BIBLIOGRAFIA
• Auburg, S., et al.;
Genomic analysis of the terpenoid synthase (AtTPS) gene family of
Arabidopsis thaliana; Mol Genet Genomics 267 :730-745 (2002).
• Bleeker, Anthony and Kende, Hans; Ethylene: A gaseous signal molecule in plants; Annu. Rev. Cell Dev. Biol. 16 :1-18 (2000).
• Bohlmann, Jorg, et al.; Plant terpenoid synthases: molecular biology and phylogenetic analysis; Proc. Natl. Acad. Science USA 95 :4126-4133 (1998).
• Bohlmann, Jorg, et al.;
cDNA cloning, characterization, and functional expression of four new
monoterpene synthase members of the Tpsd gene family from Grand Fir
(Abies grandis); Archives of Biochemistry and Biophysics 368 (2)
:232-243 (1999).
• Bruce, A. et Palfreyman, J. (eds.);
Forest Products Biotechnology; Capítulo 10 – Special (Secondary)
Metabolites from Wood; Obst, J.R.; Taylor & Francis (1997).
• Buchanan, W. , Gruissem, W. et Jones, R. (eds.);
Biochemistry & Molecular Biology of Plants; American Society of
Plant Physiologists (2000). Capítulo 24 – Croteau, Rodney et al.;
Natural Products (Secondary Metabolites) pag. 1250-1270
• Clements, Ralph W.; Gum Naval Stores Methods; USDA SE 7 Dezembro 1974.
• Davies, John M., et. al.;
Pathogen challenge, salicylic acid, and jasmonic acid regulate
expression of chitinase gene homologs in pine; MPMI 18(4) :380-387
(2002).
• Davies, Peter (editor);
Plant Hormones: Physiology, biochemistry and molecular biology;
Capítulo B4 – McKenon, Thomas et al.; Biosynthesis and metabolism of
Ethylene; :118-39 (1998). Capítulo G2 – Reid, Michael; Ethylene in
plant growth, development and senescence.
• Faldt, Jenny;
Volatile constituents in conifers and conifer-related wodd-decaying
fungi – Biotic influences on the monoterpene compositions in pines;
Royal Institute of Technology, Stockholm, tesis (2000).
• Faldt, Jenny, et al.;
Traumatic resin defense in Norway spruce (Picea abies): methyl
jasmonate-induced terpene synthase gene expression, and cDNA cloning
and functional characterization of (+)-3-carene synthase; Plant
Molecular Biology 51 :119-133 (2003).
• Gershenzon, Jonathan; Metabolic costs of terpenoid accumulation in higher plants; Journal of Chemical Ecology 20(6) :1281-1328 (1994).
• Gershenzon, Jonathan, et. al.; Absence of rapid terpene turnover in several diverse species of terpene-accumulating plants; Oecolgia 96 :583-592 (1993).
• Hamilton, Jason G., et al.; The carbon-nutrient balance hypothesis: its rise and fall; Ecology Letters 4 :86-95 (2001).
• Hudgins, J. W., et al.;
Methyl jasmonate induces changes mimicking anatomical defenses in
diverse members of the Pinaceae; Tree Physiology 23 :361-371 (2003).
• Koricheva, Julia, et al.;
Biosynthetic origin of carbon-based secondary compounds: cause of
variable response of woody plants to fertilization?; Chemoecology 8
:133-139 (1998).
• Lombardero, Maria J., et al.; Environmental effects on constitutive and inducible resin defences of Pinus taeda; Ecology Letters 3 :329-339 (2000).
• Martin, Diane, et al.;
Methyl jasmonate induces traumatic resin ducts, terpenoid resin
biosynthesis, and terpenoid accumulation in developing xylem of Norway
Spruce stems; Plant Physiology 129 :1003-1018 (2002).
• Masson, Mary E. and Davies, John M.; Defense response in slash pine: chitosan treatment alters the abundance of specific mRNAs; MPMI 10(1) :135-137 (1997).
• Paine, T. D., et. al.;
Interaction among scolytid bark beetles, their associated fungi, and
live host conifers; Annual Review of Entomology 42 :179-206 (1997).
• Popp, Michael P., et. al.;
Changes in ethylene production and monoterpene concentration in slash
pine and loblolly pine following inoculation with bark beetle vectored
fungi; Tree Physiology 15:807-812 (1995).
• Ruel, Jonathan J., et. al.;
Loblolly pine responds to mechanical mechanical wounding with increased
resin flow; Canadian Journal Forest Resources 28 :596-602 (1998).
• Steele, Christopher L., et al.; Regulation of oleoresinosis in Grand Fir (Abies grandis); Plant Physiology 116 :1497-1504 (1998).
• Taiz, L. et Zeiger, E. (editores);
Fisiologia Vegetal; Artmed Editoria (2004); 3ª Edição; Capítulo 13 –
Metabólitos secundários e defesa vegetal. Capítulo 22 – Etileno: o
hormônio gasoso.
• Zinke, Duane and Russell, James;
Naval Stores Production, Chemistry and Utilization (editores) (1989);
Capítulo 3 – Mc. Reynolds, Robert; Kossuth, Susan V. and Clements,
Ralph W.; Gum Naval Stores Methodology; Capítulo 7 – Hays, John et al.;
New Sources.