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Relationship of microbial communities and suppressiveness of Trichoderma fortified composts for pepper seedlings infected by Phytophthora nicotianae

机译:烟草疫霉菌感染辣椒幼苗的木霉菌强化堆肥抑制能力与微生物群落的关系

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摘要

The understanding of the dynamic of soil-borne diseases is related to the microbial composition of the rhizosphere which is the key to progress in the field of biological control. Trichoderma spp. is commonly used as a biological control agent. The use of next generation sequencing approaches and quantitative PCR are two successful approaches to assess the effect of using compost as substrate fortified with two Trichoderma strains (Trichoderma harzianum or Trichoderma asperellum) on bacterial and fungal communities in pepper rhizosphere infected with Phytophthora nicotianae. The results showed changes in the bacterial rhizosphere community not attributed to the Trichoderma strain, but to the pathogen infection, while, fungi were not affected by pathogen infection and depended on the type of substrate. The Trichoderma asperellum fortified compost was the most effective combination against the pathogen. This could indicate that the effect of fortified composts is greater than compost itself and the biocontrol effect should be attributed to the Trichoderma strains rather than the compost microbiota, although some microorganisms could help with the biocontrol effect.
机译:对土壤传播疾病动态的了解与根际微生物的组成有关,这是生物防治领域取得进展的关键。木霉属。通常用作生物防治剂。下一代测序方法和定量PCR的使用是两种成功的方法,用于评估将堆肥作为两种木霉菌株(哈茨木霉(Trichoderma harzianum)或曲霉木霉(Trichoderma asperellum))强化的底物对感染了烟草疫霉菌的辣椒根际细菌和真菌群落的影响。结果表明,细菌根际群落的变化并非归因于木霉属菌株,而是归因于病原体感染,而真菌不受病原体感染的影响,取决于底物的类型。曲霉木霉强化堆肥是最有效的抗病原菌组合。这可能表明强化堆肥的作用大于堆肥本身,其生物防治作用应归因于木霉菌菌株,而不是堆肥菌群,尽管有些微生物可以起到生物防治作用。

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