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植物介导的有益微生物和一种植物强化剂对番茄叶螨的影响

Plant-Mediated Effects of Beneficial Microbes and a Plant Strengthener against Spider Mites in Tomato.

作者信息

Samaras Konstantinos, Mourtiadou Soultana, Arampatzis Theodoros, Kakagianni Myrsini, Feka Maria, Wäckers Felix, Papadopoulou Kalliope K, Broufas George D, Pappas Maria L

机构信息

Laboratory of Agricultural Entomology and Zoology, Department of Agricultural Development, Democritus University of Thrace, 68200 Orestiada, Greece.

Laboratory of Plant and Environmental Biotechnology, Department of Biochemistry and Biotechnology, University of Thessaly, 41500 Larissa, Greece.

出版信息

Plants (Basel). 2023 Feb 18;12(4):938. doi: 10.3390/plants12040938.

Abstract

The two-spotted spider mite is a polyphagous herbivore with a worldwide distribution, and is a serious pest in tomato and other crops. As an alternative to chemical pesticides, biological control with the release of natural enemies such as predatory mites represent an efficient method to control in many crops, but not in tomato. Other biological control agents, such as beneficial microbes, as well as chemical compounds, which can act as plant defense elicitors that confer plant resistance against pests and pathogens, may prove promising biological solutions for the suppression of spider mite populations in tomato. Here, we assessed this hypothesis by recording the effects of a series of fungal and bacterial strains and the plant strengthener acibenzolar-s-methyl for their plant-mediated effects on performance in two tomato cultivars. We found significant negative effects on the survival, egg production and spider mite feeding damage on plants inoculated with microbes or treated with the plant strengthener as compared to the control plants. Our results highlight the potential of beneficial microbes and plant strengtheners in spider mite suppression in addition to plant disease control.

摘要

二斑叶螨是一种多食性食草动物,分布于世界各地,是番茄和其他作物的严重害虫。作为化学农药的替代品,释放捕食螨等天敌进行生物防治是控制许多作物害虫的有效方法,但在番茄上却不行。其他生物防治剂,如有益微生物,以及可作为植物防御激发子、赋予植物抗害虫和病原体能力的化合物,可能是抑制番茄叶螨种群的有前景的生物学解决方案。在此,我们通过记录一系列真菌和细菌菌株以及植物强化剂烯丙苯噻唑的植物介导效应,评估了它们对两个番茄品种中叶螨性能的影响,以此来验证这一假设。我们发现,与对照植株相比,接种微生物或用植物强化剂处理的植株上,叶螨的存活、产卵和取食危害均受到显著负面影响。我们的结果突出了有益微生物和植物强化剂在抑制叶螨以及控制植物病害方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deb3/9959994/022645bccae3/plants-12-00938-g001.jpg

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