Biology Reference
In-Depth Information
Amtmann, A. and Armengaud, P. (2009). Effects of N, P, K and S on metabolism:
New knowledge gained from multi-level analysis. Current Opinion in Plant
Biology 12 , 275-283.
Anderson, M. D., Prasad, T. K. and Stewart, C. R. (1995). Changes in isozyme
profiles of catalase, peroxidase, and glutathione-reductase during acclima-
tion to chilling in mesocotyls of maize seedlings. Plant Physiology 109 ,
1247-1257.
Arend, M. and Fromm, J. (2007). Seasonal change in the drought response of wood
cell development in poplar. Tree Physiology 27 , 985-992.
Baldantoni, D., Fagnano, M. and Alfani, A. (2011). Tropospheric ozone effects on
chemical composition and decomposition rate of Quercus ilex L. leaves.
Science of the Total Environment 409 , 979-984.
Bentley, R. (1990). The shikimate pathway—A metabolic tree with many branches.
Critical Reviews in Biochemistry and Molecular Biology 25 , 307-384.
Berthet, S., Demont-Caulet, N., Pollet, B., Bidzinski, P., Cezard, L., Le Bris, P.,
Borrega, N., Herve, J., Blondet, E., Balzergue, S., Lapierre, C. and
Jouanin, L. (2011). Disruption of LACCASE4 and 17 results in tissue-
specific alterations to lignification of Arabidopsis thaliana stems. The Plant
Cell 23 , 1124-1137.
Betz, G. A., Knappe, C., Lapierre, C., Olbrich, M., Welzl, G., Langebartels, C.,
Heller, W., Sandermann, H. and Ernst, D. (2009a). Ozone affects shikimate
pathway transcripts and monomeric lignin composition in European beech
(Fagus sylvatica L.). European Journal of Forest Research 128 , 109-116.
Betz, G. A., Gerstner, E., Stich, S., Winkler, B., Welzl, G., Kremmer, E.,
Langebartels, C., Heller, W., Sandermann, H. and Ernst, D. (2009b).
Ozone affects shikimate pathway genes and secondary metabolites in
saplings of European beech (Fagus sylvatica L.) grown under greenhouse
conditions. Trees: Structure and Function 23 , 539-553.
Bi, C. L., Chen, F., Jackson, L., Gill, B. S. and Li, W. L. (2011). Expression of lignin
biosynthetic genes in wheat during development and upon infection by
fungal pathogens. Plant Molecular Biology Reporter 29 , 149-161.
Bidart-Bouzat, M. G. and Imeh-Nathaniel, A. (2008). Global change effects on
plant chemical defenses against insect herbivores. Journal of Integrative
Plant Biology 50 , 1339-1354.
Biggs, A. R. (1986). Comparative anatomy and host response of two peach cultivars
inoculated with Leucostoma cincta and L. persoonii. Phytopathology 76 ,
905-912.
Blaschke, L., Forstreuter, M., Sheppard, L. J., Leith, I. K., Murray, M. B. and
Polle, A. (2002). Lignification in beech (Fagus sylvatica) grown at elevated
CO 2 concentrations: Interaction with nutrient availability and leaf matura-
tion. Tree Physiology 22 , 469-477.
Blokhina, O., Virolainen, E. and Fagerstedt, K. V. (2003). Antioxidants, oxidative
damage and oxygen deprivation stress: A review. Annals of Botany 91 ,
179-194.
Boerjan, W., Ralph, J. and Baucher, M. (2003). Lignin biosynthesis. Annual Review
of Plant Biology 54 , 519-546.
Boerner, R. E. J. and Rebbeck, J. (1995). Decomposition and nitrogen release from
leaves of three harwood species grown under elevated O 3 and/or CO 2 . Plant
and Soil 170 , 149-157.
Bonawitz, N. D. and Chapple, C. (2010). The genetics of lignin biosynthesis: Con-
necting genotype to phenotype. Annual Review of Genetics 44 , 337-363.
Booij-James, I. S., Dube, S. K., Jansen, M. A. K., Edelman, M. and Mattoo, A. K.
(2000). Ultraviolet-B radiation impacts light-mediated turnover of the
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