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一株内生拮抗细菌的分离鉴定及其抗菌机理研究
引用本文:刘洋,朱天辉,郑磊,张静,兰浩洋,郭志斌.一株内生拮抗细菌的分离鉴定及其抗菌机理研究[J].植物保护,2016,42(1):33-39.
作者姓名:刘洋  朱天辉  郑磊  张静  兰浩洋  郭志斌
作者单位:1. 四川农业大学林学院,雅安,625014;2. 四川省广元市朝天区林业和园林局,广元,628000;3. 四川省广元市林业和园林局,广元,628000
摘    要:本研究通过平板稀释法、平板对峙法从核桃根部皮层筛选出一株对核桃根腐病有拮抗作用的内生菌株1A,通过形态特征测定、理化特性分析和16SrDNA序列分析鉴定该菌为芽胞杆菌(Bacillus sp.),GenBank序列登录号为KJ865856;其抑菌特性研究结果表明:该拮抗菌对核桃根腐病菌有显著的抑制效果,抑菌率达63.33%;此外,该菌对板栗疫病菌等几种不同的林木病原菌均有较强的抑制作用。抗生机理研究结果表明,该菌株通过分泌蛋白酶和纤维素酶降解真菌细胞壁中蛋白质和纤维素,破坏病菌菌丝,病菌生长受到抑制。该拮抗菌能够显著抑制核桃根腐病菌菌丝生长和孢子萌发,孢子萌发抑制率达74.89%,病菌菌丝表现为菌丝扭曲、断裂,分支增多并缠绕,菌丝颜色加深等。盆栽生防效果研究显示,该拮抗菌对各组核桃根腐病具有显著的防治效果,采用该拮抗菌预处理具有相对较好的生防效果。

关 键 词:核桃根腐病  腐皮镰刀菌  内生细菌  芽胞杆菌  抗菌机理
收稿时间:2014/12/22 0:00:00
修稿时间:2015/4/23 0:00:00

Isolation, identification and antimicrobial mechanism of an endophytic antagonistic bacterium
Liu Yang,Zhu Tianhui,Zheng Lei,Zhang Jing,Lan Haoyang,Guo Zhibin.Isolation, identification and antimicrobial mechanism of an endophytic antagonistic bacterium[J].Plant Protection,2016,42(1):33-39.
Authors:Liu Yang  Zhu Tianhui  Zheng Lei  Zhang Jing  Lan Haoyang  Guo Zhibin
Affiliation:1. Forestry College of Sichuan Agricultural University, Ya'an 625014, China; 2. Forestry andLandscape Bureau of Chaotian District of Guangyuan, Sichuan Province, Guangyuan 628000, China; 3. Forestry and Landscape Bureau of Guangyuan, Sichuan Province, Guangyuan 628000, China
Abstract:The endogenic bacterium strain 1A from walnut root was found to have antagonistic effect on Fusarium solani. Strain 1A was identified as Bacillus sp. based on the observation of morphological features, the analysis of physiological and biochemical characteristics, and the 16S rDNA sequences. The GenBank accession number was KJ865856. The antimicrobial research results showed that strain 1A had a significant inhibitory effect on F. solani and the inhibition rate reached to 63.33%. In addition, strain 1A had a significant inhibitory effect on several forest pathogenic bacteria such as Cryphonectria parasitica. The result of antibiosis mechanism indicated that strain 1A could produce protease and cellulase to degrade the protein and cellulose composition of fungal cytoderm, and damage F. solani mycelia to inhibit the growth of F. solani. The strain 1A could strongly inhibit the hyphal growth and spore germination of F. solani, and the inhibition rate of spore germination was 74.89%. The mycelia were distorted, fractured, with increased and winding branches and deepened color. The antagonistic bacterium strain 1A showed good control potential against walnut root rot in the semi-field experiment and the pretreatment of the antagonistic strain 1A had a better biocontrol effect.
Keywords:walnut root rot  Fusarium solani  endophytic bacterium  Bacillus sp    antimicrobial mechanism
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