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尖孢镰刀菌产生的比卡维林和镰刀菌酸对致病疫霉具有抗卵菌活性。

Bikaverin and fusaric acid from Fusarium oxysporum show antioomycete activity against Phytophthora infestans.

作者信息

Son S W, Kim H Y, Choi G J, Lim H K, Jang K S, Lee S O, Lee S, Sung N D, Kim J-C

机构信息

Bio-Control Research Team, Korea Research Institute of Chemical Technology, Yusong, Taejon, Korea.

出版信息

J Appl Microbiol. 2008 Mar;104(3):692-8. doi: 10.1111/j.1365-2672.2007.03581.x. Epub 2007 Oct 9.

Abstract

AIMS

To isolate and identify antioomycete substances from Fusarium oxysporum EF119 against Phytophthora infestans and to investigate their antimicrobial activities against various plant pathogenic bacteria, oomycetes and true fungi.

METHODS AND RESULTS

Two antioomycete substances were isolated from liquid cultures of F. oxysporum EF119, which shows a potent disease control efficacy against tomato late blight caused by P. infestans. They were identified as bikaverin and fusaric acid by mass and nuclear magnetic resonance spectral analyses. They inhibited the mycelial growth of plant pathogenic oomycetes and fungi. Fusaric acid also effectively suppressed the cell growth of various plant pathogenic bacteria, but bikaverin was virtually inactive. Treatment with bikaverin at 300 microg ml(-1) suppressed the development of tomato late blight by 71%. Fusaric acid provided effective control against tomato late blight and wheat leaf rust over 67% at concentrations more than 100 microg ml(-1).

CONCLUSIONS

Both bikaverin and fusaric acid showed in vitro and in vivo antioomycete activity against P. infestans.

SIGNIFICANCE AND IMPACT OF THE STUDY

Fusarium oxysporum EF119 producing both bikaverin and fusaric acid may be used as a biocontrol agent against tomato late blight caused by P. infestans.

摘要

目的

从尖孢镰刀菌EF119中分离并鉴定抗卵菌物质,以对抗致病疫霉,并研究其对各种植物病原菌、卵菌和真菌的抗菌活性。

方法与结果

从尖孢镰刀菌EF119的液体培养物中分离出两种抗卵菌物质,该菌株对致病疫霉引起的番茄晚疫病具有显著的防治效果。通过质谱和核磁共振光谱分析,它们被鉴定为双戊烯醇和镰刀菌酸。它们抑制了植物致病卵菌和真菌的菌丝生长。镰刀菌酸还能有效抑制各种植物病原菌的细胞生长,但双戊烯醇实际上没有活性。用300μg/ml的双戊烯醇处理可使番茄晚疫病的发病率降低71%。在浓度超过100μg/ml时,镰刀菌酸对番茄晚疫病和小麦叶锈病的防治效果超过67%。

结论

双戊烯醇和镰刀菌酸在体外和体内均对致病疫霉表现出抗卵菌活性。

研究的意义和影响

产生双戊烯醇和镰刀菌酸的尖孢镰刀菌EF119可作为防治致病疫霉引起的番茄晚疫病的生物防治剂。

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