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XZ16-1对小麦白粉病的拮抗活性及抑制机制与对小麦的促生长作用

Antagonistic Activity and Mechanism of XZ16-1 Suppression of Wheat Powdery Mildew and Growth Promotion of Wheat.

作者信息

Yi Yan-Jie, Yin Ya-Nan, Yang Ying-Ao, Liang Yu-Qian, Shan You-Tian, Zhang Chang-Fu, Zhang Yu-Rong, Liang Zhen-Pu

机构信息

School of Biological Engineering, Henan University of Technology, Zhengzhou 450001, China.

College of Food Science and Technology, Henan University of Technology, Zhengzhou 450001, China.

出版信息

Phytopathology. 2022 Dec;112(12):2476-2485. doi: 10.1094/PHYTO-04-22-0118-R. Epub 2022 Nov 17.

Abstract

Wheat powdery mildew caused by f. sp. () is one of the most serious wheat diseases in the world. Biological control is considered an environmentally safe approach to control plant diseases. Here, to develop effective biocontrol agents for controlling wheat powdery mildew, antagonistic strain XZ16-1 was isolated and identified as based on the morphological, biochemical, and physiological characteristics and 16S rDNA sequence. The culture filtrate of XZ16-1 and its extracts had a significant inhibitory effect on the spore germination of . Moreover, the therapeutic and prevention efficacy of the 100% culture filtrate on wheat powdery mildew reached 81.18 and 83.72%, respectively, which was better than that of chemical fungicide triadimefon. Further antimicrobial mechanism analysis showed that the XZ16-1 culture filtrate could inhibit the development of powdery mildew spores by disrupting the cell membrane integrity, causing reductions in the mitochondrial membrane potential, and inducing the accumulation of reactive oxygen species in the spores. Biochemical detection indicated that XZ16-1 could solubilize phosphate, fix nitrogen, and produce hydrolases, lipopeptides, siderophores, and indole-3-acetic acid. Defense-related enzymes activated in wheat seedlings treated with the culture filtrate indicated that disease resistance was induced in wheat to resist pathogens. Furthermore, a 10 CFU/ml suspension of XZ16-1 increased the height, root length, fresh weight, and dry weight of wheat seedlings by 77.13, 63.46, 76.73, and 19.16%, respectively, and showed good growth-promotion properties. This study investigates the antagonistic activity and reveals the action mechanism of XZ16-1, which can provide an effective microbial agent for controlling wheat powdery mildew.

摘要

由禾布氏白粉菌小麦专化型(Blumeria graminis f. sp. tritici)引起的小麦白粉病是世界上最严重的小麦病害之一。生物防治被认为是一种环境安全的植物病害防治方法。在此,为了开发用于防治小麦白粉病的有效生物防治剂,基于形态、生化和生理特征以及16S rDNA序列,分离并鉴定出拮抗菌株XZ16-1为枯草芽孢杆菌(Bacillus subtilis)。XZ16-1的培养滤液及其提取物对禾布氏白粉菌(Blumeria graminis)的孢子萌发具有显著抑制作用。此外,100%培养滤液对小麦白粉病的治疗和预防效果分别达到81.18%和83.72%,优于化学杀菌剂三唑酮。进一步的抗菌机制分析表明,XZ16-1培养滤液可通过破坏细胞膜完整性、导致线粒体膜电位降低以及诱导孢子中活性氧的积累来抑制白粉病孢子的发育。生化检测表明,XZ16-1可以溶解磷酸盐、固定氮并产生水解酶、脂肽、铁载体和吲哚-3-乙酸。用培养滤液处理的小麦幼苗中激活的防御相关酶表明,小麦被诱导产生抗病性以抵抗病原体。此外,10⁸ CFU/ml的XZ16-1悬浮液使小麦幼苗的株高、根长、鲜重和干重分别增加了77.13%、63.46%、76.73%和19.16%,并表现出良好的促生长特性。本研究调查了XZ16-1的拮抗活性并揭示了其作用机制,可为防治小麦白粉病提供一种有效的微生物制剂。

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