From plant tissue culture to biotechnology: Scientific revolutions, abiotic stress tolerance, and forestry
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Biotechnology,Cell Biology,Clinical Biochemistry,Developmental Biology
Link
http://www.springerlink.com/index/pdf/10.1079/IVP2002379
Reference27 articles.
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3. Apse, M. P.; Aharon, G. S.; Snedden, W. A.; Blumwald, E. Salt tolerance conferred by overexpression of a vacuolar Na+/H+ antiport in Arabidopsis. Science 285:1256–1258; 1999.
4. Bartels, D. Targeting detoxification pathways: an efficient approach to obtain plants with multiple stress tolerance. Trends Plant Sci. 6:284–286; 2001.
5. Baucher, M.; Chabbert, B.; Pilate, G.; van Doorsselaere, J.; Tollier, M. T.; Petit-Conil, M.; Cornu, D.; Monties, B.; van Montagu, M.; Inze, D. Red xylem and higher lignin extractability by down-regulating a cinnamyl alcohol dehydrogenase in poplar. Plant Physiol. 112:1479–1490; 1996.
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