An Baoju, Du Danchao, Huang Zhendong, Pu Zhanxu, Lv Jia, Zhu Li, Liu Shunmin, Zhang Liping, Chen Guoqing, Lu Lianming
The Citrus Research Institute of Zhejiang Province, Taizhou, China.
Key Laboratory of Fruit and Vegetable Function and Health Research of Taizhou, Taizhou, China.
Front Microbiol. 2024 Sep 4;15:1471305. doi: 10.3389/fmicb.2024.1471305. eCollection 2024.
Citrus diseases caused by fungal pathogens drastically decreased the yield and quality of citrus fruits, leading to huge economic losses. Given the threats of chemical pesticides on the environment and human health, biocontrol agents have received considerable attention worldwide as ecofriendly and sustainable alternative to chemical fungicides. In the present study, we isolated a strain TZ01 with potent antagonistic effect against three citrus pathogenic fungi: , and The culture supernatant of this strain exhibited remarkable antifungal activity on potato dextrose agar plates and detached leaves of five citrus varieties. Treatment with TZ01 culture supernatant obviously affected the hyphal morphology and caused nucleic acid leakage. The crude lipopeptides (LPs) extracted from the culture supernatant were found as the major active ingredients, and could maintain the activity under a wide range of temperature and pH and ultraviolet radiation. Furthermore, the type of LPs, produced , were explored. Whole-genome sequencing of TZ01 revealed secondary metabolite gene clusters encoding synthetases for non-ribosomal peptides and polyketide production, and gene clusters responsible for the synthesis of three important LPs (surfactin, iturin, and fengycin) were identified in the genome. The liquid chromatography-mass spectrometry analysis confirmed the presence of various homologs of surfactin A, bacillomycin D, and fengycin A in the extracted LPs. Taken together, these results contribute to the possible biocontrol mechanisms of strain TZ01, as well as providing a promising new candidate strain as a biological control agent for controlling citrus fungal pathogens.
由真菌病原体引起的柑橘类疾病大幅降低了柑橘类水果的产量和品质,造成了巨大的经济损失。鉴于化学农药对环境和人类健康的威胁,生物防治剂作为化学杀菌剂的生态友好型和可持续替代品,在全球范围内受到了广泛关注。在本研究中,我们分离出了一株对三种柑橘致病真菌具有强大拮抗作用的菌株TZ01:[此处原文未提及具体真菌名称]、[此处原文未提及具体真菌名称]和[此处原文未提及具体真菌名称]。该菌株的培养上清液在马铃薯葡萄糖琼脂平板和五个柑橘品种的离体叶片上表现出显著的抗真菌活性。用TZ01培养上清液处理明显影响了菌丝形态并导致核酸泄漏。从培养上清液中提取的粗脂肽(LPs)被发现是主要活性成分,并且在广泛的温度、pH值和紫外线辐射下都能保持活性。此外,还探索了由[此处原文未提及具体产生对象]产生的LPs的类型。TZ01的全基因组测序揭示了编码非核糖体肽和聚酮化合物合成的合成酶的次生代谢物基因簇,并且在基因组中鉴定出负责合成三种重要LPs(表面活性素、伊枯草菌素和丰原素)的基因簇。液相色谱 - 质谱分析证实了提取的LPs中存在表面活性素A、芽孢杆菌霉素D和丰原素A的各种同源物。综上所述,这些结果有助于了解菌株TZ01可能的生物防治机制,同时也为作为控制柑橘真菌病原体的生物防治剂提供了一个有前景的新候选菌株。