Yuan Hongbo, Yuan Mengjia, Shi Bingke, Wang Zhuoni, Huang Tianxiang, Zhu Jiahong, Hou Hui, Wang Li, Tu Hongtao
Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou, China.
Front Microbiol. 2023 Jan 4;13:1058167. doi: 10.3389/fmicb.2022.1058167. eCollection 2022.
Apple ring rot, one of the most common apple postharvest diseases during storage, is caused by . Fungicide application is the most widely used method to control this disease, but the increasing environmental and food safety concerns greatly limit their use. The present study aimed to examine the biocontrol activity and underlying action mechanism of strain Pl7 against . The results revealed that strain Pl7 exhibited strong inhibitory activity against by 69% . The culture filtrate of strain Pl7 possessed cellulase, β-1, 3-glucanase, protease activity and mediated the antifungal activity against . Further analysis demonstrated that culture filtrate of strain Pl7 could cause cell membrane permeabilization of . Apple fruit suffering from ring rot induced by a carbendazim (CBZ)-sensitive or -resistant isolate was much suppressed after being treated with strain Pl7, maintaining postharvest quality. The ability of strain Pl7 to swiftly colonize and thrive in apple fruit wounds was demonstrated by a re-isolation assay. Additional transcriptome studies of untreated and treated apple fruit with strain Pl7 revealed that strain Pl7 mostly changed the expression of genes functioning in plant secondary metabolite biosynthesis and plant-pathogen interaction. In light of these outcomes, the underlying antagonistic mechanism was investigated, and strain Pl7 was identified as a promsing microbial biocontrol agent against apple postharvest decay.
苹果轮纹病是苹果贮藏期间最常见的采后病害之一,由……引起。施用杀菌剂是防治该病最广泛使用的方法,但对环境和食品安全的担忧日益增加,极大地限制了它们的使用。本研究旨在检测菌株Pl7对……的生防活性及其潜在作用机制。结果表明,菌株Pl7对……表现出较强的抑制活性,抑制率达69%。菌株Pl7的培养滤液具有纤维素酶、β-1,3-葡聚糖酶、蛋白酶活性,并介导了对……的抗真菌活性。进一步分析表明,菌株Pl7的培养滤液可导致……的细胞膜通透性增加。在用多菌灵(CBZ)敏感或抗性……分离株诱导患轮纹病的苹果果实经菌株Pl7处理后,病情得到显著抑制,采后品质得以保持。通过再分离试验证明了菌株Pl7在苹果果实伤口迅速定殖和生长的能力。对未处理和经菌株Pl7处理的苹果果实进行的额外转录组研究表明,菌株Pl7主要改变了参与植物次生代谢物生物合成和植物-病原体相互作用的基因表达。鉴于这些结果,对潜在的拮抗机制进行了研究,菌株Pl7被鉴定为一种有前景的防治苹果采后腐烂的微生物生防剂。