首页> 外文期刊>Journal of Biological Control >Enhanced persistence of insecticidal crystal proteins of Bacillus thuringiensis subsp. kurstaki by transforming the predominant phyllosphere bacterium, bacillus megaterium.
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Enhanced persistence of insecticidal crystal proteins of Bacillus thuringiensis subsp. kurstaki by transforming the predominant phyllosphere bacterium, bacillus megaterium.

机译:苏云金芽孢杆菌亚种的杀虫晶体蛋白的持久性增强。通过转化主要的叶环细菌巨大芽孢杆菌来产生kurstaki。

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摘要

The insecticidal crystal proteins (ICP) of Bacillus thuringiensis (Bt) have relatively short persistence when applied as foliar spray. The limited persistence of the ICP on the phyllosphere is mainly due to alkaline pH and UV radiation in the solar spectrum. In this regard, chemical adjutants, plant derived substances such as phenols and flavonoids have been employed to improve the persistence of the ICP. Alternatively, expression of ICP in a predominant phyllosphere bacterium has been shown to be useful in enhancing the persistence of the same. Therefore, Bacillus megaterium, a predominant phyllosphere bacterium of cabbage, was engineered to express the ICP of Bt subsp. kurstaki [B. thuringiensis serovar. kurstaki] (Btk) through conjugal transfer. A total of seven stable transformants, viz., A3, B3, C3, E1, E2, E3 & F were obtained in the above. Among them, B3 was highly toxic to the important pests of cabbage, Plutella xylostella (0.36 ng/cm2) and Crocidolomia binotalis [C. pavonana] (1.74 ng/cm2). Additionally, B3 had extended lysis (96 h) and higher persistence (9 cfu/cm2) as compared to the rest of the transformants and Btk.
机译:苏云金芽孢杆菌(Bt)的杀虫晶体蛋白(ICP)用作叶面喷雾剂时的持久性相对较短。 ICP在叶球的持久性有限,这主要归因于碱性pH值和太阳光谱中的UV辐射。在这方面,已使用化学助剂,植物衍生的物质(例如酚和类黄酮)来改善ICP的持久性。或者,已表明在主要的叶圈细菌中表达ICP可用于增强其持久性。因此,工程改造了甘蓝主要的叶球细菌巨大芽孢杆菌,以表达Bt亚种的ICP。 kurstaki [ B。苏云金血清型。 kurstaki ](Btk)通过夫妻转移。上面获得了总共七个稳定的转化体,即A3,B3,C3,E1,E2,E3和F。其中,B3对白菜的重要害虫,小菜蛾小菜(Plutella xylostella)(0.36 ng / cm 2 )和 Crocidolomia binotalis [ C。 pavonana ](1.74 ng / cm 2 )。此外,与其余转化子和Btk相比,B3具有更长的裂解时间(96小时)和更高的持久性(9 cfu / cm 2 )。

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