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首页> 外文期刊>BMC Plant Biology >Loss of compatibility might explain resistance of the Arabidopsis thaliana accession Te-0 to Golovinomyces cichoracearum
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Loss of compatibility might explain resistance of the Arabidopsis thaliana accession Te-0 to Golovinomyces cichoracearum

机译:相容性的丧失可能解释了拟南芥登录号Te-0对Golovinomyces cichoracearum的抗性

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Background The establishment of compatibility between plants and pathogens requires compliance with various conditions, such as recognition of the right host, suppression of defence mechanisms, and maintenance of an environment allowing pathogen reproduction. To date, most of the plant factors required to sustain compatibility remain unknown, with the few best characterized being those interfering with defence responses. A suitable system to study host compatibility factors is the interaction between Arabidopsis thaliana and the powdery mildew (PM) Golovinomyces cichoracearum. As an obligate biotrophic pathogen, this fungus must establish compatibility in order to perpetuate. In turn, A. thaliana displays natural variation for susceptibility to this invader, with some accessions showing full susceptibility (Col-0), and others monogenic dominant resistance (Kas-1). Interestingly, Te-0, among other accessions, displays recessive partial resistance to this PM. Results In this study, we characterized the interaction of G. cichoracearum with Te-0 plants to investigate the basis of this plant resistance. We found that Te-0′s incompatibility was not associated with hyper-activation of host inducible defences. Te-0 plants allowed germination of conidia and development of functional haustoria, but could not support the formation of mature conidiophores. Using a suppressive subtractive hybridization technique, we identified plant genes showing differential expression between resistant Te-0 and susceptible Col-0 plants at the fungal pre-conidiation stage. Conclusions Te-0 resistance is likely caused by loss of host compatibility and not by stimulation of inducible defences. Conidiophores formation is the main constraint for completion of fungal life cycle in Te-0 plants. The system here described allowed the identification of genes proposed as markers for susceptibility to this PM.
机译:背景技术建立植物与病原体之间的兼容性需要遵守各种条件,例如识别正确的宿主,抑制防御机制以及维持允许病原体繁殖的环境。迄今为止,维持相容性所需的大多数植物因子仍是未知的,只有少数特征最明显的是干扰防御反应的因子。研究宿主相容性因子的合适系统是拟南芥和白粉病(Golovinomyces cichoracearum)之间的相互作用。作为专性的生物营养病原体,这种真菌必须建立相容性才能永生。反过来,拟南芥显示出对该入侵者的易感性的自然变化,一些种质表现出完全的易感性(Col-0),而其他种质表现出单基因显性抗性(Kas-1)。有趣的是,Te-0除其他外,还表现出对该PM的隐性部分抵抗。结果在这项研究中,我们表征了G. cichoracearum与Te-0植物的相互作用,以研究这种植物抗性的基础。我们发现Te-0的不相容性与宿主诱导防御的过度激活无关。 Te-0植物允许分生孢子萌发和功能性haustoria的发育,但不能支持成熟分生孢子的形成。使用抑制性消减杂交技术,我们鉴定了在真菌预生阶段显示抗性Te-0植物和易感Col-0植物之间差异表达的植物基因。结论Te-0耐药性可能是由于宿主相容性丧失引起的,而不是由于诱导防御系统的刺激引起的。分生孢子的形成是Te-0植物中真菌生命周期完成的主要限制。这里描述的系统允许鉴定提议作为该PM易感性标记的基因。

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