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1.
Plant Signal Behav ; 11(4): e1149675, 2016.
Article in English | MEDLINE | ID: mdl-26918634

ABSTRACT

Natural pyrethrins are used to control household and agricultural pests, and it is of value to understand biosynthesis in Tanacetum cinerariifolium for enhanced production. We previously found that a blend of four green leaf volatiles (GLVs) and (E)-ß-farnesene emitted by T. cinerariifolium seedlings enhanced gene expressions of certain biosynthetic enzymes in unwounded seedlings; however, the extent to which such a regulation facilitates pyrethrin biosynthesis remains unknown. Here we have investigated the effects of the blend of the volatile organic compounds (VOCs) on gene expressions of seven biosynthetic enzymes. VOC treatment resulted in enhanced chrysanthemyl diphosphate synthase (CDS), chrysanthemic acid synthase (CAS), Tanacetum cinerariifolium GDSL lipase (TcGLIP) and acyl-Coenzyme A oxidase 1 (ACX1) gene expressions that reached a peak at a 12 h VOC treatment, whereas the treatment minimally influenced the expressions of other biosynthetic genes. In undifferentiated Tanacetum tissues, such VOC-induced amplification of CDS, CAS, TcGLIP and ACX1 gene expressions were markedly reduced, suggesting that a high-resolution, VOC-mediated communication is an event selective to differentiated plants.


Subject(s)
Biosynthetic Pathways , Chrysanthemum cinerariifolium/metabolism , Pyrethrins/metabolism , Volatile Organic Compounds/metabolism , Biosynthetic Pathways/genetics , Chrysanthemum cinerariifolium/genetics , Gene Expression Regulation, Plant , Pyrethrins/chemistry
2.
Plant J ; 71(2): 183-93, 2012 Jul.
Article in English | MEDLINE | ID: mdl-22385412

ABSTRACT

Although natural insecticides pyrethrins produced by Tanacetum cinerariifolium are used worldwide to control insect pest species, little information is known of their biosynthesis. From the buds of T. cinerariifolium, we have purified a protein that is able to transfer the chrysanthemoyl group from the coenzyme A (CoA) thioester to pyrethrolone to produce pyrethrin I and have isolated cDNAs that encode the enzyme. To our surprise, the active principle was not a member of a known acyltransferase family but a member of the GDSL lipase family. The recombinant enzyme (TcGLIP) was expressed in Escherichia coli and displayed the acyltransferase reaction with high substrate specificity, recognized the absolute configurations of three asymmetric carbons and also showed esterase activity. A S40A mutation in the Block I domain reduced both acyltransferase and esterase activities, which suggested an important role of this serine residue in these two activities. The signal peptide directed the localization of TcGLIP::enhanced green fluorescent protein (EGFP) fusion, as well as EGFP, to the extracellular space. High TcGLIP gene expression was observed in the leaves of mature plants and seedlings as well as in buds and flowers, a finding that was consistent with the pyrethrin I content in these parts. Expression was enhanced in response to wounding, which suggested that the enzyme plays a key role in the defense mechanism of T. cinerariifolium.


Subject(s)
Acyltransferases/metabolism , Chrysanthemum cinerariifolium/enzymology , Insecticides/metabolism , Lipase/metabolism , Pyrethrins/metabolism , Acyltransferases/genetics , Acyltransferases/isolation & purification , Amino Acid Sequence , Amino Acid Substitution , Chrysanthemum cinerariifolium/chemistry , Chrysanthemum cinerariifolium/cytology , Chrysanthemum cinerariifolium/genetics , Esterases/genetics , Esterases/isolation & purification , Esterases/metabolism , Esters , Flowers/enzymology , Flowers/genetics , Gene Expression/genetics , Insecticides/analysis , Insecticides/chemistry , Kinetics , Lipase/genetics , Lipase/isolation & purification , Molecular Sequence Data , Mutagenesis, Site-Directed , Plant Leaves/enzymology , Plant Leaves/genetics , Plant Roots/enzymology , Plant Roots/genetics , Plant Stems/enzymology , Plant Stems/genetics , Protein Sorting Signals , Protein Structure, Tertiary , Pyrethrins/analysis , Pyrethrins/chemistry , Recombinant Fusion Proteins , Seedlings/enzymology , Seedlings/genetics , Substrate Specificity
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