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Effects of <i>Bacillus cereus</i>F-6 on Promoting Vanilla (<i>Vanilla planifolia</i>Andrews.) Plant Growth and Controlling Stem and Root Rot Disease 被引量:1
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作者 Qingyun Zhao Hui Wang +2 位作者 Zihui Zhu Yinghui Song Huan Yu 《Agricultural Sciences》 2015年第9期1068-1078,共11页
A lipopeptide-producing bacterium, Bacillus cereus (F-6), was isolated from the rhizosphere soil of a healthy vanilla (Vanilla planifolia) plant cultivated on a plantation under 21 years of continuous cropping with va... A lipopeptide-producing bacterium, Bacillus cereus (F-6), was isolated from the rhizosphere soil of a healthy vanilla (Vanilla planifolia) plant cultivated on a plantation under 21 years of continuous cropping with vanilla. A pot experiment was conducted to investigate the effects of the green fluorescent protein-tagged F-6 (F-6-gfp) and its bio-organic fertilizer (BIO) on vanilla plant growth and stem and root rot disease, using the same plantation soil. The application of BIO significantly increased the vanilla plant root, stem and leave dry weights;however, there was not a significant difference between the F-6-gfp-inoculated treatment and the control. Meanwhile, the BIO application also significantly reduced the severity of stem and root rot disease compared to the control. The rhizosphere soil population of Fusarium was approximately 10-fold smaller in the BIO treatment compared to the control treatment at 150 days after transplantation. The number of B. cereus F-6-gfp in the rhizosphere soil of the BIO treatment remained significantly higher than that of the F-6-gfp-inoculated treatment throughout the experiment. In conclusion, F-6-gfp successfully colonized the rhizosphere soil in the BIO treatment, promoting vanilla plant growth, reducing the disease severity index, and decreasing the Fusarium population number, helping to remove barriers to the continuous cropping of vanilla. 展开更多
关键词 Bacillus CEREUS Bio-Organic Fertilizer Continuous Cropping Barriers lipopeptide-producing Bacterium VANILLA planifolia
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内源微生物驱油功能菌定量化分析技术 被引量:4
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作者 胡婧 吴晓玲 《生物加工过程》 CAS 2016年第3期23-26,32,共5页
为了解决培养法无法对油藏内驱油功能菌进行定量检测的难题,利用荧光定量PCR技术,通过对功能基因进行定量实现了油藏内产脂肽菌、产曱烷菌的定量化检测,其中产脂肽菌选择w/A基因、产曱烷菌选择mtrA基因.结果发现,该方法具有很好的特异... 为了解决培养法无法对油藏内驱油功能菌进行定量检测的难题,利用荧光定量PCR技术,通过对功能基因进行定量实现了油藏内产脂肽菌、产曱烷菌的定量化检测,其中产脂肽菌选择w/A基因、产曱烷菌选择mtrA基因.结果发现,该方法具有很好的特异性和重复性,标准曲线的相关系数达到0.99以上,扩增效率达到100%.在检测未知样品时,证实该方法的检测下限可以达到10拷贝/pL.利用该技术监测了胜利油田沾三区块驱油一口油井(Z3X24)在内源微生物驱油过程中2种功能菌的定量化变化,数据表明:内源激活前期,产脂肽菌密度快速升高到104拷贝/μL,内源激活后期,厌氧的产曱烷古菌密度升高到104拷贝/μL,该数据表明微生物驱油过程中存在好、厌氧菌的演替规律,将2种菌的定量检测结果与现场油井的产量进行对比,发现油井日油水平的动态变化与这2种菌的动态变化存在明显对应关系.该研究建立的功能菌定量化检测技术为内源微生物驱油现场实施效果的准确预测及驱油机理分析提供了一个有效的分析手段,可以进一步提高微生物驱油工艺措施的针对性和有效性. 展开更多
关键词 产脂肽菌 产甲烷菌 定量化检测
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