Volatile organic compounds from Irpex lacteus inhibit pathogenic fungi and enhance plant resistance to Botrytis cinerea in tomato

IF 6.9 1区 生物学 Q1 MICROBIOLOGY Microbiological research Pub Date : 2025-04-17 DOI:10.1016/j.micres.2025.128188
Haolong Li , Tianmeng Guo , Ziyi Luo , Jingying Chen , Xuewen Xie , Golam Jalal Ahammed , Airong Liu , Shuangchen Chen
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Abstract

Biocontrol fungi may exert antagonistic effects by emitting volatile organic compounds (VOCs), thus identifying fungal VOCs is crucial for understanding biocontrol mechanisms and developing novel biofungicides. In this study, we examined the antagonistic effect of Irpex lacteus LL210 against three major fungal pathogens: Botrytis cinerea (tomato gray mold), Fusarium oxysporum (cucumber wilt), and Alternaria alternata (pepper leaf spots) using in vitro assays. The results of both the dual-culture and dual-petri-dish methods showed that I. lacteus LL210 strongly inhibited the growth of B. cinerea, likely through the release of volatile compounds. SPME-GC-MS analysis of I. lacteus LL210 identified 770 volatile compounds, of which 26 key volatiles were screened on the basis of their relative odor activity values, peak areas and concentrations. Further evaluation using the dual-petri-dish method showed that compounds such as 2-Octen-1-ol, (E)-; Benzeneacetaldehyde; (E)-2-Octenal; Hexanal; (E)-2-Butenal; 5-Heptenal, 2,6-dimethyl-; 1-Octanol; 2,3-dihydro-Benzofuran; Diallyl Sulfur compounds exhibited significant inhibition of B. cinerea, suggesting their potential utility in the development of novel fungicides. We also tested their effects on plant growth and physiology and found that 1-octanol had minimal deleterious effects on tomato plants, as evidenced by growth and oxidative stress markers. This study systematically deciphered the VOCs profile of I. lacteus LL210, revealing critical mechanisms of pathogen inhibition through both direct inhibitory effects of VOCs and plant-mediated enhanced defense. These findings have driven the development of potential biocontrol agents based on VOCs, thereby providing sustainable solutions for crop disease management.
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乳酸菌挥发性有机化合物对番茄病原菌有抑制作用,增强番茄对灰霉病菌的抗性
生物防治真菌可能通过释放挥发性有机化合物(VOCs)发挥拮抗作用,因此鉴定真菌挥发性有机化合物对了解生物防治机制和开发新型生物杀菌剂至关重要。在本研究中,我们通过体外实验研究了Irpex lacteus LL210对番茄灰霉病菌(Botrytis cinerea)、黄瓜枯萎病菌(Fusarium oxysporum)和辣椒叶斑病菌(Alternaria alternata)三种主要真菌病原菌的拮抗作用。双培养和双培养皿实验结果表明,乳杆菌LL210对灰绿杆菌的生长有较强的抑制作用,可能是通过释放挥发性物质来抑制灰绿杆菌的生长。SPME-GC-MS分析鉴定出770种挥发性化合物,根据相对气味活性值、峰面积和浓度筛选出26种关键挥发性物质。用双培养皿法进一步评价表明,2-辛烯-1-醇、(E)-;Benzeneacetaldehyde;(E) 2-octenal;己醛;(E) 2-butenal;5-Heptenal 2 6-dimethyl -;1-Octanol;2、3-dihydro-Benzofuran;二烯丙基硫化合物对灰霉病菌具有明显的抑制作用,提示其在新型杀菌剂开发中的潜在应用价值。我们还测试了它们对植物生长和生理的影响,发现1-辛醇对番茄植株的有害影响很小,这一点得到了生长和氧化应激标志物的证明。本研究系统地解读了乳杆菌LL210的VOCs谱,揭示了通过VOCs的直接抑制作用和植物介导的增强防御来抑制病原菌的关键机制。这些发现推动了基于挥发性有机化合物的潜在生物防治剂的开发,从而为作物病害管理提供了可持续的解决方案。
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来源期刊
Microbiological research
Microbiological research 生物-微生物学
CiteScore
10.90
自引率
6.00%
发文量
249
审稿时长
29 days
期刊介绍: Microbiological Research is devoted to publishing reports on prokaryotic and eukaryotic microorganisms such as yeasts, fungi, bacteria, archaea, and protozoa. Research on interactions between pathogenic microorganisms and their environment or hosts are also covered.
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