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Plant-microbe interactions and the new biotechnological methods of plant disease control

机译:植物与微生物的相互作用以及植物病害防治的新生物技术方法

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摘要

Plants constitute an excellent ecosystem for microorganisms. The environmental conditions offered differ considerably between the highly variable aerial plant part and the more stable root system. Microbes interact with plant tissues and cells with different degrees of dependence. The most interesting from the microbial ecology point of view, however, are specific interactions developed by plant-beneficial (either non-symbiotic or symbiotic) and pathogenic microorganisms. Plants, like humans and other animals, also become sick, but they have evolved a sophisticated defense response against microbes, based on a combination of constitutive and inducible responses which can be localized or spread throughout plant organs and tissues. The response is mediated by several messenger molecules that activate pathogen-responsive genes coding for enzymes or antimicrobial compounds, and produces less sophisticated and specific compounds than immunoglobulins in animals. However, the response specifically detects intracellularly a type of protein of the pathogen based on a gene-for-gene interaction recognition system, triggering a biochemical attack and programmed cell death. Several implications for the management of plant diseases are derived from knowledge of the basis of the specificity of plant-bacteria interactions. New biotechnological products are currently being developed based on stimulation of the plant defense response, and on the use of plant-beneficial bacteria for biological control of plant diseases (biopesticides) and for plant growth promotion (biofertilizers)
机译:植物构成了一个极好的微生物生态系统。在高度可变的空中植物部分和更稳定的根系之间,提供的环境条件差异很大。微生物与植物组织和细胞的相互作用程度不同。但是,从微生物生态学的角度来看,最有趣的是植物有益的(非共生的或共生的)和病原微生物之间形成的特异性相互作用。像人类和其他动物一样,植物也会生病,但是基于组成型和诱导型响应的组合,它们已经进化出了针对微生物的复杂防御反应,可以在植物器官和组织中进行定位或扩散。响应是由几种信使分子介导的,这些信使分子激活编码酶或抗菌化合物的病原体响应基因,并产生比动物免疫球蛋白复杂和特异性低的化合物。然而,该反应基于基因对基因的相互作用识别系统,在细胞内特异性检测病原体的一种蛋白质,从而触发生化攻击和程序性细胞死亡。从植物细菌相互作用特异性的基础上获得的知识对植物病害的处理产生了一些影响。目前正在基于对植物防御反应的刺激,以及将有益植物的细菌用于植物病害的生物控制(生物农药)和促进植物生长(生物肥料)的开发新的生物技术产品。

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