Streptomyces virginiae XDS1‐5, an antagonistic actinomycete, as a biocontrol to peach brown rot caused by Monilinia fructicola

桃褐腐病菌 采后 生物 生物病虫害防治 园艺 芽孢杆菌(形态) 抗菌 植物 微生物学 细菌 遗传学
作者
Meijun Chen,Fan Jia,Shan Chen,Yang Zheng,Hu Yan,Weina Liu,Changyun Liu,Xianchao Sun,Jinwei Lu,Guokang Chen,Guanhua Ma
出处
期刊:Journal of the Science of Food and Agriculture [Wiley]
卷期号:104 (12): 7514-7523 被引量:10
标识
DOI:10.1002/jsfa.13573
摘要

Abstract BACKGROUND Peach brown rot, caused by the pathogen Monilinia fructicola , represents a significant postharvest infectious disease affecting peach fruit. This disease is responsible for a substantial increase in fruit decay rates, leading to significant economic losses, often exceeding 50%. Currently, there is a growing interest in identifying biocontrol agents to mitigate peach brown rot, with a predominant interest in Bacillus species. RESULTS In this investigation, we isolated 410 isolates of actinomycetes from non‐farmland ecosystem soil samples. Subsequently, 27 isolates exhibiting superior inhibitory capabilities were selected. Among these, strain XDS1‐5 demonstrated the most robust fungistatic effect against brown rot disease, achieving an 80% inhibition rate in vitro and a 66% inhibition rate in vivo . XDS1‐5 was identified as belonging to the Streptomyces virginiae species. Furthermore, a fermentation filtrate of XDS1‐5 exhibited the ability to metabolize 34.21% of the tested carbon sources and 7.37% of the tested nitrogen sources. Particularly noteworthy was its capacity to disrupt the cell membrane structure directly, leading to increased cell membrane permeability and cytoplasmic leakage. Additionally, our investigation indicated that indoline, a metabolite produced by XDS1‐5, played a pivotal role in inhibiting the growth of M. fructicola . CONCLUSION In summary, our study has identified a biocontrol actinomycete, XDS1‐5, with the potential to effectively inhibit postharvest brown rot disease in peaches. This finding holds great significance for the biological control of peach brown rot, offering promising prospects for mitigating the economic losses associated with this devastating disease. © 2024 Society of Chemical Industry.
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