Geraats Bart P J, Bakker Peter A H M, van Loon L C
Graduate School Experimental Plant Sciences, Faculty of Biology, Utrecht University, The Netherlands.
Mol Plant Microbe Interact. 2002 Oct;15(10):1078-85. doi: 10.1094/MPMI.2002.15.10.1078.
Transgenic ethylene-insensitive tobacco (Tetr) plants spontaneously develop symptoms of wilting and stem necrosis when grown in nonautoclaved soil. Fusarium oxysporum, F. solani, Thielaviopsis basicola, Rhizopus stolonifer, and two Pythium spp. were isolated from these diseased Tetr plants and demonstrated to be causal agents of the disease symptoms. Pathogenicity of the two Pythium isolates and four additional Pythium spp. was tested on ethylene-insensitive tobacco and Arabidopsis seedlings. In both plant species, ethylene insensitivity enhanced susceptibility to the Pythium spp., as evidenced by both a higher disease index and a higher percentage of diseased plants. Based on the use of a DNA probe specific for Pythium spp., Tetr plants exhibited more pathogen growth in stem and leaf tissue than similarly diseased control plants. These results demonstrate that ethylene signaling is required for resistance to different root pathogens and contributes to limiting growth and systemic spread of the pathogen.
转基因乙烯不敏感烟草(Tetr)植株在未灭菌的土壤中生长时会自发出现萎蔫和茎坏死症状。从这些患病的Tetr植株中分离出尖孢镰刀菌、茄腐镰刀菌、根腐离蠕孢、匍枝根霉和两种腐霉属真菌,并证明它们是病害症状的致病因子。对两种腐霉属分离株和另外四种腐霉属真菌在乙烯不敏感烟草和拟南芥幼苗上进行了致病性测试。在这两种植物中,乙烯不敏感性增强了对腐霉属真菌的易感性,这表现为更高的病害指数和更高的患病植株百分比。基于使用针对腐霉属真菌的特异性DNA探针,Tetr植株的茎和叶组织中病原体生长比同样患病的对照植株更多。这些结果表明,乙烯信号传导是抵抗不同根部病原体所必需的,并有助于限制病原体的生长和系统传播。