![]() ![]() ![]() Thus, comparative analysis of metabolites in local and systemic leaves of tomato revealed a constant re-allocation of primary metabolites to systemic leaves and differential induction of secondary metabolites and induced defenses upon herbivory.Ĭloning and characterization of a novel Arabidopsis gene family, UXS, encoding soluble and putative membrane-bound UDP-glucuronic acid decarboxylase isoforms. The metabolite alteration also resulted in increased defense in systemic leaves. ![]() Secondary metabolites chlorogenic acid, caffeic acid, and catechin were significantly induced during herbivory in systemic leaves.Īmong specific secondary metabolites, chlorogenic acid and catechin significantly inhibits S. Re-allocation of primary metabolites like glucose and amino acids from the local to systemic leaf was observed. ![]() Here, we show that, in cultivated tomato Solanum lycopersicum herbivory by generalist insect, Spodoptera litura results in differential alteration of primary metabolites, majorly sugars and amino acids and specific secondary metabolites in local, younger, and older systemic leaves.Ĭluster analysis of 55 metabolites identified by GCMS showed correlation between local and younger systemic leaves. Introducing The Mattson 2 Rar Download Citation Received. ![]()
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