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根际中的微生物相互作用与生物防治

Microbial interactions and biocontrol in the rhizosphere.

作者信息

Whipps J M

机构信息

Plant Pathology and Microbiology Department, Horticulture Research International, Wellesbourne, Warwick CV35 9EF, UK.

出版信息

J Exp Bot. 2001 Mar;52(Spec Issue):487-511. doi: 10.1093/jexbot/52.suppl_1.487.

Abstract

The loss of organic material from the roots provides the energy for the development of active microbial populations in the rhizosphere around the root. Generally, saproptrophs or biotrophs such as mycorrhizal fungi grow in the rhizosphere in response to this carbon loss, but plant pathogens may also develop and infect a susceptible host, resulting in disease. This review examines the microbial interactions that can take place in the rhizosphere and that are involved in biological disease control. The interactions of bacteria used as biocontrol agents of bacterial and fungal plant pathogens, and fungi used as biocontrol agents of protozoan, bacterial and fungal plant pathogens are considered. Whenever possible, modes of action involved in each type of interaction are assessed with particular emphasis on antibiosis, competition, parasitism, and induced resistance. The significance of plant growth promotion and rhizosphere competence in biocontrol is also considered. Multiple microbial interactions involving bacteria and fungi in the rhizosphere are shown to provide enhanced biocontrol in many cases in comparison with biocontrol agents used singly. The extreme complexity of interactions that can occur in the rhizosphere is highlighted and some potential areas for future research in this area are discussed briefly.

摘要

根系中有机物质的损失为根际周围活跃微生物群体的发展提供了能量。一般来说,腐生菌或生物营养体(如菌根真菌)会因这种碳损失而在根际生长,但植物病原体也可能滋生并感染易感宿主,从而导致病害。本综述探讨了根际中可能发生的、与生物病害防治有关的微生物相互作用。研究了用作细菌和真菌植物病原体生物防治剂的细菌,以及用作原生动物、细菌和真菌植物病原体生物防治剂的真菌之间的相互作用。只要有可能,就会评估每种相互作用所涉及的作用模式,特别强调抗生作用、竞争作用、寄生作用和诱导抗性。还考虑了植物生长促进和根际适应性在生物防治中的重要性。与单独使用生物防治剂相比,根际中涉及细菌和真菌的多种微生物相互作用在许多情况下能提供更强的生物防治效果。文中强调了根际中可能发生的相互作用极其复杂,并简要讨论了该领域未来一些潜在的研究方向。

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