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两种菌株对六种化学农药的体外反应

In Vitro Response of Two Strains of to Six Chemical Pesticides.

作者信息

Mao Ruixia, Cai Xiaoxia, Wang Tengyu, Liu Ziyang, Xing Peixiang, Zhang Guisen, Zhou Wenwen, Diao Hongliang, Ma Ruiyan

机构信息

College of Plant Protection, Shanxi Agricultural University, Taiyuan 030031, China.

State Key Laboratory of Integrative Sustainable Dryland Agriculture (In Preparation), Shanxi Agricultural University, Taiyuan 030031, China.

出版信息

J Fungi (Basel). 2024 Dec 10;10(12):852. doi: 10.3390/jof10120852.

Abstract

To determine the compatibility of two new biocontrol fungi with common chemical pesticides, this study examined the effects of three insecticides, namely, avermectin, imidacloprid, and acetamiprid, and three fungicides, namely, chlorogenonil, boscalid, and kasugamycin, on the mycelial growth and spore germination of strains IF-1106 and IJ-tg19. The insecticidal effects of mixed insecticides or fungicides with good compatibility with IJ-tg19 against were tested. The results showed that the six chemical pesticides exerted different degrees of inhibition on the mycelial growth of both strains, with an obvious dose-dependent effect. The inhibitory effect of chlorothalonil on the mycelial growth of IF-1106 and IJ-tg19 was greater than 75%. Different kinds and concentrations of chemical pesticides had significant effects on spore germination. Among them, acetamiprid had little inhibitory effect on spores. Therefore, the two strains exhibited good compatibility with the insecticide acetamiprid and had some compatibility with avermectin and imidacloprid. Among the fungicides, the compatibility of the two strains of biocontrol fungi was the best with kasugamycin, followed by boscalid, while their compatibility with chlorothalonil showed the least compatibility. The median lethal time (LT) of five concentrations of IJ-tg19 (1 × 10, 1 × 10, 1 × 10, 1 × 10, and 1 × 10 spore/mL) mixed with acetamiprid against were 5.28, 4.56, 3.80, 2.73, and 2.13 days, respectively, and the insecticidal rate was higher than that of fungus treatment alone (5.19, 4.59, 4.05, 3.32, and 2.94 days, respectively) or chemical pesticide treatment (5.36 days). This study provides data support and a theoretical basis for reducing the use of chemical pesticides, improving the efficiency of -based insecticides, and optimizing the synergistic use of fungi and chemical pesticides.

摘要

为了确定两种新型生防真菌与常见化学农药的兼容性,本研究考察了三种杀虫剂,即阿维菌素、吡虫啉和啶虫脒,以及三种杀菌剂,即百菌清、啶酰菌胺和春雷霉素,对菌株IF - 1106和IJ - tg19菌丝生长和孢子萌发的影响。测试了与IJ - tg19兼容性良好的混合杀虫剂或杀菌剂对其的杀虫效果。结果表明,六种化学农药对两种菌株的菌丝生长均有不同程度的抑制作用,且具有明显的剂量依赖性效应。百菌清对IF - 1106和IJ - tg19菌丝生长的抑制作用大于75%。不同种类和浓度的化学农药对孢子萌发有显著影响。其中,啶虫脒对孢子的抑制作用较小。因此,这两种菌株与杀虫剂啶虫脒表现出良好的兼容性,与阿维菌素和吡虫啉也有一定的兼容性。在杀菌剂中,这两种生防真菌菌株与春雷霉素的兼容性最好,其次是啶酰菌胺,而它们与百菌清的兼容性最差。五种浓度的IJ - tg19(1×10、1×10、1×10、1×10和1×10孢子/毫升)与啶虫脒混合对其的半数致死时间(LT)分别为5.28、4.56、3.80、2.73和2.13天,杀虫率高于单独真菌处理(分别为5.19、4.59、4.05、3.32和2.94天)或化学农药处理(5.36天)。本研究为减少化学农药使用、提高基于真菌的杀虫剂效率以及优化真菌与化学农药的协同使用提供了数据支持和理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4cd/11677660/bbefa6282272/jof-10-00852-g001.jpg

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