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真菌次生代谢产物作为植物病原真菌中感染相关形态发生的抑制剂

Fungal secondary metabolites as inhibitors of infection-related morphogenesis in phytopathogenic fungi.

作者信息

Thines Eckhard, Anke Heidrun, Weber Roland W S

机构信息

Institute of Biotechnology and Drug Research, Erwin-Schrödinger-Strasse 56, D-67663 Kaiserslautern, Germany.

出版信息

Mycol Res. 2004 Jan;108(Pt 1):14-25. doi: 10.1017/s0953756203008943.

Abstract

The life-cycle of many plant-pathogenic fungi, especially those infecting aerial plant organs, contains several specific developmental stages. If these are sufficiently distinct in their physiology from vegetative hyphal growth, they present potential targets for non-fungitoxic plant protectants. The present review identifies such targets especially in the pre-penetration stages of the infection cycle of Magnaporthe grisea and other fungi infecting from air-borne spores. Examples of non-toxic natural products with activity against spore germination, attachment, appressorium formation, appressorium maturation and penetration of the host surface are given. In contrast, no substances selectively active against in planta growth or sporulation appear to be known. The selective activity of numerous secondary metabolites against specific infection stages without accompanying toxicity against vegetatively growing hyphae indicates a direction for the development of future natural product-derived fungicides which are more easily degraded in the environment and possess fewer non-target effects. Such substances are produced by many saprotrophic and endophytic fungi in pure culture. The paucity of data on the production of biologically active substances in natural situations limits the interpretation of their ecophysiological significance for the producer.

摘要

许多植物病原真菌的生命周期,尤其是那些感染植物地上器官的真菌,包含几个特定的发育阶段。如果这些阶段在生理上与营养菌丝生长有足够明显的差异,它们就成为了非杀真菌性植物保护剂的潜在作用靶点。本综述特别指出了这些靶点,尤其是在稻瘟病菌和其他由气传孢子感染的真菌的侵染循环的穿透前阶段。文中给出了具有抗孢子萌发、附着、附着胞形成、附着胞成熟以及穿透寄主表面活性的无毒天然产物实例。相比之下,似乎尚无对植物体内生长或孢子形成有选择性活性的物质。众多次生代谢产物对特定侵染阶段的选择性活性,而对营养生长的菌丝无伴随毒性,这为未来开发在环境中更易降解且非靶标效应更少的天然产物衍生杀菌剂指明了方向。许多腐生真菌和内生真菌在纯培养中能产生这类物质。关于在自然环境中生物活性物质产生的数据匮乏,限制了对其对生产者生态生理意义的解读。

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