4.7 Article

Biocontrol and growth-promoting effect of Trichoderma asperellum TaspHu1 isolate from Juglans mandshurica rhizosphere soil

期刊

MICROBIOLOGICAL RESEARCH
卷 242, 期 -, 页码 -

出版社

ELSEVIER GMBH
DOI: 10.1016/j.micres.2020.126596

关键词

Biological control; Trichoderma asperellum; Pathogen inhibition; Growth promotion; Available nitrogen

资金

  1. National Natural Science Foundation of China [NSFC:31870627]
  2. National High Technology Research and Development Program (the 13th Five-Year Plan Program) [2016YFC0501505]

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The study focused on collecting, identifying, and evaluating native Trichoderma strains, leading to the discovery of TaspHu1 which demonstrated excellent adaptability and biocontrol abilities for promoting growth and health of tomato seedlings. Therefore, it is a promising biocontrol candidate for agricultural and forestry applications.
To better apply the biocontrol agent Trichoderma spp. in Northeast China, collecting and screening more suitable native Trichoderma strains is necessary. In the present study, 10 isolates were obtained from Juglans mandshurica rhizosphere soils in Heilongjiang Province, and were identified as T. asperellum (four isolates), T. harzianum (four), T. hamatum (one), T. atroviride (one). The fastest-growing isolate per species on potato dextrose agar medium were further evaluated in stress tolerance tests (salt, alkali, nutritional stress, and low temperature) and confrontation assays (eight pathogens), which showed that T. asperellum TaspHu1 possessed the best adaptation and biological control ability. Then, Solanum lycopersicum (tomato) seeds were sown and treated with a series of concentrations of TaspHu1 spore suspension, as was unsown soil. Tomato seedlings treated by TaspHu1 had a significantly greater height, stem diameter, soluble protein content and soluble sugar content. Furthermore, their nitrate reductase activity and catalase activity were significantly increased, and these promoting effects depended on the concentration of the spore suspension. Meanwhile, a decrease in chlorophyll content was observed in the tomato seedlings treated with TaspHu1. In addition, strain TaspHu1 enhanced the tomato seedlings' absorption of available nitrogen, but did not influence the soil available nitrogen content. Furthermore, the resistance of tomato seedlings against Alternaria alternata was enhanced by TaspHu1 (smaller, fewer leaf spots), the seedlings' hormone signal transduction genes JAR1, MYC2, NPR1, PR1, and GH3.2 were highly expressed. Thus, TaspHu1 is a promising biocontrol candidate for use in agriculture and forestry.

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