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产几丁质结合蛋白的橄榄绿链霉菌与增殖曲霉之间的协同反应。

Concerted responses between the chitin-binding protein secreting Streptomyces olivaceoviridis and Aspergillus proliferans.

作者信息

Siemieniewicz Krzysztof W, Schrempf Hildgund

机构信息

FB Biologie/Chemie, Universität Osnabrück, Barbarastr. 13, D-49069 Osnabrück, Germany.

出版信息

Microbiology (Reading). 2007 Feb;153(Pt 2):593-600. doi: 10.1099/mic.0.2006/001073-0.

Abstract

Streptomycetes belong to the ecologically important bacterial population within soil, which is also inhabited by many fungi. The highly chitinolytic Streptomyces olivaceoviridis and the ascomycete Aspergillus proliferans were chosen as models to test for interactions among bacteria and fungi. In medium lacking a soluble carbon source, individually cultivated spores of the bacterium S. olivaceoviridis and the fungus A. proliferans do not germinate. However, as shown by viability tests, cultivation of a mixture of both spore types provokes successive events: (i) stimulation of the germination of S. olivaceoviridis spores, (ii) initiation of the outgrowth of some fungal spores to which the S. olivaceoviridis chitinase ChiO1 adheres, (iii) massive extension of viable networks of S. olivaceoviridis hyphae at the expense of fungal hyphae and (iv) balanced proliferation of closely interacting fungal and S. olivaceoviridis hyphae. The replacement of the S. olivaceoviridis wild-type strain by a chromosomal disruption mutant (DeltaC), lacking production of the extracellular chitin-binding protein CHB1 but still secreting the chitinase ChiO1, provokes (v) germination of each spore type, (vi) retarded development of both partners, followed by (vii) preferential proliferation of the fungus. Together with biochemical and immunomicroscopy studies, the data support the conclusion that CHB1 molecules aggregate to an extracellular matrix, maintaining a close contact, followed by several concerted responses of the bacterium and the fungus.

摘要

链霉菌属于土壤中具有重要生态意义的细菌种群,土壤中也栖息着许多真菌。选择高度分解几丁质的橄榄绿链霉菌和子囊菌曲霉作为模型,来测试细菌与真菌之间的相互作用。在缺乏可溶性碳源的培养基中,单独培养的橄榄绿链霉菌孢子和曲霉孢子不会萌发。然而,正如活力测试所示,两种孢子类型的混合物培养引发了一系列连续事件:(i)刺激橄榄绿链霉菌孢子萌发,(ii)引发一些被橄榄绿链霉菌几丁质酶ChiO1附着的真菌孢子开始生长,(iii)橄榄绿链霉菌菌丝的存活网络大量延伸,以真菌菌丝为代价,以及(iv)紧密相互作用的真菌和橄榄绿链霉菌菌丝的平衡增殖。用缺乏细胞外几丁质结合蛋白CHB1的产生但仍分泌几丁质酶ChiO1的染色体破坏突变体(DeltaC)取代橄榄绿链霉菌野生型菌株,引发了(v)每种孢子类型的萌发,(vi)双方伙伴发育迟缓,随后是(vii)真菌的优先增殖。结合生化和免疫显微镜研究,这些数据支持以下结论:CHB1分子聚集形成细胞外基质,保持紧密接触,随后细菌和真菌会发生一系列协同反应。

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