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Methyl Salicylate Is a Critical Mobile Signal for Plant Systemic Acquired Resistance

作者:Sang‐Wook Park, Evans Kaimoyo, Dhirendra Kumar, Stephen Mosher, Daniel F. Klessig · 发表于:Science · 年份:2007 · DOI:10.1126/science.1147113 · 被引用次数:1056 · 研究领域:Plant-Microbe Interactions and Immunity、Plant Parasitism and Resistance、Legume Nitrogen Fixing Symbiosis

In plants, the mobile signal for systemic acquired resistance (SAR), an organism-wide state of enhanced defense to subsequent infections, has been elusive. By stimulating immune responses in mosaic tobacco plants created by grafting different genetic backgrounds, we showed that the methyl salicylate (MeSA) esterase activity of salicylic acid-binding protein 2 (SABP2), which converts MeSA into salicylic acid (SA), is required for SAR signal perception in systemic tissue, the tissue that does not receive the primary (initial) infection. Moreover, in plants expressing mutant SABP2 with unregulated MeSA esterase activity in SAR signal-generating, primary infected leaves, SAR was compromised and the associated increase in MeSA levels was suppressed in primary infected leaves, their phloem exudates, and systemic leaves. SAR was also blocked when SA methyl transferase (which converts SA to MeSA) was silenced in primary infected leaves, and MeSA treatment of lower leaves induced SAR in upper untreated leaves. Therefore, we conclude that MeSA is a SAR signal in tobacco.