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跨界相互作用:分子层面细菌与真菌相互作用的最新进展

Inter-kingdom encounters: recent advances in molecular bacterium-fungus interactions.

作者信息

Tarkka Mika T, Sarniguet Alain, Frey-Klett Pascale

机构信息

UFZ, Department of Soil Ecology, Helmholtz Centre for Environmental Research, Halle, Germany.

出版信息

Curr Genet. 2009 Jun;55(3):233-43. doi: 10.1007/s00294-009-0241-2. Epub 2009 Apr 1.

Abstract

Interactions between bacteria and fungi are well known, but it is often underestimated how intimate and decisive such associations can be with respect to behaviour and survival of each participating organism. In this article we review recent advances in molecular bacterium-fungus interactions, combining the data of different model systems. Emphasis is given to the positive or negative consequences these interactions have on the microbe accommodating plants and animals. Intricate mechanisms of antagonism and tolerance have emerged, being as important for the biological control of plants against fungal diseases as for the human body against fungal infections. Bacterial growth promoters of fungal mycelium have been characterized, and these may as well assist plant-fungus mutualism as disease development in animals. Some of the toxins that have been previously associated with fungi are actually produced by endobacteria, and the mechanisms that lie behind the maintenance of such exquisite endosymbioses are fascinating. Bacteria do cause diseases in fungi, and a synergistic action between bacterial toxins and extracellular enzymes is the hallmark of such diseases. The molecular study of bacterium-fungus associations has expanded our view on microbial communication, and this promising field shows now great potentials in medicinal, agricultural and biotechnological applications.

摘要

细菌与真菌之间的相互作用广为人知,但这类关联对于每个参与其中的生物体的行为和生存而言究竟有多密切和关键,却常常被低估。在本文中,我们结合不同模型系统的数据,综述了分子层面细菌 - 真菌相互作用的最新进展。重点阐述了这些相互作用对宿主动植物体内微生物所产生的正面或负面后果。拮抗和耐受的复杂机制已然出现,它们对于植物抵御真菌病害的生物防治以及人体抵御真菌感染同样重要。已对促进真菌菌丝体生长的细菌进行了表征,它们既可能有助于植物 - 真菌共生,也可能推动动物疾病的发展。一些先前被认为与真菌相关的毒素实际上是由内生细菌产生的,维持这种精妙的内共生关系背后的机制引人入胜。细菌确实会引发真菌疾病,细菌毒素与细胞外酶之间的协同作用是这类疾病的标志。对细菌 - 真菌关联的分子研究拓宽了我们对微生物通讯的认识,这个充满前景的领域如今在医学、农业和生物技术应用方面展现出巨大潜力。

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