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甜瓜白粉病内生拮抗细菌的筛选鉴定及其防治效果的研究 被引量:5

Screening,identification and control efficacy of melon endophytic antagonistic bacteria against Sphaerotheca fuliginea
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摘要 [目的]从高抗白粉病的甜瓜品种植株内分离筛选出对甜瓜白粉病有较好防效的内生拮抗细菌菌株,为甜瓜白粉病生物防治探寻新途径。[方法]采用温室盆栽试验和叶盘漂浮法分离筛选有较好防效的内生拮抗菌,并对其进行形态学、生理生化和分子生物学鉴定。[结果]从高抗白粉病的甜瓜品种‘MR-1’植株内分离获得31株内生细菌,其中1株内生菌Mg15对甜瓜白粉病盆栽试验防效达到74.3%。在离体叶盘上,经Mg15发酵液处理12 h后白粉菌孢子萌发率仅为9.29%,14 d后产孢量与对照相比降低了60%。扫描电镜观察发现,Mg15发酵液处理后的病菌菌丝皱缩生长,甚至产生畸形。Mg15发酵原液温室防病效果达80.66%。[结论]Mg15对甜瓜白粉病具有显著防治效果,经鉴定该菌株为枯草芽胞杆菌(Bacillus subtilis)。 [Objective] It is aimed to screen endophytic bacteria with high control effect on melon powdery mildew from the highresistant melon varieties, in order to find a new way for biological control of melon powdery mildew. [Method] Pot and leaf disc experiments were used to screen the endophytic bacteria with better control effect on powdery mildew, and the strain with the best effect was identified with morphological, physiological , biochemical and molecular methods. [Result] Thirtyone strains of endophytic bacteria were isolated from the host ‘MR-1’ with high resistance to powdery mildew Sphaerotheca fuliginea. Among them, the control efficacy of strain Mg15 was 74.3% in the pot experiments. Besides, only 9.29% of the spores were germinated after 12 hours in the leaf disc experiments, while the production of conidia was decreased by 60% after 14 days, compared with the control. The hyphae shrank and even deformed after application of Mg15 fermentation broth, observed by scanning electron micrograph. Additionally, application of Mg15 undiluted fermentation broth had the highest control efficacy on powdery mildew, with 80.66% melon seedlings uninfected in a greenhouse experiment. [Conclusion] Mg15 showed better efficacy to melon powdery mildew, which was identified as Bacillus subtilis according to biological characteristics and 16S rDNA sequence.
出处 《植物保护》 CAS CSCD 北大核心 2011年第2期25-30,共6页 Plant Protection
基金 国家西甜瓜产业技术体系项目(nycytx-36-01-01-02) 黑龙江省自然科学基金重点项目(ZJN0705) 黑龙江省杰出青年基金项目(JC200712)
关键词 甜瓜白粉病 内生拮抗细菌 鉴定 生物防治 melon powdery mildew endophytic antagonistic bacteria identification biocontrol
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参考文献20

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