State Key Laboratory of Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Institute of Biotechnology and Genetic Engineering, The University of Agriculture Peshawar, Peshawar, Pakistan.
J Appl Microbiol. 2021 Dec;131(6):2957-2970. doi: 10.1111/jam.15168. Epub 2021 Jun 26.
Wuyiencin is a nucleoside antibiotic produced by Streptomyces albulus CK-15. The aim of this study was to determine whether wuyiencin can be used, as a suitable alternative to chemical pesticides, to protect cucumbers (Cucumis sativus L.) from powdery mildew caused by Sphaerotheca fuliginea. Further, the mechanisms underlying the control of cucumber powdery mildew by S. albulus CK-15 were preliminarily elucidated.
Wuyiencin solutions of different concentrations were used to treat infected cucumber plants under greenhouse conditions. The results indicated that wuyiencin could significantly reduce powdery mildew disease incidence, with a maximum prevention efficacy of 94·38%. Further, scanning electron micrographs and enzyme assays showed that wuyiencin inhibited S. fuliginea spore growth and elicited the activity of plant systemic resistance-related enzymes. Additionally, real-time quantitative reverse transcription PCR suggested that wuyiencin can activate a salicylic acid-dependent plant defence response.
Wuyiencin produced by S. albulus CK-15 possessed antifungal effects and was able to mitigate cucumber powdery mildew disease via antagonistic action. Wuyiencin also induced defence responses in the plants.
These results reinforce the biotechnological potential of wuyiencin as both an antagonistic agent and an inducer of plant systemic resistance.
武夷霉素是由白色链霉菌 CK-15 产生的一种核苷类抗生素。本研究旨在确定武夷霉素是否可作为化学农药的替代品,用于防治由瓜类白粉病菌引起的黄瓜白粉病。此外,还初步阐明了白色链霉菌 CK-15 防治黄瓜白粉病的作用机制。
在温室条件下,用不同浓度的武夷霉素溶液处理感染的黄瓜植株。结果表明,武夷霉素能显著降低白粉病的发病率,最高防治效果达 94.38%。进一步的扫描电镜和酶活性测定表明,武夷霉素抑制了瓜类白粉病菌孢子的生长,并诱导了植物系统抗性相关酶的活性。此外,实时定量 RT-PCR 表明,武夷霉素可以激活依赖水杨酸的植物防御反应。
白色链霉菌 CK-15 产生的武夷霉素具有抗真菌作用,通过拮抗作用减轻黄瓜白粉病。武夷霉素还诱导了植物的防御反应。
这些结果增强了武夷霉素作为拮抗剂和诱导植物系统抗性的生物工程潜力。