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在温室和田间条件下,[具体生物名称1]、[具体生物名称2]和[具体生物名称3]对番茄潜叶蛾(麦里克,1917年)的生物防治能力。

Biocontrol competence of , and against tomato leaf miner, Meyrick 1917 under greenhouse and field conditions.

作者信息

Aynalem Birhan, Muleta Diriba, Jida Mulissa, Shemekite Fekadu, Aseffa Fassil

机构信息

Department of Biotechnology, Collage of Natural and Computational Sciences, Debre Markos University, Ethiopia.

Institute of Biotechnology, Addis Ababa University, Ethiopia.

出版信息

Heliyon. 2022 Jun 9;8(6):e09694. doi: 10.1016/j.heliyon.2022.e09694. eCollection 2022 Jun.

Abstract

Tomato is one of the most important crops grown under both greenhouse and field conditions throughout the world. Its production is highly challenged by infestation of leaf miner insect, Meyrick regardless of excessive insecticide application. The chemical insecticides results insect resistance, environmental pollution, and health problems and there is urgent need for management options such as integrated pest management (IPM) to obviate these problems. Thus, the present study aims to evaluate the effectiveness of single and combination treatments of entomopathogens; and an insecticide against under greenhouse and field conditions. Two varieties ( and ) of tomato for greenhouse experiment and one () variety for field experiment were used with Tutan36%SC (insecticide with active ingredient of Chlorphenapyr 36%SC) and untreated plots as positive and negative controls, respectively. The results showed significant leaf and fruit damage reduction in all the treatments. -AAUB03, -AAUM78, and -AAUF6 showed the highest (93.4%, 89.7% and 90.1%) leaf and (93.5%, 94.4% and 95%) fruit protection under greenhouse condition. The combined treatments improved leaf protection efficacy up to 95.3% under field condition. When the entomopathogens were combined with half or quarter reduced concentrations of Tutan36% SC, it showed 94.4% of pest protection. In all the treatments, 72-96% of marketable fruit was obtained as par insecticide treatment scored 85-93%. All the entomopathogens did not cause any adverse effect on the growth of tomato rather improved shoot length, shoot branching, leaf and fruit numbers. Therefore, application of entomopathogens in single, consortium or in combination reduced the recommended concentration of Tutan36%SC to control .

摘要

番茄是世界范围内在温室和田间条件下种植的最重要作物之一。无论杀虫剂使用量多大,其生产都受到番茄潜叶蛾(Tuta absoluta Meyrick)侵害的严峻挑战。化学杀虫剂导致昆虫产生抗性、环境污染和健康问题,因此迫切需要诸如综合虫害管理(IPM)等管理方案来避免这些问题。因此,本研究旨在评估昆虫病原体单一和组合处理以及一种杀虫剂在温室和田间条件下对番茄潜叶蛾的防治效果。温室试验使用了两个番茄品种([品种名称1]和[品种名称2]),田间试验使用了一个品种([品种名称3]),分别以36%氯虫苯甲酰胺悬浮剂(Tutan36%SC,有效成分氯虫苯甲酰胺含量为36%的杀虫剂)处理地块和未处理地块作为阳性和阴性对照。结果表明,所有处理均显著减少了叶片和果实的损害。在温室条件下,-AAUB03、-AAUM78和-AAUF6对叶片的保护效果最佳(分别为93.4%、89.7%和90.1%),对果实的保护效果也最佳(分别为93.5%、94.4%和95%)。在田间条件下,组合处理使叶片保护效果提高到95.3%。当昆虫病原体与浓度减半或四分之一的Tutan36%SC混合使用时,害虫防治效果达到94.4%。在所有处理中,可销售果实的比例为72 - 96%,与杀虫剂处理(85 - 93%)相当。所有昆虫病原体对番茄生长均未造成任何不利影响,反而增加了茎长、茎分枝数、叶片数和果实数。因此,单独、组合或混合使用昆虫病原体可降低Tutan36%SC的推荐浓度来防治番茄潜叶蛾。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12ab/9213718/0162e7da1a2d/gr1.jpg

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