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丁香精油挥发物对梨木虱(半翅目:木虱科)的驱避活性及基于纳米纤维的驱避剂的研制

Repellent Activity of Clove Essential Oil Volatiles and Development of Nanofiber-Based Dispensers against Pear Psyllids (Hemiptera: Psyllidae).

作者信息

Czarnobai De Jorge Bruna, Hummel Hans E, Gross Jürgen

机构信息

Institute for Plant Protection in Fruit Crops and Viticulture, Julius Kühn-Institut, Federal Research Centre for Cultivated Plants, Schwabenheimer Str. 101, 69221 Dossenheim, Germany.

Plant Chemical Ecology, Technical University of Darmstadt, Schnittspahnstr. 4, 64287 Darmstadt, Germany.

出版信息

Insects. 2022 Aug 18;13(8):743. doi: 10.3390/insects13080743.

Abstract

Pear psyllids are the main vectors of the pathogen ' Phytoplasma pyri' causing pear decline. Based on earlier reports, we tested the behavioral activity of the major synthetic compounds of clove essential oil (eugenol, eugenyl acetate, and β-caryophyllene) against and . Of six mixtures tested in olfactometer assays, a formulation consisting of three specific compounds (M6 mixture) demonstrated a repellent effect on both psyllid species. In addition, this formulation masked the odor of the host cv. Williams Christ, disturbing the host finding ability of . Electrospun fibers were produced with biocompatible polymers poly(ε-caprolactone), cellulose acetate, and solvents formic acid and acetic acid, loaded with the repellent mixture to test their efficacy as dispensers of repellents in laboratory and field. The fibers produced were repellent to and effectively masked the odors of pear plants in olfactometer tests. In a pear orchard, we compared the captures of pear psyllids in green-colored attractive traps treated with nanofibers loaded with M6 mixture or unloaded nanofibers (blank). The result showed no differences in the captures of between treatments. The release rates of volatiles from the fibers were evaluated weekly over 56 days. The fibers were able to entrap the major compound of the M6 mixture, eugenol, but the release rates were significantly reduced after 21 days. Our results suggest that biodegradable dispensers could be produced with electrospinning, but further improvements are necessary to use repellents as a management tool for pear psyllids in the field.

摘要

梨木虱是导致梨树衰退的病原体“梨植原体”的主要传播媒介。基于早期报告,我们测试了丁香精油的主要合成化合物(丁香酚、乙酸丁香酚酯和β-石竹烯)对[此处原文缺失相关对象]的行为活性。在嗅觉仪试验中测试的六种混合物中,一种由三种特定化合物组成的配方(M6混合物)对两种木虱都表现出驱避作用。此外,这种配方掩盖了宿主品种威廉姆斯梨的气味,干扰了[此处原文缺失相关对象]寻找宿主的能力。用生物相容性聚合物聚(ε-己内酯)、醋酸纤维素以及甲酸和乙酸溶剂制备了电纺纤维,并负载驱避混合物,以测试它们在实验室和田间作为驱避剂载体的功效。所制备的纤维对[此处原文缺失相关对象]具有驱避作用,并且在嗅觉仪测试中有效地掩盖了梨树的气味。在一个梨园中,我们比较了用负载M6混合物的纳米纤维或未负载纳米纤维(空白)处理的绿色诱捕器中梨木虱的捕获量。结果表明,不同处理之间梨木虱的捕获量没有差异。在56天内每周评估纤维中挥发物的释放速率。这些纤维能够捕获M6混合物的主要化合物丁香酚,但21天后释放速率显著降低。我们的结果表明,可以通过电纺丝制备可生物降解的载体,但要将驱避剂用作田间梨木虱的管理工具,还需要进一步改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afbf/9409830/3afd9267f2cd/insects-13-00743-g001.jpg

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