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Kosova, K., Vitamvas, P., Prasil, I. T. and Renaut, J. (2011). Plant proteome changes
under abiotic stress—Contribution of proteomics studies to understanding
plant stress response. Journal of Proteomics 74 , 1301-1322.
Kostiainen, K., Kaakinen, S., Saranpaa, P., Sigurdsson, B. D., Linder, S. and
Vapaavuori, E. (2004). Effect of elevated CO 2 on stem wood properties of
mature Norway spruce grown at different soil nutrient availability. Global
Change Biology 10 , 1526-1538.
Kostiainen, K., Kaakinen, S., Warsta, E., Kubiske, M. E., Nelson, N. D., Sober, J.,
Karnosky, D. F., Saranpaa, P. and Vapaavuori, E. (2008). Wood properties
of trembling aspen and paper birch after 5 years of exposure to elevated
concentrations of CO 2 and O 3 . Tree Physiology 28 , 805-813.
Kovacik, J., Klejdus, B., Stork, F. and Hedbavny, J. (2011). Nitrate deficiency
reduces cadmium and nickel accumulation in chamomile plants. Journal of
Agricultural and Food Chemistry 59 , 5139-5149.
Larcher, W. (2003). Physiological Plant Ecology. Springer-Verlag, Berlin.
Leyva, A., Jarillo, J. A., Salinas, J. and Martinezzapater, J. M. (1995). Low tempera-
ture induces the accumulation of phenylalanine ammonia-lyase and chal-
cone synthase mRNAs of Arabidopsis thaliana in a light-dependent manner.
Plant Physiology 108 , 39-46.
Li, P., Ainsworth, E. A., Leakey, A. D. B., Ulanov, A., Lozovaya, V., Ort, D. R. and
Bohnert, H. J. (2008). Arabidopsis transcript and metabolite profiles:
Ecotype-specific responses to open-air elevated CO 2 . Plant, Cell and Envi-
ronment 31 , 1673-1687.
Liang, M. X., Haroldsen, V., Cai, X. N. and Wu, Y. J. (2006). Expression of a
putative laccase gene, ZmLAC1, in maize primary roots under stress.
Plant, Cell and Environment 29 , 746-753.
Lichtenthaler, H. K. (1998). The stress concept in plants: An introduction. In Stress of
Life: From Molecules to Man, (P. Csermely, ed.), pp. 187-198. New York
Academy of Sciences, New York.
Lin, C. C., Chen, L. M. and Liu, Z. H. (2005). Rapid effect of copper on lignin
biosynthesis in soybean roots. Plant Science 168 , 855-861.
Liu, L., King, J. S., Giardina, C. P. and Booker, F. L. (2009). The influence of
chemistry, production and community composition on leaf litter decompo-
sition under elevated atmospheric CO 2 and tropospheric O 3 in a northern
hardwood ecosystem. Ecosystems 12 , 401-416.
Logemann, E., Tavernaro, A., Schulz, W., Somssich, I. E. and Hahlbrock, K. (2000).
UV light selectively coinduces supply pathways from primary metabolism
and flavonoid secondary product formation in parsley. Proceedings of the
National Academy of Sciences 97 , 1903-1907.
Luo, Z. B. and Polle, A. (2009). Wood composition and energy content in a poplar
short rotation plantation on fertilized agricultural land in a future CO 2
atmosphere. Global Change Biology 15 , 38-47.
Luo, Z. B., Calfapietra, C., Scarascia-Mugnozza, G., Liberloo, M. and Polle, A.
(2008). Carbon-based secondary metabolites and internal nitrogen pools
in Populus nigra under Free Air CO 2 Enrichment (FACE) and nitrogen
fertilisation. Plant and Soil 304 , 45-57.
Ma, B., Gao, L., Zhang, H., Cui, J. and Shen, Z. (2011). Aluminium-induced oxidative
stress and changes in antioxidant defenses in the roots of rice varieties differing
in Al tolerance. Plant Cell Reports doi:10.1007/s00299-00011-01187-00297.
Maathuis, F. J. M. (2009). Physiological functions of mineral macronutrients. Current
Opinion in Plant Biology 12 , 250-258.
Maeda, K., Kimura, S., Demura, T., Takeda, J. and Ozeki, Y. (2005). DcMYB1 acts
as a transcriptional activator of the carrot phenylalanine ammonia-lyase
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