Pharmaceutical Biology, Julius-von-Sachs-Institute for Biosciences, Biocenter, University of Wuerzburg, Wuerzburg, Germany.
PLoS One. 2013 Jul 26;8(7):e69352. doi: 10.1371/journal.pone.0069352. Print 2013.
Piriformosporaindica is a basidiomycete fungus colonizing roots of a wide range of higher plants, including crop plants and the model plant Arabidopsis thaliana. Previous studies have shown that P. indica improves growth, and enhances systemic pathogen resistance in leaves of host plants. To investigate systemic effects within the root system, we established a hydroponic split-root cultivation system for Arabidopsis. Using quantitative real-time PCR, we show that initial P. indica colonization triggers a local, transient response of several defense-related transcripts, of which some were also induced in shoots and in distal, non-colonized roots of the same plant. Systemic effects on distal roots included the inhibition of secondary P. indica colonization. Faster and stronger induction of defense-related transcripts during secondary inoculation revealed that a P. indica pretreatment triggers root-wide priming of defense responses, which could cause the observed reduction of secondary colonization levels. Secondary P. indica colonization also induced defense responses in distant, already colonized parts of the root. Endophytic fungi therefore trigger a spatially specific response in directly colonized and in systemic root tissues of host plants.
梨形孢(Piriformosporaindica)是一种担子菌真菌,寄生于包括作物植物和模式植物拟南芥在内的多种高等植物的根部。先前的研究表明,梨形孢可以促进宿主植物的生长,并增强其叶片的系统性病原抗性。为了研究根系内的系统性效应,我们为拟南芥建立了一个水培分根培养系统。通过实时定量 PCR,我们发现梨形孢的初始定植会引发局部、短暂的防御相关转录本的反应,其中一些转录本也会在植物的地上部分和远处、未定植的根中诱导。对远根的系统性影响包括抑制二次梨形孢的定植。在二次接种期间,防御相关转录本更快更强的诱导表明,梨形孢预处理会触发防御反应的根广泛启动,这可能导致二次定植水平的降低。二次梨形孢定植也会在已定植的根的远处部分诱导防御反应。因此,内生真菌会在宿主植物的直接定植和系统根组织中引发特定的空间反应。