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首页> 外文期刊>Journal of applied microbiology >MECHANISMS OF BIOCONTROL BY PANTOEA DISPERSA OF SUGAR CANE LEAF SCALD DISEASE CAUSED BY XANTHOMONAS ALBILINEANS
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MECHANISMS OF BIOCONTROL BY PANTOEA DISPERSA OF SUGAR CANE LEAF SCALD DISEASE CAUSED BY XANTHOMONAS ALBILINEANS

机译:白腐黄单胞菌引起的甘蔗叶鳞病的泛菌控制生物的机理

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摘要

Albicidins, a family of phytotoxins and antibiotics produced by Xanthomonas albilineans, are important in sugar cane leaf scald disease development. The albicidin detoxifying bacterium Pantoea dispersa (syn. Erwinia herbicola) SB1403 provides very effective biocontrol against leaf scald disease in highly susceptible sugar cane cultivars. The P. dispersa gene (albD) for enzymatic detoxification of albicidin has recently been cloned and sequenced. To test the role of albicidin detoxification in biocontrol of leaf scald disease, albD was inactivated in P. dispersa by site-directed mutagenesis. The mutants, which were unable to detoxify albicidin, were less resistant to the toxin and less effective in biocontrol of leaf scald disease than their parent strain. This indicates that albicidin detoxification contributes to the biocontrol capacity of P. dispersa against X. albilineans. Rapid growth and ability to acidify media are other characteristics likely to contribute to the competitiveness of P. dispersa against X. albilineans at wound sites used to invade sugar cane.
机译:阿比西丁是由黄单胞菌产生的一种植物毒素和抗生素,在甘蔗叶鳞病的发展中很重要。杀菌素解毒细菌泛菌(Syn。Herbicola)SB1403对高度易感的甘蔗品种提供了非常有效的生物防治叶鳞病的生物防治方法。最近已经克隆和测序了用于青霉素的酶促解毒的分散疟原虫基因(albD)。为了测试白化素解毒在叶烫伤病的生物防治中的作用,通过定点诱变在分散体假单胞菌中使albD失活。与他们的亲本菌株相比,这些不能解毒白粉菌素的突变体对毒素的抵抗力更弱,并且在生物防治叶鳞病方面也没有那么有效。这表明杀菌素的解毒作用有助于P. dissa的抗生物素能力。快速生长和酸化培养基的能力是其他特征,可能有助于分散果蝇在用于入侵甘蔗的伤口部位上对抗白纹病菌的竞争力。

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