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基于代谢组学分析的嗜水链霉菌JXGZ01培养滤液中杀线虫活性化合物的分离与鉴定

Separation and identification of nematicidal active compounds in culture filtrate of Streptomyces aquilus JXGZ01 based on metabolomic analysis.

作者信息

Xu Xueliang, Wu Caiyun, Fan Linjuan, Zhang Fan, Yao Jian, Liu Zirong, Yao Yingjuan

机构信息

Jiangxi Provincial Key Laboratory of Agricultural Non-point Source Pollution Control and Waste Comprehensive Utilization, Institute of Agricultural Applied Microbiology, Jiangxi Academy of Agricultural Sciences, Nanchang, China.

出版信息

Pest Manag Sci. 2025 Aug;81(8):4590-4600. doi: 10.1002/ps.8816. Epub 2025 Apr 5.

Abstract

BACKGROUND

Meloidogyne incognita is one of the pathogenic nematodes with the widest range and most serious damage, which can infest many food and cash crops. We screened a strain of Streptomyces aquilus JXGZ01, whose culture filtrate showed excellent nematicidal activity and egg hatching inhibition activity against M. incognita. In this study, we performed metabolomic analysis of the culture filtrate of this strain.

RESULTS

The data showed that of the total 304 differential metabolites, 244 were significantly up-regulated and 60 were significantly down-regulated. Seven compounds with large fold changes were selected from the up-regulated metabolites to test the nematicidal activity against M. incognita. The mortality of M. incognita in both 5 and 10 mg mL of 4-acetylaminobutyric acid was more than 85%. The mortality of M. incognita in both 10 and 100 mg mL of (R)-(-)-2-phenylglycinol was more than 70%. The mortality rate of M. incognita in 100 mg of N-acetyl-l-glutamic acid was 78.25%. In addition, the hatching inhibition rate of egg masses were more than 90% for both 5 and 10 mg mL of 4-acetylaminobutyric acid. The hatching inhibition rate of egg masses were more than 80% for 100 mg and 10 mg (R)-(-)-2-phenylglycinol. The hatching inhibition rate of 100 mg N-acetyl-l-glutamic acid on eggs was 93.47%.

CONCLUSION

The results demonstrate that S. aquilus can be a candidate microorganism for the biological control of M. incognita, and its metabolites 4-acetylaminobutyric acid and (R)-(-)-2-phenylglycinol had great potential as nematicides. © 2025 Society of Chemical Industry.

摘要

背景

南方根结线虫是分布范围最广、危害最严重的致病线虫之一,可侵染多种粮食作物和经济作物。我们筛选出了一株嗜水链霉菌JXGZ01,其发酵滤液对南方根结线虫表现出优异的杀线虫活性和抑制卵孵化活性。在本研究中,我们对该菌株的发酵滤液进行了代谢组学分析。

结果

数据显示,在总共304种差异代谢物中,244种显著上调,60种显著下调。从上调的代谢物中选择了7种变化倍数较大的化合物,测试其对南方根结线虫的杀线虫活性。在4 - 乙酰氨基丁酸浓度为5和10 mg/mL时,南方根结线虫的死亡率均超过85%。在(R)-(-)-2 - 苯基甘醇浓度为10和100 mg/mL时,南方根结线虫的死亡率均超过70%。在N - 乙酰 - l - 谷氨酸浓度为100 mg时,南方根结线虫的死亡率为78.25%。此外,在4 - 乙酰氨基丁酸浓度为5和10 mg/mL时,卵块的孵化抑制率均超过90%。在(R)-(-)-2 - 苯基甘醇浓度为100 mg和10 mg时,卵块的孵化抑制率均超过80%。在N - 乙酰 - l - 谷氨酸浓度为100 mg时,对卵的孵化抑制率为93.47%。

结论

结果表明,嗜水链霉菌可作为生物防治南方根结线虫的候选微生物,其代谢产物4 - 乙酰氨基丁酸和(R)-(-)-2 - 苯基甘醇作为杀线虫剂具有很大潜力。© 2025化学工业协会

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