Department of Botany, Faculty of Science, Palacký University in Olomouc, Olomouc, Czech Republic.
Department of Plant Pathology, Agrotest Fyto, Ltd, Kroměříž, Czech Republic.
PLoS One. 2022 Mar 14;17(3):e0265357. doi: 10.1371/journal.pone.0265357. eCollection 2022.
Brachypodium distachyon is a useful model organism for studying interaction of cereals with phytopathogenic fungi. The present study tested the possibility of a compatible interaction of B. distachyon with the endophytic fungus Microdochium bolleyi originated from wheat roots. There was evaluated the effect of this endophytic fungus on the intensity of the attack by pathogen Fusarium culmorum in B. distachyon and wheat, and also changes in expression of genes (in B. distachyon: BdChitinase1, BdPR1-5, BdLOX3, BdPAL, BdEIN3, and BdAOS; and in wheat: TaB2H2(chitinase), TaPR1.1, TaLOX, TaPAL, TaEIN2, and TaAOS) involved in defence against pathogens. Using light microscopy and newly developed specific primers was found to be root colonization of B. distachyon by the endophyte M. bolleyi. B. distachyon plants, as well as wheat inoculated with M. bolleyi showed significantly weaker symptoms on leaves from infection by fungus F. culmorum than did plants without the endophyte. Expression of genes BdPR1-5, BdChitinase1, and BdLOX3 in B. distachyon and of TaPR1.1 and TaB2H2 in wheat was upregulated after infection with F. culmorum. M. bolleyi-mediated resistance in B. distachyon was independent of the expression of the most tested genes. Taken together, the results of the present study show that B. distachyon can be used as a model host system for endophytic fungus M. bolleyi.
短柄草是研究谷物与植物病原菌相互作用的有用模式生物。本研究测试了源自小麦根的内生真菌 Microdochium bolleyi 与短柄草相容互作的可能性。评估了这种内生真菌对病原菌镰刀菌(Fusarium culmorum)在短柄草和小麦中攻击强度的影响,以及参与防御病原体的基因(在短柄草中:BdChitinase1、BdPR1-5、BdLOX3、BdPAL、BdEIN3 和 BdAOS;在小麦中:TaB2H2(几丁质酶)、TaPR1.1、TaLOX、TaPAL、TaEIN2 和 TaAOS)表达的变化。使用光学显微镜和新开发的特异性引物发现,内生真菌 M. bolleyi 可以定殖短柄草根。与没有内生真菌的植物相比,接种 M. bolleyi 的短柄草和小麦植株叶片上由真菌 F. culmorum 引起的症状明显较弱。感染 F. culmorum 后,B. distachyon 中 BdPR1-5、BdChitinase1 和 BdLOX3 基因以及小麦中 TaPR1.1 和 TaB2H2 基因的表达上调。M. bolleyi 介导的短柄草抗性不依赖于大多数测试基因的表达。综上所述,本研究结果表明,短柄草可以作为内生真菌 M. bolleyi 的模式宿主系统。