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      Extrafloral nectar production of the ant-associated plant, Macaranga tanarius, is an induced, indirect, defensive response elicited by jasmonic acid

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      Proceedings of the National Academy of Sciences
      Proceedings of the National Academy of Sciences

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          BIOSYNTHESIS AND ACTION OF JASMONATES IN PLANTS.

          Jasmonic acid and its derivatives can modulate aspects of fruit ripening, production of viable pollen, root growth, tendril coiling, and plant resistance to insects and pathogens. Jasmonate activates genes involved in pathogen and insect resistance, and genes encoding vegetative storage proteins, but represses genes encoding proteins involved in photosynthesis. Jasmonic acid is derived from linolenic acid, and most of the enzymes in the biosynthetic pathway have been extensively characterized. Modulation of lipoxygenase and allene oxide synthase gene expression in transgenic plants raises new questions about the compartmentation of the biosynthetic pathway and its regulation. The activation of jasmonic acid biosynthesis by cell wall elicitors, the peptide systemin, and other compounds will be related to the function of jasmonates in plants. Jasmonate modulates gene expression at the level of translation, RNA processing, and transcription. Promoter elements that mediate responses to jasmonate have been isolated. This review covers recent advances in our understanding of how jasmonate biosynthesis is regulated and relates this information to knowledge of jasmonate modulated gene expression.
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            Extrafloral Nectaries and Protection by Pugnacious Bodyguards

            B Bentley (1977)
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              Jasmonate-inducible plant defences cause increased parasitism of herbivores

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                Author and article information

                Journal
                Proceedings of the National Academy of Sciences
                Proceedings of the National Academy of Sciences
                Proceedings of the National Academy of Sciences
                0027-8424
                1091-6490
                January 30 2001
                January 30 2001
                : 98
                : 3
                : 1083-1088
                Article
                10.1073/pnas.98.3.1083
                e00303fd-6ddf-49c8-ac2a-dddbee869d43
                © 2001
                History

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