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Asad Maroufi

Asad Maroufi

Academic rank: Associate Professor
ORCID:
Education: PhD.
ScopusId: 35622395700
HIndex:
Faculty: Faculty of Agriculture
Address: Department of Plant Breeding, Faculty of Agriculture, University of Kurdistan, Pasdaran Blvd., Sanandaj, Kurdistan, Iran. Postal Code: 66177-15175
Phone: 0098-8733620552-3

Research

Title
Parthenolide accumulation and expression of genes related to parthenolide biosynthesis affected by exogenous application of methyl jasmonate and salicylic acid in Tanacetum parthenium
Type
JournalPaper
Keywords
Tanacetum parthenium  Parthenolide  Methyl jasmonate  Salicylic acid  Gene expression  Terpenes
Year
2015
Journal PLANT CELL REPORTS
DOI
Researchers Mohammad Majdi ، mohammad reza Abdollahi ، Asad Maroufi

Abstract

Parthenolide is an important sesquiterpene lactone due to its anti-migraine and anti-cancer properties. Parthenolide amount was quantified by high-performance liquid chromatography after foliar application of methyl jasmonate (100 lM) or salicylic acid (1.0 mM) on feverfew leaves in time course experiment (3–96 h). Results indicate that exogenous application of methyl jasmonate or salicylic acid activated parthenolide biosynthesis. Parthenolide content reached its highest amount at 24 h after methyl jasmonate or salicylic acid treatments, which were 3.1- and 1.96-fold higher than control plants, respectively. Parthenolide transiently increased due to methyl jasmonate or salicylic acid treatments until 24 h, but did not show significant difference compared with control plants at 48 and 96 h time points in both treatments. Also, the transcript levels of early pathway (upstream) genes of terpene biosynthesis including 3-hydroxy-3- methylglutaryl-coenzyme A reductase, 1-deoxy-Dxylulose- 5-phosphate reductoisomerase and hydroxy-2- methyl-2-(E)-butenyl 4-diphosphate reductase and the biosynthetic genes of parthenolide including germacrene A synthase, germacrene A oxidase, costunolide synthase and parthenolide synthase were increased by methyl jasmonate and salicylic acid treatments, but with different intensity. The transcriptional levels of these genes were higher in methyl jasmonate-treated plants than salicylic acid-treated plants. Parthenolide content measurements along with expression pattern analysis of the aforementioned genes and parthenolide hydroxylase as side branch gene of parthenolide suggest that the expression patterns of early pathway genes were not directly consistent with parthenolide accumulation pattern; hence, parthenolide accumulation is probably further modulated by the expression of its biosynthetic genes, especially germacrene A synthase and also its side branch gene, parthenolide hydroxylase.