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The Lysobacter capsici AZ78 Genome Has a Gene Pool Enabling it to Interact Successfully with Phytopathogenic Microorganisms and Environmental Factors

机译:辣椒溶杆菌AZ78基因组具有一个基因库使其能够与植物致病微生物和环境因素成功相互作用

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摘要

Lysobacter capsici AZ78 has considerable potential for biocontrol of phytopathogenic microorganisms. However, lack of information about genetic cues regarding its biological characteristics may slow down its exploitation as a biofungicide. In order to obtain a comprehensive overview of genetic features, the L. capsici AZ78 genome was sequenced, annotated and compared with the phylogenetically related pathogens Stenotrophomonas malthophilia K729a and Xanthomonas campestris pv. campestris ATCC 33913. Whole genome comparison, supported by functional analysis, indicated that L. capsici AZ78 has a larger number of genes responsible for interaction with phytopathogens and environmental stress than S. malthophilia K729a and X. c. pv. campestris ATCC 33913. Genes involved in the production of antibiotics, lytic enzymes and siderophores were specific for L. capsici AZ78, as well as genes involved in resistance to antibiotics, environmental stressors, fungicides and heavy metals. The L. capsici AZ78 genome did not encompass genes involved in infection of humans and plants included in the S. malthophilia K729a and X. c. pv. campestris ATCC 33913 genomes, respectively. The L. capsici AZ78 genome provides a genetic framework for detailed analysis of other L. capsici members and the development of novel biofungicides based on this bacterial strain.
机译:辣椒溶血杆菌AZ78在控制植物致病微生物方面具有巨大潜力。但是,缺乏有关其生物学特性的遗传线索的信息可能会减慢其作为生物杀真菌剂的利用。为了获得遗传特征的全面概述,对辣椒辣椒AZ78基因组进行了测序,注释和与系统发育相关病原菌嗜麦芽窄食单胞菌K729a和野油菜黄单胞菌的比较。 campestris ATCC33913。在功能分析的支持下,全基因组比较表明,辣椒衣原体AZ78具有比致病性链霉菌K729a和X. c。更大的基因,这些基因负责与植物病原体相互作用和环境胁迫。 pv。 campestris ATCC33913。涉及生产抗生素,裂解酶和铁载体的基因对辣椒辣椒AZ78特异,以及涉及对抗生素,环境胁迫因子,杀真菌剂和重金属的抗性的基因。辣椒L. capsici AZ78基因组不包括与人类和植物感染有关的基因,包括嗜麦芽胞菌K729a和X. c.。 pv。桔梗ATCC 33913基因组。辣椒杆菌AZ78基因组提供了一个遗传框架,用于详细分析辣椒辣椒的其他成员以及基于该细菌菌株开发新型生物杀真菌剂。

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