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菌根辅助细菌链霉菌AcH 505诱导外生菌根真菌毒蝇鹅膏中的基因差异表达。

Mycorrhiza helper bacterium Streptomyces AcH 505 induces differential gene expression in the ectomycorrhizal fungus Amanita muscaria.

作者信息

Schrey Silvia D, Schellhammer Michael, Ecke Margret, Hampp Rüdiger, Tarkka Mika T

机构信息

University of Tübingen, Faculty of Biology, Institute of Botany, Physiological Ecology of Plants, Auf der Morgenstelle 1, D-72076 Tübingen, Germany.

出版信息

New Phytol. 2005 Oct;168(1):205-16. doi: 10.1111/j.1469-8137.2005.01518.x.

Abstract

The interaction between the mycorrhiza helper bacteria Streptomyces nov. sp. 505 (AcH 505) and Streptomyces annulatus 1003 (AcH 1003) with fly agaric (Amanita muscaria) and spruce (Picea abies) was investigated. The effects of both bacteria on the mycelial growth of different ectomycorrhizal fungi, on ectomycorrhiza formation, and on fungal gene expression in dual culture with AcH 505 were determined. The fungus specificities of the streptomycetes were similar. Both bacterial species showed the strongest effect on the growth of mycelia at 9 wk of dual culture. The effect of AcH 505 on gene expression of A. muscaria was examined using the suppressive subtractive hybridization approach. The responsive fungal genes included those involved in signalling pathways, metabolism, cell structure, and the cell growth response. These results suggest that AcH 505 and AcH 1003 enhance mycorrhiza formation mainly as a result of promotion of fungal growth, leading to changes in fungal gene expression. Differential A. muscaria transcript accumulation in dual culture may result from a direct response to bacterial substances.

摘要

研究了菌根辅助细菌新链霉菌菌株505(AcH 505)和环链霉菌1003(AcH 1003)与毒蝇伞(红菇)和云杉(欧洲云杉)之间的相互作用。测定了这两种细菌对不同外生菌根真菌菌丝体生长、外生菌根形成以及与AcH 505共培养时真菌基因表达的影响。链霉菌的真菌特异性相似。两种细菌在共培养9周时对菌丝体生长的影响最强。使用抑制性消减杂交方法检测了AcH 505对毒蝇伞基因表达的影响。响应的真菌基因包括参与信号通路、代谢、细胞结构和细胞生长反应的基因。这些结果表明,AcH 505和AcH 1003主要通过促进真菌生长来增强菌根形成,从而导致真菌基因表达的变化。共培养中毒蝇伞转录本的差异积累可能是对细菌物质的直接反应所致。

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