Research Centre for Biosystems, Land Use, and Nutrition, Justus Liebig University, D-35392 Giessen, Germany.
Plant Physiol. 2011 Jun;156(2):726-40. doi: 10.1104/pp.111.176446. Epub 2011 Apr 7.
Piriformospora indica is a root-colonizing basidiomycete that confers a wide range of beneficial traits to its host. The fungus shows a biotrophic growth phase in Arabidopsis (Arabidopsis thaliana) roots followed by a cell death-associated colonization phase, a colonization strategy that, to our knowledge, has not yet been reported for this plant. P. indica has evolved an extraordinary capacity for plant root colonization. Its broad host spectrum encompasses gymnosperms and monocotyledonous as well as dicotyledonous angiosperms, which suggests that it has an effective mechanism(s) for bypassing or suppressing host immunity. The results of our work argue that P. indica is confronted with a functional root immune system. Moreover, the fungus does not evade detection but rather suppresses immunity triggered by various microbe-associated molecular patterns. This ability to suppress host immunity is compromised in the jasmonate mutants jasmonate insensitive1-1 and jasmonate resistant1-1. A quintuple-DELLA mutant displaying constitutive gibberellin (GA) responses and the GA biosynthesis mutant ga1-6 (for GA requiring 1) showed higher and lower degrees of colonization, respectively, in the cell death-associated stage, suggesting that P. indica recruits GA signaling to help establish proapoptotic root cell colonization. Our study demonstrates that mutualists, like pathogens, are confronted with an effective innate immune system in roots and that colonization success essentially depends on the evolution of strategies for immunosuppression.
印楝内生真菌是一种定殖于根部的担子菌,能赋予宿主多种有益特性。该真菌在拟南芥(Arabidopsis thaliana)根中表现出一种生物营养生长阶段,随后是与细胞死亡相关的定殖阶段,这种定殖策略据我们所知,尚未在该植物中报道过。印楝内生真菌已经进化出一种非凡的植物根定殖能力。它广泛的宿主谱包括裸子植物和单子叶植物以及双子叶被子植物,这表明它有一种有效的机制来绕过或抑制宿主的免疫。我们的工作结果表明,印楝内生真菌面临着一个功能性的根免疫系统。此外,该真菌不会逃避检测,而是抑制各种微生物相关分子模式触发的免疫。这种抑制宿主免疫的能力在茉莉酸不敏感 1-1 和茉莉酸抗性 1-1 的突变体中受到损害。一个具有组成型赤霉素(GA)反应的五倍 DELLA 突变体和一个需要 GA 的 GA 生物合成突变体 ga1-6 显示出更高和更低程度的定殖,分别在与细胞死亡相关的阶段,这表明印楝内生真菌招募 GA 信号来帮助建立促凋亡根细胞定殖。我们的研究表明,共生体,如病原体,在根中面临着有效的先天免疫系统,而定殖成功在很大程度上取决于免疫抑制策略的进化。