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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Endophytic bacteria enhancing growth and disease resistance of potato (Solanum tuberosum L.)
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Endophytic bacteria enhancing growth and disease resistance of potato (Solanum tuberosum L.)

机译:内生细菌增强马铃薯(Solanum tuberosum L.)的生长和抗病性

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摘要

Priming plants by non-pathogenic bacteria allows the host to save energy and to reduce time needed for development of defense reaction during a pathogen attack. However, information on the role of endophytes in plant defense is limited. Here, the ability of endophytic bacteria to promote growth and resistance of potato plants towards infection by the necrotroph Pectobacterium atrosepticum was studied. A Pseudomonas sp. strain was selected due to antagonism towards bacterial pathogens and a Methylobacterium sp. strain because of efficient plant colonization. The aim of this study was to find if there is any correlation between plant growth promotion and induction of resistance by endophytes of potato, as well as to study the putative mechanisms of endophytes interacting with the plant during resistance induction. Both tested strains promoted growth of potato shoots but only the Pseudomonas sp. increased potato resistance towards the soft rot disease. Induction of disease resistance by the Methylobacterium sp. was inversely proportional to the size of bacterial population used for inoculation. The plant antioxidant system was moderately activated during the induction of resistance by the biocontrol strains. qPCR data on expression of marker genes of induced systemic resistance and acquired systemic resistance in endophyte-infected Arabidopsis plants showed activation of both salicylic acid and jasmonate/ethylene-dependent pathways after challenge inoculation with the pathogen. We suggest that some endophytes have the potential to activate both basal and inducible plant defense systems, whereas the growth promotion by biocontrol strains may not correlate with induction of disease resistance
机译:通过非致病细菌对植物进行萌发,可以使宿主节省能量,并减少病原体侵袭期间发生防御反应所需的时间。但是,有关内生菌在植物防御中作用的信息有限。在此,研究了内生细菌促进马铃薯植株生长和抵抗坏死性土壤杆菌杆菌感染的能力。假单胞菌选择菌株是由于对细菌病原体和甲基杆菌属的拮抗作用。菌株是由于有效的植物定殖。这项研究的目的是发现植物生长促进与马铃薯内生菌对抗性的诱导之间是否存在任何相关性,以及研究内生菌在抗性诱导过程中与植物相互作用的推测机制。两种测试菌株均促进马铃薯芽的生长,但仅假单胞菌属sp。马铃薯对软腐病的抵抗力增强。甲基杆菌属引起的抗病性。与用于接种的细菌种群大小成反比。在生物防治菌株诱导抗性过程中,植物抗氧化剂系统被适度激活。内生菌感染的拟南芥植物中诱导的系统抗性和获得性系统抗性的标记基因表达的qPCR数据显示,病原菌接种后,水杨酸和茉莉酸/乙烯依赖性途径均被激活。我们建议某些内生菌具有激活基础和诱导植物防御系统的潜力,而生物防治菌株的促进生长可能与抗病性的诱导无关

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