Biocontrol activity and potential mechanism of Bacillus cereus G5 against Meloidogyne graminicola

IF 4.2 1区 农林科学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
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Abstract

Root-knot nematodes (Meloidogyne spp.) are highly destructive pests that cause significant yield losses annually. Biological control of nematodes has emerged as a potential alternative in sustainable agriculture. In this study, we originally isolated Bacillus cereus G5 from the rhizosphere soil of rice (Oryza sativa). Treatment with the fermentation supernatant of G5 in vitro demonstrated high toxicity to second-stage juveniles (J2) of Meloidogyne graminicola and remarkably inhibited egg hatching. Moreover, G5 steadily colonized rhizosphere soil and rice seedlings, and exhibited excellent biocontrol efficacy against M. graminicola under greenhouse conditions. Notably, the volatile organic compounds (VOCs) produced by G5 displayed high fumigant activity against M. graminicola. The G5 VOCs efficiently reduced the gall index and nematode population in rice roots, while also promoting rice growth in double-layered pot tests. Additionally, the expression of defense genes involved in the salicylic acid (OsNPR1, OsWRKY45, OsPAL1), jasmonic acid (OsJaMYB, OsAOS2) and ethylene (OsACS1) signalling pathways was significantly upregulated in rice seedlings treated with G5 VOCs. This suggests that G5 VOCs contribute to eliciting plant defense responses. Furthermore, we identified 14 major VOCs produced by G5 using solid-phase micro-extraction gas chromatography and mass spectrometry (SPEM–GC–MS). Notably, allomatrine, morantel, 1-octen-3-ol and 3-methyl-2-butanol displayed strong contact nematicidal activity. Among these, only 1-octen-3-ol demonstrated fumigant activity against J2s of M. graminicola, with an LC50 value of 758.95 mg/L at 24 h. Overall, these results indicated that the B. cereus G5 and its synthetic VOCs possess high potential as biocontrol agents for managing root-knot nematodes.

Abstract Image

蜡样芽孢杆菌 G5 对禾谷圆线虫的生物防治活性和潜在机制
根结线虫(Meloidogyne spp.)线虫的生物防治已成为可持续农业的一种潜在替代方法。在这项研究中,我们最初从水稻(Oryza sativa)的根瘤土壤中分离出蜡样芽孢杆菌 G5。在体外用 G5 的发酵上清液处理后,发现其对禾谷圆线虫第二期幼虫(J2)具有很高的毒性,并能显著抑制卵的孵化。此外,G5 还能稳定地定植于根瘤土壤和水稻秧苗,在温室条件下对禾谷圆线虫有很好的生物防治效果。值得注意的是,G5 产生的挥发性有机化合物(VOCs)对禾谷介壳虫具有很高的熏蒸活性。在双层盆栽试验中,G5 VOCs 能有效降低水稻根部的虫瘿指数和线虫数量,同时还能促进水稻生长。此外,参与水杨酸(OsNPR1、OsWRKY45、OsPAL1)、茉莉酸(OsJaMYB、OsAOS2)和乙烯(OsACS1)信号通路的防御基因的表达在使用 G5 VOCs 处理的水稻幼苗中显著上调。这表明 G5 VOCs 有助于激发植物防御反应。此外,我们还利用固相微萃取气相色谱和质谱法(SPEM-GC-MS)鉴定了 G5 产生的 14 种主要挥发性有机化合物。值得注意的是,异马菌素、莫兰特尔、1-辛烯-3-醇和 3-甲基-2-丁醇具有很强的接触杀线虫活性。总之,这些结果表明 B. cereus G5 及其合成挥发性有机化合物具有很高的生物防治根结线虫的潜力。
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来源期刊
CiteScore
7.00
自引率
8.50%
发文量
238
审稿时长
4.2 months
期刊介绍: Pesticide Biochemistry and Physiology publishes original scientific articles pertaining to the mode of action of plant protection agents such as insecticides, fungicides, herbicides, and similar compounds, including nonlethal pest control agents, biosynthesis of pheromones, hormones, and plant resistance agents. Manuscripts may include a biochemical, physiological, or molecular study for an understanding of comparative toxicology or selective toxicity of both target and nontarget organisms. Particular interest will be given to studies on the molecular biology of pest control, toxicology, and pesticide resistance. Research Areas Emphasized Include the Biochemistry and Physiology of: • Comparative toxicity • Mode of action • Pathophysiology • Plant growth regulators • Resistance • Other effects of pesticides on both parasites and hosts.
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