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      The role of methyl salicylate in plant growth under stress conditions.

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          Abstract

          Methyl salicylate is a volatile compound, the synthesis of which takes place via the salicylic acid pathway in plants. Both compounds can be involved in the development of systemic acquired resistance and they play their role partly independently. Salicylic acid transport has an important role in long-distance signalling, but methyl salicylate has also been suggested as a phloem-based mobile signal, which can be demethylated to form salicylic acid, inducing the de-novo synthesis of salicylic acid in distal tissue. Despite the fact that salicylic acid has a protective role in abiotic stress responses and tolerance, very few investigations have been reported on the similar effects of methyl salicylate. In addition, as salicylic acid and methyl salicylate are often treated simply as the volatile and non-volatile forms of the same compound, and in several cases they also act in the same way, it is hard to highlight the differences in their mode of action. The main aim of the present review is to reveal the individual role and action mechanism of methyl salicylate in systemic acquired resistance, plant-plant communication and various stress conditions in fruits and plants.

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          Author and article information

          Journal
          J Plant Physiol
          Journal of plant physiology
          Elsevier BV
          1618-1328
          0176-1617
          Oct 2022
          : 277
          Affiliations
          [1 ] Eötvös Loránd Research Network, Centre for Agricultural Research, 2462 Martonvásár, H-2462, Hungary. Electronic address: gondor.kinga@atk.hu.
          [2 ] Eötvös Loránd Research Network, Centre for Agricultural Research, 2462 Martonvásár, H-2462, Hungary.
          Article
          S0176-1617(22)00195-X
          10.1016/j.jplph.2022.153809
          36099699
          82a574ee-7be9-42a3-8ef3-a2b361a813a7
          History

          SAR,Salicylic acid,Methyl salicylate,Biotic stress,Abiotic stress

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