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植物病原拮抗菌木霉属真菌的研究进展 被引量:34
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作者 韩长志 《江苏农业学报》 CSCD 北大核心 2016年第4期946-952,共7页
为了明确木霉属真菌今后在筛选、保护以及开发利用等方面的研究方向,对植物病原拮抗菌木霉属真菌的分离筛选区域、作用对象以及利用进行综述。生防木霉属真菌分离筛选区域涉及健康植物根际土壤、健康植物组织内部以及极端环境区域等。... 为了明确木霉属真菌今后在筛选、保护以及开发利用等方面的研究方向,对植物病原拮抗菌木霉属真菌的分离筛选区域、作用对象以及利用进行综述。生防木霉属真菌分离筛选区域涉及健康植物根际土壤、健康植物组织内部以及极端环境区域等。生防木霉属真菌作用对象主要包括粮食作物、蔬菜、果树和烟草等。生产中主要利用生防木霉属真菌活体本身及其代谢产物形成的制剂防治植物病原菌等。提出了学术界对生防木霉属真菌未来的研究热点、难点以及重点,为进一步开展木霉属真菌开发及利用研究提供重要的理论基础。 展开更多
关键词 木霉属真 植物病原拮抗菌 作用对象 分离区域
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Proteomic study of three component interactions: plant, pathogens and antagonistic fungi
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作者 Marra R Ambrosino P +9 位作者 Scala V Romano C Vinale F Ferraioli S Ruocco M Carbone V Woo S L Turrà D Scala F Lorito M 《浙江大学学报(农业与生命科学版)》 CAS CSCD 北大核心 2004年第4期449-449,共1页
The molecular factors involved in the three-way interaction between plant, pathogenic fungi and antagonistic/biocontrol fungi, such as Trichoderma, are still poorly understood, even if they represent a matter of inter... The molecular factors involved in the three-way interaction between plant, pathogenic fungi and antagonistic/biocontrol fungi, such as Trichoderma, are still poorly understood, even if they represent a matter of interest for improving crop management and developing new strategies for plant diseases control. The aim of this work is to investigate the components involved in this interaction and, for this purpose, a proteomic approach was used. 2-D maps of the protein extracts from the single components in various interactions between plants (potato, bean, tobacco or tomato), pathogens (Botrytis cinerea, Rhizoctonia solani or Pythium ultimum) and biocontrol fungi (Trichoderma atroviride strain P1 or Trichoderma harzianum strain T22) were obtained. The proteome of each partner was collected separately and extracted by acetone precipitation in presence of trichloroacetic acid and a reducing agent (DTT). The extracted proteins were separated by isoelectrofocusing (IEF), using IPG (Immobilized pH gradient) strips, followed by SDS-PAGE. In order to improve resolution the separations were performed both on wide than narrow pH range and on different gel lengths. Differential spots were noted in the proteome of the three-way interaction when compared to each single component. These were further characterized by mass spectrometry and in silico analysis with the aim of identifying and cloning the relative genes. During the in vitro interaction of T. harzianum strain T22 with tomato and the culture filtrate or cell walls of pathogens, the spot number was higher than in the presence of pathogen biomass. In terms of Trichoderma differential proteins displayed on 2D gels, the most important changes were obtained in the presence of P. ultimum . During the in vivo interaction with tomato, the antagonist proteome changed much more in presence of soilborne fungi R. solani and P. ultimum than with the foliar fungus B. cinerea, both in terms of total and increased or novel spots. In silico analysis of some of those spots revealed homology with intracellular enzymes (GTPases, hydrolases) and with stress-related proteins (heat shock proteins HSP70, bacteriocin cloacin). Specific proteins in the plant proteome, i.e. pathogenesis-related proteins, have been identified during the in vivo interaction of bean with R. solani and T. atroviride strain P1. This is in agreement with the demonstrated ability of these beneficial fungi to induce plant systemic disease resistance by activating expression of defence-related genes. Proteins extracted from T. atrovride strain P1 which were analysed by mass spectrometry, revealed some interesting homologies with a fungal hydrophobin of Pleurotus ostreatus and an ABC transporter of Ralstonia metallidurans. These could represent molecular factors involved in the antagonistic mechanisms of Trichoderma and play a role in the three-way interaction with the plant and other microbes. 展开更多
关键词 differential proteins in vivo interactions induced disease resistance
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