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Saprophytic, Symbiotic and Parasitic Bacteria: Importance to Environment, Biotechnological Applications and Biocontrol

机译:腐生,共生和寄生细菌:对环境,生物技术应用和生物防治的重要性

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Microbial communities have a vast importance to the ecosystem being of use by humans for health or industrial purposes. Most bacteria can be distinguished into three groups: saprophytic; symbiotic and parasitic. Saprophytic bacteria, which are the major decomposers of organic matter, can be applied in treatment of metalliferous mine, radioactive environmental wastes, biodiesel production, among others. Symbiotic bacteria live in a mutually beneficial association with other organisms providing essential nutrients to their host organisms. However, some bacteria are able to cause diseases (i.e, parasitic bacteria also referred to as pathogens). To control the growth of these parasitic bacteria, antimicrobial peptides and polypeptides such as lectins are promising raw materials for the production of new antibiotics. Lectins are able to interact with carbohydrates in bacterial cell walls and promote antibacterial activity. The aim of this review was to describe the importance of bacteria to environments, their use as biological control agents and the application of lectins to control pathogenic bacteria.
机译:微生物群落对于人类为了健康或工业目的使用生态系统具有极其重要的意义。大多数细菌可以分为三类:腐生细菌;腐生细菌。共生和寄生的。腐生细菌是有机物的主要分解物,可用于处理含金属矿山,放射性环境废物,生物柴油生产等。共生细菌与其他有机体互惠互利,为它们的宿主有机体提供必需的营养。但是,某些细菌能够引起疾病(即,寄生细菌也称为病原体)。为了控制这些寄生细菌的生长,抗菌肽和多肽(如凝集素)是生产新抗生素的有前途的原料。凝集素能够与细菌细胞壁中的碳水化合物相互作用并促进抗菌活性。这篇综述的目的是描述细菌对环境的重要性,它们作为生物防治剂的应用以及凝集素在控制病原细菌中的应用。

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