in the near future to more effective control. The journal does not duplicate the many existing excellent biological science journals, which deal mainly with the more fundamental aspects of plant pathology, applied zoology and weed science. Crop Protection covers all practical aspects of pest, disease and weed control, including the following topics: -Abiotic damage- Agronomic control methods- Assessment of pest and disease damage- Molecular methods for the detection and assessment of pests and diseases- Biological control- Biorational pesticides- Control of animal pests of world crops- Control of diseases of crop plants caused by microorganisms- Control of weeds and integrated management- Economic considerations- Effects of plant growth regulators- Environmental benefits of reduced pesticide use- Environmental effects of pesticides- Epidemiology of pests and diseases in relation to control- GM Crops, and genetic engineering applications- Importance and control of postharvest crop losses- Integrated control- Interrelationships and compatibility among different control strategies- Invasive species as they relate to implications for crop protection- Pesticide application methods- Pest management- Phytobiomes for pest and disease control- Resistance management- Sampling and monitoring schemes for diseases, nematodes, pests and weeds.
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