Fu Zujiao, Xiao Rong, Hu Zhan, Zhang Min, Wu Shandong, Guo Zhaohui, Luo Rongjun, Shan Shiping, Yang Hua
National Collection of Plant-associated Microbes (Hunan), Hunan Institute of Microbiology, Changsha 410009, P.R. China.
J Microbiol Biotechnol. 2024 Dec 28;34(12):2516-2526. doi: 10.4014/jmb.2407.07018. Epub 2024 Oct 22.
Plant endophyte Streptomyces are excellent candidates as biocontrol agents against the rice blast fungus, . In this study, a novel strain Ahn75 with antifungal activity was isolated from healthy rice stem and identified as by phenotypic characterization and phylogenetic analysis based on 16S rRNA gene, multilocus and genome sequences. Inhibition test using culture filtrate showed that Ahn75 could effectively suppress , with mycelia growth inhibition rate of 80.88% and spore germination inhibition rate of 78.26%. Genome sequence analysis of strain Ahn75 showed 40 gene clusters of secondary metabolites and several genes related to plant growth promotion were predicted in the genome of Ahn75. Several antimicrobial compounds including valinomycin, tetrabutylammonium, and benzalkonium chloride, were also detected in the antifungal fraction from Ahn75 culture filtrate by liquid chromatography and high resolution mass spectrometry. Meanwhile, strain Ahn75 demonstrates UV tolerance under UV irradiation for 60 min, pH tolerance between pH6 and pH9, and a high halotolerance in 7% (w/v) of NaCl. Greenhouse experiments indicated that Ahn75 is able to colonize rice stems, roots, and leaves, which help rice to reduce the rice leaf blast incidence by 59.76%. All these findings suggest that strain Ahn75 could be a potential biocontrol agent for rice blast.
植物内生链霉菌是防治稻瘟病菌的优秀候选生防菌。在本研究中,从健康水稻茎中分离出一株具有抗真菌活性的新菌株Ahn75,并通过基于16S rRNA基因、多位点和基因组序列的表型特征及系统发育分析将其鉴定出来。使用培养滤液进行的抑制试验表明,Ahn75能够有效抑制稻瘟病菌,菌丝体生长抑制率为80.88%,孢子萌发抑制率为78.26%。菌株Ahn75的基因组序列分析显示有40个次生代谢物基因簇,并且在Ahn75的基因组中预测到了几个与促进植物生长相关的基因。通过液相色谱和高分辨率质谱法在Ahn75培养滤液的抗真菌组分中还检测到了几种抗菌化合物,包括缬氨霉素、四丁基铵和苯扎氯铵。同时,菌株Ahn75在紫外线照射60分钟下表现出耐紫外线能力,在pH6至pH9之间表现出耐pH能力,在7%(w/v)的NaCl中表现出高耐盐性。温室试验表明,Ahn75能够定殖于水稻的茎、根和叶中,这有助于水稻将稻叶瘟发病率降低59.76%。所有这些发现表明,菌株Ahn75可能是一种潜在的稻瘟病生防菌。