Center for Chemical Ecology, Department of Entomology, Pennsylvania State University, University Park, PA, USA.
Plant Signal Behav. 2010 Aug;5(8):929-31. doi: 10.4161/psb.5.8.11772. Epub 2010 Aug 1.
Herbivores and pathogens come quickly to mind when one thinks of the biotic challenges faced by plants. Important but less appreciated enemies are parasitic plants, which can have important consequences for the fitness and survival of their hosts. Our knowledge of plant perception, signaling, and response to herbivores and pathogens has expanded rapidly in recent years, but information is generally lacking for parasitic species. In a recent paper we reported that some of the same defense responses induced by herbivores and pathogens--notably increases in jasmonic acid (JA), salicylic acid (SA), and a hypersensitive-like response (HLR)--also occur in tomato plants upon attack by the parasitic plant Cuscuta pentagona (field dodder). Parasitism induced a distinct pattern of JA and SA accumulation, and growth trials using genetically-altered tomato hosts suggested that both JA and SA govern effective defenses against the parasite, though the extent of the response varied with host plant age. Here we discuss similarities between the induced responses we observed in response to Cuscuta parasitism to those previously described for herbivores and pathogens and present new data showing that trichomes should be added to the list of plant defenses that act against multiple enemies and across Kingdoms.
当人们想到植物面临的生物挑战时,首先会想到食草动物和病原体。寄生植物虽然不那么引人注目,但也是重要的敌人,它们会对宿主的适应性和生存能力产生重要影响。近年来,我们对植物感知、信号传递以及对食草动物和病原体的反应的了解迅速扩展,但有关寄生物种的信息通常较为缺乏。在最近的一篇论文中,我们报告说,一些与食草动物和病原体诱导的防御反应相同的反应——尤其是茉莉酸(JA)、水杨酸(SA)和过敏性样反应(HLR)的增加——也会在番茄植物受到寄生植物菟丝子(field dodder)的攻击时发生。寄生诱导了 JA 和 SA 积累的独特模式,使用基因改造的番茄宿主进行的生长试验表明,JA 和 SA 都能有效地抵御寄生虫,但反应的程度因宿主植物的年龄而异。在这里,我们讨论了我们在对菟丝子寄生的反应中观察到的诱导反应与之前对食草动物和病原体描述的反应之间的相似之处,并提出了新的数据,表明拟南芥表皮毛应该被添加到针对多种敌人和多个王国的植物防御列表中。