首页> 外文期刊>FEMS Microbiology Ecology >Trichoderma atroviride promotes tomato development and alters the root exudation of carbohydrates, which stimulates fungal growth and the biocontrol of the phytopathogen Phytophthora cinnamomi in a tripartite interaction system
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Trichoderma atroviride promotes tomato development and alters the root exudation of carbohydrates, which stimulates fungal growth and the biocontrol of the phytopathogen Phytophthora cinnamomi in a tripartite interaction system

机译:Trichoderma Atroviride促进番茄开发,改变了碳水化合物的根本渗出,促进了三方互动系统中植物脑脑植物植物植物植物植物植物植物脑膜炎的真菌生长和生物管制

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摘要

Several species of Trichoderma promote plant growth and help in defense against root pathogens. The role of root-exuded carbohydrates as chemo-attractive stimuli for Trichoderma colonization is attracting considerable interest. In this project, we studied the interaction between Trichoderma atroviride and tomato (Lycopersicon esculentum L. cv. Rio Grande) plants in two different stages, before and during root colonization. In addition, the biocontrol capacity of T. atroviride against the phytopathogen Phytophthora cinnamomi in a tripartite interaction system was examined. We found that the beneficial effects of T. atroviride on plant growth were fine-tuned depending on the progress of interaction. Interestingly, the composition of the carbohydrate exudate from plants interacting with T. atroviride was different from that produced by other treatments and probably provided a nutritional source for the fungus. Particularly, sucrose was found only during root colonization by the fungus. Our data show that root-derived sugars enabled a higher Trichoderma growth rate, and that, in the tripartite interaction system with P. cinnamomi, the fungus competes for space and available soil nutrients more efficiently than P. cinnamomi, thereby antagonizing the growth of the phytopathogen.
机译:几种植物植物生长促进植物生长,帮助对根病原体进行防御。根出渗出的碳水化合物作为ChemoOm-is刺激的Trichoderma殖民化的作用是吸引相当大的兴趣。在该项目中,我们研究了Trichoderma Atroviride和番茄(Lycopersicon Esculentum L.CV.Rio Grande)植物在两种不同阶段的植物之间的相互作用,在根部定植之前和期间。此外,研究了在三方相互作用系统中对植物嗜脑致脑植物植物嗜睡症的生物控制能力。我们发现,根据相互作用的进展,T. Atroviride对植物生长的有益效果是微调的。有趣的是,从与T.阿托韦替换的植物中渗出的碳水化合物的组成与其他处理产生的植物不同,并且可能为真菌提供营养来源。特别地,仅在真菌的根部定植期间发现蔗糖。我们的数据显示,根系衍生的糖使得具有更高的Trichoderma生长速率,而且,在与P. Cinnamomi的三方相互作用系统中,真菌比P. Cinnamomi更有效地竞争空间和可用的土壤营养素,从而拮抗了植物病理学。

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