Tanaka Aiko, Christensen Michael J, Takemoto Daigo, Park Pyoyun, Scott Barry
Centre for Functional Genomics, Institute of Molecular BioSciences, Massey University, Private Bag 11 222, Palmerston North, New Zealand.
Plant Cell. 2006 Apr;18(4):1052-66. doi: 10.1105/tpc.105.039263. Epub 2006 Mar 3.
Although much is known about the signals and mechanisms that lead to pathogenic interactions between plants and fungi, comparatively little is known about fungus-plant mutualistic symbioses. We describe a novel role for reactive oxygen species (ROS) in regulating the mutualistic interaction between a clavicipitaceous fungal endophyte, Epichloë festucae, and its grass host, Lolium perenne. In wild-type associations, E. festucae grows systemically in intercellular spaces of leaves as infrequently branched hyphae parallel to the leaf axis. A screen to identify symbiotic genes isolated a fungal mutant that altered the interaction from mutualistic to antagonistic. This mutant has a single-copy plasmid insertion in the coding region of a NADPH oxidase gene, noxA. Plants infected with the noxA mutant lose apical dominance, become severely stunted, show precocious senescence, and eventually die. The fungal biomass in these associations is increased dramatically, with hyphae showing increased vacuolation. Deletion of a second NADPH oxidase gene, noxB, had no effect on the E. festucae-perennial ryegrass symbiosis. ROS accumulation was detected cytochemically in the endophyte extracellular matrix and at the interface between the extracellular matrix and host cell walls of meristematic tissue in wild-type but not in noxA mutant associations. These results demonstrate that fungal ROS production is critical in maintaining a mutualistic fungus-plant interaction.
尽管人们对导致植物与真菌之间致病相互作用的信号和机制了解颇多,但对真菌与植物的互利共生关系却知之甚少。我们描述了活性氧(ROS)在调节麦角菌科真菌内生菌——高羊茅内生真菌(Epichloë festucae)与其禾本科宿主多年生黑麦草(Lolium perenne)之间互利共生相互作用中的新作用。在野生型共生关系中,高羊茅内生真菌以平行于叶轴的极少分支菌丝在叶的细胞间隙中系统生长。一项旨在鉴定共生基因的筛选分离出了一个真菌突变体,该突变体改变了这种相互作用,使其从互利共生转变为拮抗。这个突变体在一个NADPH氧化酶基因noxA的编码区有一个单拷贝质粒插入。感染了noxA突变体的植物失去顶端优势,严重矮化,表现出早衰,最终死亡。在这些共生关系中,真菌生物量显著增加,菌丝的液泡化程度也增加。删除另一个NADPH氧化酶基因noxB对高羊茅内生真菌与多年生黑麦草的共生关系没有影响。在野生型共生关系中,通过细胞化学方法检测到ROS在分生组织的内生菌细胞外基质以及细胞外基质与宿主细胞壁之间的界面处积累,而在noxA突变体共生关系中则未检测到。这些结果表明,真菌产生ROS对于维持真菌与植物的互利共生相互作用至关重要。