共查询到19条相似文献,搜索用时 125 毫秒
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范紫煊 《河北农业技术师范学院学报》2013,(4):14-19
为有效提高纳豆菌的产率,达到高密度发酵培养的效果,对纳豆芽孢杆菌高密度发酵培养的培养基成分和培养条件进行了优化试验。采用单因素和正交试验方法,最终确定最佳培养基为淀粉20.0g/L,酵母粉2.0g/L,蛋白胨2.0g/L,NH4C11.0g/L,K2HPO4 2.0g/L,KH2P042.0g/L,MgSO41.0g/L。最佳培养条件为:初始pH值6.5;接人菌种的体积分数为0.05;培养温度35℃。在20L发酵罐中高密度发酵培养,纳豆芽孢杆菌活菌数达2.95×10^14 cfu/L,较优化前提高近一个数量级。 相似文献
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生防芽孢杆菌的应用研究进展 总被引:1,自引:0,他引:1
作为一种理想的生防菌筛选对象,芽孢杆菌已引起人们的广泛关注。近年来,国内外对其各方面应用的研究日益增多。文章主要对芽孢杆菌的生防作用形式与机制、应用现状及存在的问题进行了综述,并对相关研究趋势进行了展望,以期进一步扩大其在新型生物农药研发中的应用前景。 相似文献
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从解淀粉芽胞杆菌(Bacillus amyloliquefaciens)B3菌株和枯草芽胞杆菌(Bacillus subtilis)G4菌株中分别提取脂肽类化合物,配制成脂肽类生物农药乳油.平板拮抗活性检测试验表明,脂肽类生物农药乳油B3和G4能显著抑制油菜菌核病菌(Sclerotinia sclerotiorum)生长.油菜离体叶片接种试验中,脂肽类生物农药乳油B3和G4能显著抑制核盘菌在油菜叶片上的侵染和扩展.田间试验表明,脂肽类生物农药乳油B3和G4对油菜菌核病具有很好的防治效果,最高防效分别达55.8%和46.3%,并能够促进油菜生长 相似文献
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随着基因重组技术和发酵技术的发展,为实现菌体的低成本规模化生产,高细胞密度发酵技术已成为发酵领域的研究热点。该研究阐述了影响高细胞密度发酵的主要因素和建立高细胞密度发酵技术的优化策略,并对高细胞密度发酵技术的应用前景进行了展望。 相似文献
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Antagonistic Activities of Volatiles from Four Strains of Bacillus spp. and Paenibacillus spp. Against Soil-Borne Plant Pathogens 总被引:1,自引:0,他引:1
The four effective antagonistic Bacillus strains, isolated from the rhizosphere soil of cucumber in a greenhouse, produced antifungal volatiles. These volatiles strongly inhibited the growth of the most tested pathogenic fungi with wide host plants, induced the mycelial morphological abnormalities, and decreased the sclerotoid production of Sclerotinia sclerotiorum in sealed plates. Spores of Botrytis cinerea exposed to these volatiles for 24-48 h in cavity slides cracked and the sporaceous inclusion became brown and effused to the suspension. An interesting phenomenon observed was that all the bacterial volatiles exhibited intense inhibitory activities against the pigment formation of tested pathogenic fungi, including Ascochyta citrullina, Alternaria solani, Alternaria brassicae, and so on. Interactions mediated by microbial volatiles could be widespread in soils, and volatiles may play an important role in reducing disease levels. A phylogenetic analysis based on 16S rDNA sequence placed the four bacteria in three species Paenibacillus polymyxa (BMP-11), Bacillus subtilis (BL02), and Bacillus pumilus (BSH-4 and ZB 13). Through headspace sampling and GC-MS analysis, a rich profile was found from B. subtilis and overlapping volatile patterns could be found among the different species. Studies are under the way to find the possible action mechanisms and to seek the effective application of bacterial volatiles in greenhouse. 相似文献