龙舌兰芽孢杆菌对小麦白粉病的防治效果及诱导抗病机理研究

IF 3.7 2区 农林科学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Qiuyan Bi , Fen Lu , Jie Wu , Xiangyu Liu , Xiuying Han , Jianjiang Zhao
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引用次数: 0

摘要

小麦蓝灰菌(Blumeria graminis f. sp. Tritici)在世界范围内引起小麦白粉病(WPM)和严重的小麦危害。为了预防WPM和新出现的化学杀菌剂抗性,研究了生物防治剂龙舌兰芽孢杆菌的防治效果和诱导抗病机制。通过体外法结合显微镜观察确定其抑菌效果,通过盆栽和田间验证明确其防治效果。利用转录组技术测定了龙舌兰芽孢杆菌处理后小麦基因表达的差异,验证了龙舌兰芽孢杆菌诱导抗性的主要分子机制。通过生理生化技术阐明了对小麦防御酶的影响。结果表明,龙舌兰对WPM的有效浓度在1 × 107 cfu/mL以上。体外抑制效果为90.91 ~ 100.00%。盆栽防治效果为92.98 ~ 100.00%。田间防治效果为83.21 ~ 100.00%。转录组测序分析显示,1472个基因显著上调,1995个基因显著下调。差异表达基因在氨基酸生物合成和代谢相关的几个途径中富集。肌动蛋白-7样、脂肪加氧酶、亚油酸9s -脂肪加氧酶6样、发病相关蛋白pr -1样、超氧化物歧化酶、苯丙氨酸解氨酶和多酚氧化酶的表达水平显著升高。龙舌兰菌诱导的相对酶活性差异最大,为2.63倍和3.43倍。结果表明,龙舌兰芽孢杆菌通过诱导小麦系统获得性抗性来对抗WPM,有助于阐明生物制剂的靶向防治机制,为田间应用提供基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The control effect and induced disease resistance mechanism of Bacillus tequilensis on wheat powdery mildew
Blumeria graminis f. sp. Tritici causes wheat powdery mildew (WPM) and severe wheat damage worldwide. To prevent WPM and emerging chemical fungicide resistance, researchers investigated the control effectiveness and induced disease resistance mechanisms of the biocontrol agent Bacillus tequilensis. Its inhibitory effect was determined via an in vitro method combined with microscopic observation, and the control effect was clarified via pot and field verification. Using transcriptome technology, we determined the differences in wheat gene expression in after treatment with B. tequilensis and verified the main molecular mechanism of B. tequilensis-induced resistance. The effects on wheat defence enzymes were clarified via physiological and biochemical techniques. The results revealed that B. tequilensis controlled WPM at an effective concentration of 1 × 107 cfu/mL or higher. The inhibitory effect in vitro was 90.91–100.00 %. The potted control effect was 92.98–100.00 %. The field control effect was 83.21–100.00 %. Transcriptome sequencing analysis revealed 1,472 significantly upregulated genes and 1,995 downregulated genes. The differentially expressed genes were enriched in several pathways related to amino acid biosynthesis and metabolism. The expression levels of actin-7-like, lipoxygenase, linoleic acid 9S-lipoxygenase 6-like, pathogenesis-related protein PR-1-like, superoxide dismutase, phenylalanine ammonia lyase and polyphenol oxidase were significantly increased. The relative enzymic activities induced by B. tequilensis presented maximum differences between 2.63-fold and 3.43-fold. Our results suggest that B. tequilensis combats WPM by inducing systemic acquired resistance in wheat, helps elucidate biological agent targeted control mechanisms and provides a foundation for field application.
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来源期刊
Biological Control
Biological Control 生物-昆虫学
CiteScore
7.40
自引率
7.10%
发文量
220
审稿时长
63 days
期刊介绍: Biological control is an environmentally sound and effective means of reducing or mitigating pests and pest effects through the use of natural enemies. The aim of Biological Control is to promote this science and technology through publication of original research articles and reviews of research and theory. The journal devotes a section to reports on biotechnologies dealing with the elucidation and use of genes or gene products for the enhancement of biological control agents. The journal encompasses biological control of viral, microbial, nematode, insect, mite, weed, and vertebrate pests in agriculture, aquatic, forest, natural resource, stored product, and urban environments. Biological control of arthropod pests of human and domestic animals is also included. Ecological, molecular, and biotechnological approaches to the understanding of biological control are welcome.
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