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Plant Biol (Stuttg) ; 17(4): 852-9, 2015 Jul.
Article in English | MEDLINE | ID: mdl-25545585

ABSTRACT

Araucaria angustifolia is an ancient slow-growing conifer that characterises parts of the Southern Atlantic Forest biome, currently listed as a critically endangered species. The species also produces bark resin, although the factors controlling its resinosis are largely unknown. To better understand this defence-related process, we examined the resin exudation response of A. angustifolia upon treatment with well-known chemical stimulators used in fast-growing conifers producing both bark and wood resin, such as Pinus elliottii. The initial hypothesis was that A. angustifolia would display significant differences in the regulation of resinosis. The effect of Ethrel(®) (ET - ethylene precursor), salicylic acid (SA), jasmonic acid (JA), sulphuric acid (SuA) and sodium nitroprusside (SNP - nitric oxide donor) on resin yield and composition in young plants of A. angustifolia was examined. In at least one of the concentrations tested, and frequently in more than one, an aqueous glycerol solution applied on fresh wound sites of the stem with one or more of the adjuvants examined promoted an increase in resin yield, as well as monoterpene concentration (α-pinene, ß-pinene, camphene and limonene). Higher yields and longer exudation periods were observed with JA and ET, another feature shared with Pinus resinosis. The results suggest that resinosis control is similar in Araucaria and Pinus. In addition, A. angustifolia resin may be a relevant source of valuable terpene chemicals, whose production may be increased by using stimulating pastes containing the identified adjuvants.


Subject(s)
Resins, Plant/metabolism , Tracheophyta/metabolism , Bicyclic Monoterpenes , Bridged Bicyclo Compounds/metabolism , Cyclohexenes/metabolism , Cyclopentanes/pharmacology , Ethylenes/pharmacology , Limonene , Monoterpenes/metabolism , Oxylipins/pharmacology , Pinus/metabolism , Plant Growth Regulators/pharmacology , Plant Stems/metabolism , Terpenes/metabolism , Tracheophyta/drug effects
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