A systems biology approach identifies the biochemical mechanisms regulating monoterpenoid essential oil composition in peppermint

scholarly article

A systems biology approach identifies the biochemical mechanisms regulating monoterpenoid essential oil composition in peppermint is …
instance of (P31):
scholarly articleQ13442814

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P819ADS bibcode2008PNAS..105.2818R
P356DOI10.1073/PNAS.0712314105
P932PMC publication ID2268543
P698PubMed publication ID18287058
P5875ResearchGate publication ID5565135

P50authorRigoberto Rios-EstepaQ59315228
P2093author name stringJames M Lee
B Markus Lange
Rodney B Croteau
Glenn W Turner
P2860cites workMenthofuran regulates essential oil biosynthesis in peppermint by controlling a downstream monoterpene reductaseQ24630446
4S-limonene synthase from the oil glands of spearmint (Mentha spicata). cDNA isolation, characterization, and bacterial expression of the catalytically active monoterpene cyclaseQ28255783
Monoterpene biosynthesis: specificity of the hydroxylations of (-)-limonene by enzyme preparations from peppermint (Mentha piperita), spearmint (Mentha spicata), and perilla (Perilla frutescens) leavesQ28274949
Minimum information requested in the annotation of biochemical models (MIRIAM)Q28285448
The determination of enzyme inhibitor constantsQ29618526
Estimation of Ki in a competitive enzyme-inhibition model: comparisons among three methods of data analysisQ30577823
Regiospecific cytochrome P450 limonene hydroxylases from mint (Mentha) species: cDNA isolation, characterization, and functional expression of (-)-4S-limonene-3-hydroxylase and (-)-4S-limonene-6-hydroxylaseQ30739753
Probing essential oil biosynthesis and secretion by functional evaluation of expressed sequence tags from mint glandular trichomesQ30846893
Demonstration that menthofuran synthase of mint (Mentha) is a cytochrome P450 monooxygenase: cloning, functional expression, and characterization of the responsible gene.Q30991592
Monoterpene double-bond reductases of the (-)-menthol biosynthetic pathway: isolation and characterization of cDNAs encoding (-)-isopiperitenone reductase and (+)-pulegone reductase of peppermintQ31166122
Monoterpene metabolism. Cloning, expression, and characterization of (-)-isopiperitenol/(-)-carveol dehydrogenase of peppermint and spearmintQ33212338
Metabolism of monoterpenes: oxidation of isopiperitenol to isopiperitenone, and subsequent isomerization to piperitenone by soluble enzyme preparations from peppermint (Mentha piperita) leavesQ34193474
Metabolic engineering of essential oil yield and composition in mint by altering expression of deoxyxylulose phosphate reductoisomerase and menthofuran synthaseQ37121634
Limonene synthase, the enzyme responsible for monoterpene biosynthesis in peppermint, is localized to leucoplasts of oil gland secretory cellsQ42474458
Organization of monoterpene biosynthesis in Mentha. Immunocytochemical localizations of geranyl diphosphate synthase, limonene-6-hydroxylase, isopiperitenol dehydrogenase, and pulegone reductaseQ45149831
Monoterpene metabolism. Cloning, expression, and characterization of menthone reductases from peppermintQ45280712
(-)-Menthol biosynthesis and molecular genetics.Q51319325
Distribution of peltate glandular trichomes on developing leaves of peppermint.Q52164466
Developmental regulation of monoterpene biosynthesis in the glandular trichomes of peppermint.Q52171805
Biochemical and Histochemical Localization of Monoterpene Biosynthesis in the Glandular Trichomes of Spearmint (Mentha spicata).Q55041913
The Determination of Enzyme Dissociation ConstantsQ55879684
Purification of 4S-limonene synthase, a monoterpene cyclase from the glandular trichomes of peppermint (Mentha x piperita) and spearmint (Mentha spicata)Q68091405
Isolation of secretory cells from plant glandular trichomes and their use in biosynthetic studies of monoterpenes and other gland productsQ68139630
Regulation of monoterpene accumulation in leaves of peppermintQ73345094
Effects of light and temperature on the monoterpenes of peppermintQ83241813
Morphology and monoterpene biosynthetic capabilities of secretory cell clusters isolated from glandular trichomes of peppermint (Mentha piperita L.).Q86623661
P433issue8
P407language of work or nameEnglishQ1860
P921main subjectessential oilQ170885
systems biologyQ815297
P304page(s)2818-2823
P577publication date2008-02-19
P1433published inProceedings of the National Academy of Sciences of the United States of AmericaQ1146531
P1476titleA systems biology approach identifies the biochemical mechanisms regulating monoterpenoid essential oil composition in peppermint
P478volume105

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