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芽孢杆菌菌株合成挥发物通过增强氧化应激反应对线虫具有高致死率并促进水稻生长。

High killing rate of nematode and promotion of rice growth by synthetic volatiles from Bacillus strains due to enhanced oxidative stress response.

作者信息

Ali Qurban, Yu Chenjie, Wang Yujie, Sheng Tao, Zhao Xiaozhen, Wu Xiaohui, Jing Liang, Gu Qin, Wu Huijun, Gao Xuewen

机构信息

Key Laboratory of Integrated Management of Crop Diseases and Pests, Department of Plant Pathology, College of Plant Protection, Nanjing Agricultural University, Nanjing, China.

出版信息

Physiol Plant. 2023 Jan;175(1):e13868. doi: 10.1111/ppl.13868.

Abstract

The plant parasitic nematode Aphelenchoides besseyi is a major pest that poses serious threats to different vegetables and crop plants. In the present study, volatiles isolated from Bacillus spp. were utilized as green biocontrol agents to overcome nematodes. In in vitro experiment, Bacillus spp. GBSC56, SYST2, and FZB42 showed the strongest nematicidal activity with killing rates of 80.78%, 75.69%, and 60.45%, respectively, as compared with control. The selected synthetic volatile organic compounds (VOCs), namely albuterol, benzaldehyde (BDH), 1,2-benzisothiazol-3(2H)-one (1,2-HIT), dimethyl disulfide (DMDS), 2-undecanone (2-UD), and 1,3-propanediole (1,3-PD), exhibited strong nematicidal activity, with A. besseyi killing rate of 85.58%, 82.65%, 81.75%, 80.36%, 84.45%, and 82.36%, respectively, at 400 μg/mL. Microscopic analysis proved that the rapid mortality was due to the production of reactive oxygen species (ROS). Molecular docking attributed this ROS production to the nematicidal effect of synthetic VOCs on NADH DEHYDROGENASE SUBUNIT 2, which is known to play a critical role in the suppression of ROS in nematode models. In a greenhouse experiment, the Bacillus strains GBSC56, SYST2, and FZB42 and their synthetic VOCs significantly improved the physiological parameters in terms of growth promotion traits. In addition, selected genes related to growth promotion and defense genes showed a significant upregulation of their expression in rice seedlings treated with those synthetic VOCs. Overall, these findings revealed that the selected Bacillus strains and their synthetic VOCs possess high potential against A. besseyi. Moreover, this study also sheds new light on the mechanisms by which specific Bacillus nematicidal VOCs influence important genes involved in rice plant growth promotion and could effectively be used to suppress plant parasitic nematodes.

摘要

植物寄生线虫贝西滑刃线虫是一种对不同蔬菜和作物构成严重威胁的主要害虫。在本研究中,从芽孢杆菌属分离出的挥发物被用作绿色生物防治剂来对抗线虫。在体外实验中,与对照相比,芽孢杆菌属菌株GBSC56、SYST2和FZB42表现出最强的杀线虫活性,杀灭率分别为80.78%、75.69%和60.45%。所选的合成挥发性有机化合物(VOCs),即沙丁胺醇、苯甲醛(BDH)、1,2-苯并异噻唑-3(2H)-酮(1,2-HIT)、二甲基二硫醚(DMDS)、2-十一酮(2-UD)和1,3-丙二醇(1,3-PD),表现出很强的杀线虫活性,在400μg/mL时,对贝西滑刃线虫的杀灭率分别为85.58%、82.65%、81.75%、80.36%、84.45%和82.36%。显微镜分析证明,快速死亡是由于活性氧(ROS)的产生。分子对接将这种ROS的产生归因于合成VOCs对线虫模型中烟酰胺腺嘌呤二核苷酸脱氢酶亚基2的杀线虫作用,已知该亚基在抑制线虫模型中的ROS方面起关键作用。在温室实验中,芽孢杆菌菌株GBSC56、SYST2和FZB42及其合成VOCs在促进生长性状方面显著改善了生理参数。此外,与生长促进相关的选定基因和防御基因在用这些合成VOCs处理的水稻幼苗中显示出其表达的显著上调。总体而言,这些发现表明所选的芽孢杆菌菌株及其合成VOCs对贝西滑刃线虫具有很高的防治潜力。此外,本研究还为特定芽孢杆菌杀线虫VOCs影响参与水稻植株生长促进的重要基因的机制提供了新的线索,并可有效地用于抑制植物寄生线虫。

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