Li Qi, Xie Qi-Guang, Smith-Becker Jennifer, Navarre Duroy A, Kaloshian Isgouhi
Department of Nematology, University of California, Riverside, CA 92521, USA.
Mol Plant Microbe Interact. 2006 Jun;19(6):655-64. doi: 10.1094/MPMI-19-0655.
The tomato Mi-1 gene confers resistance to root-knot nematodes (Meloidogyne spp.), potato aphids (Macrosiphum eluphorbiae), and whiteflies (Bemisia tabaci and B. tabaci biotype B). Resistance to potato aphid is developmentally regulated and is not associated with induction of a hypersensitive response. The NahG transgene that eliminates endogenous salicylic acid (SA) was used to test the role of the SA signaling pathway in the resistance mediated by Mi-1 to potato aphids. Aphids survived longer on NahG tomato plants than on wild type. However, aphid reproduction was not affected on NahG tomato. Aphid resistance in Mi-1 NahG plants was completely abolished and the phenotype was successfully rescued by application of BTH (benzo(1,2,3)-thiaiazole-7-carbothioic acid S-methyl ester), indicating that the SA signaling pathway is an important component of Mi-1-mediated aphid resistance. Using virus-induced gene silencing, one or more mitogen-activated protein kinase (MAPK) cascades required for Mi-1-mediated aphid resistance were identified. Silencing plants for MAPK kinase (LeMKK2) and MAPKs (LeMPK2 and LeMPK1, or LeMPK3) resulted in attenuation of Mi-1-mediated aphid resistance. These results further demonstrate that resistance gene-mediated signaling events against piercing-sucking insects are similar to those against other plant pathogens.
番茄Mi-1基因赋予对根结线虫(Meloidogyne spp.)、马铃薯蚜(Macrosiphum eluphorbiae)和粉虱(烟粉虱和烟粉虱生物型B)的抗性。对马铃薯蚜的抗性受发育调控,且与过敏反应的诱导无关。利用消除内源性水杨酸(SA)的NahG转基因来测试SA信号通路在Mi-1介导的对马铃薯蚜抗性中的作用。蚜虫在NahG番茄植株上存活的时间比在野生型植株上更长。然而,蚜虫在NahG番茄上的繁殖未受影响。Mi-1 NahG植株中的蚜虫抗性完全丧失,通过施用BTH(苯并[1,2,3]噻二唑-7-硫代羧酸S-甲酯)成功恢复了该表型,表明SA信号通路是Mi-1介导的蚜虫抗性的重要组成部分。利用病毒诱导的基因沉默,鉴定出Mi-1介导的蚜虫抗性所需的一个或多个丝裂原活化蛋白激酶(MAPK)级联。沉默MAPK激酶(LeMKK2)和MAPK(LeMPK2和LeMPK1,或LeMPK3)的植株导致Mi-1介导的蚜虫抗性减弱。这些结果进一步证明,抗性基因介导的针对刺吸式昆虫的信号传导事件与针对其他植物病原体的信号传导事件相似。