Boyce Thompson Institute for plant Research, Tower Road, Ithaca, NY 14853, USA.
Mol Plant Microbe Interact. 2010 Jan;23(1):82-90. doi: 10.1094/MPMI-23-1-0082.
Methyl salicylate (MeSA), which is synthesized in plants from salicylic acid (SA) by methyltransferases, has roles in defense against microbial and insect pests. Most of the MeSA that accumulates after pathogen attack is synthesized by benzoic acid/SA carboxyl methyltransferase 1 (AtBSMT1). To investigate the role of AtBSMT1 in plant defense, transgenic Arabidopsis with altered AtBSMT1 function or expression were assessed for their ability to resist pathogen infection. A knockout mutant (Atbsmt1) failed to accumulate MeSA following pathogen infection; these plants also failed to accumulate SA or its glucoside in the uninoculated leaves and did not develop systemic acquired resistance (SAR). However, the Atbsmt1 mutant exhibited normal levels of effector-triggered immunity and pathogen-associated molecular pattern (PAMP)-triggered immunity to Pseudomonas syringae and Hyaloperonospora arabidopsidis. Analyses of transgenic Arabidopsis plants overexpressing AtBSMT1 revealed that they accumulate elevated levels of MeSA in pathogen-infected leaves but fail to develop SAR. Since the levels of SA and its glucoside were reduced in uninoculated systemic leaves of these plants whereas MeSA levels were elevated, AtBSMT1-mediated conversion of SA to MeSA probably compromised SAR development by suppressing SA accumulation in uninoculated leaves. PAMP-triggered immunity also was compromised in the AtBSMT1 overexpressing plants, although effector-triggered immunity was not.
水杨酸甲酯(MeSA)由植物中的水杨酸(SA)通过甲基转移酶合成,在防御微生物和昆虫害虫方面发挥作用。大多数在病原体攻击后积累的 MeSA 是由苯甲酸/SA 羧基甲基转移酶 1(AtBSMT1)合成的。为了研究 AtBSMT1 在植物防御中的作用,评估了改变 AtBSMT1 功能或表达的转基因拟南芥抵抗病原体感染的能力。敲除突变体(Atbsmt1)在病原体感染后无法积累 MeSA;这些植物在未接种的叶片中也无法积累 SA 或其糖苷,并且不会产生系统获得性抗性(SAR)。然而,Atbsmt1 突变体表现出对丁香假单胞菌和芸薹生球腔菌的效应物触发免疫和病原体相关分子模式(PAMP)触发免疫的正常水平。对过表达 AtBSMT1 的转基因拟南芥植物的分析表明,它们在感染病原体的叶片中积累了高水平的 MeSA,但未能产生 SAR。由于这些植物未接种的系统叶片中 SA 和其糖苷的水平降低,而 MeSA 的水平升高,因此 AtBSMT1 介导的 SA 向 MeSA 的转化可能通过抑制未接种叶片中 SA 的积累而损害 SAR 的发育。尽管效应物触发的免疫不受影响,但 PAMP 触发的免疫也在过表达 AtBSMT1 的植物中受到损害。