Key Laboratory of Integrated Crop Pest Management of Anhui Province, College of Plant Protection, Anhui Agricultural University, Hefei 230036, Anhui Province, P.R. China.
FEMS Microbiol Lett. 2023 Jan 17;370. doi: 10.1093/femsle/fnad078.
Kiwifruit bacterial canker caused by Pseudomonas syringae pv. actinidiae (Psa) is a severe global disease. However, effective biological control agents for controlling Psa are currently unavailable. This study aimed to screen potential biological control agents against Psa from the kiwifruit rhizosphere. In this study, a total of 722 isolates of bacteria were isolated from the rhizosphere of kiwifruit orchards in five regions of China. A total of 82 strains of rhizosphere bacteria showed antagonistic effects against Psa on plates. Based on amplified ribosomal DNA restriction analysis (ARDRA), these antagonistic rhizosphere bacteria were grouped into 17 clusters. BLAST analyses based on 16S rRNA gene sequence revealed 95.44%-100% sequence identity to recognized species. The isolated strains belonged to genus Acinetobacter, Bacillus, Chryseobacterium, Flavobacterium, Glutamicibacter, Lysinibacillus, Lysobacter, Pseudomonas, Pseudarthrobacter, and Streptomyces, respectively. A total of four representative strains were selected to determine their extracellular metabolites and cell-free supernatant activity against Psa in vitro. They all produce protease and none of them produce glucanase. One strain of Pseudomonas sp. produces siderophore. Strains of Bacillus spp. and Flavobacteria sp. produce cellulase, and Flavobacteria sp. also produce chitinase. Our results suggested that the kiwifruit rhizosphere soils contain a variety of antagonistic bacteria that effectively inhibit the growth of Psa.
猕猴桃溃疡病由丁香假单胞菌猕猴桃致病变种(Psa)引起,是一种严重的全球性疾病。然而,目前还没有有效的生物防治剂来控制 Psa。本研究旨在从猕猴桃根际筛选潜在的生物防治剂来防治 Psa。本研究从中国五个地区的猕猴桃果园根际共分离出 722 株细菌。共有 82 株根际细菌对 Psa 具有拮抗作用。基于扩增核糖体 DNA 限制性分析(ARDRA),这些拮抗根际细菌被分为 17 个聚类。基于 16S rRNA 基因序列的 BLAST 分析显示,这些拮抗菌与已知种的序列相似度为 95.44%-100%。分离出的菌株分别属于不动杆菌属、芽孢杆菌属、黄杆菌属、黄单胞菌属、谷氨酸杆菌属、赖氨酸芽孢杆菌属、赖氨酸杆菌属、假单胞菌属、假节杆菌属和链霉菌属。选择了 4 株具有代表性的菌株,以确定它们在体外对 Psa 的胞外代谢产物和无细胞上清液的活性。它们都能产生蛋白酶,没有一种能产生葡聚糖酶。一株假单胞菌能产生铁载体。芽孢杆菌属和黄杆菌属的菌株能产生纤维素酶,黄杆菌属还能产生几丁质酶。研究结果表明,猕猴桃根际土壤中含有多种能有效抑制 Psa 生长的拮抗细菌。