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Review Trends in Plant Science Vol.13 No.8 75 Peng,J.et al.(1997)The Arabidopsis GAI gene defines a signaling 84 Mlynarova,L.et al.(2006)Directed microspore-specific recombination pathway that negatively regulates gibberellin responses.Genes Dev. of transgenic alleles to prevent pollen-mediated transmission of 11,3194-3205 transgenes.Plant Biotechnol.J.4.445-452 76 Jung,H.J.G.and Vogel,K.P.(1992)Lignification of switchgrass 85 Luo,K.et al.(2007)GM-gene-deletor':fused loxP-FRT recognition (Panicum virgatum)and big bluestem (Andropogon gerardii)plant sequences dramatically improve the efficiency of FLP or CRE parts during maturation and its effect on fiber degradability.J.Sci. recombinase on transgene excision from pollen and seed of tobacco Fo0 d Agric.59,169-176 plants.Plant Biotechnol.J.5,263-274 77 Salehi,H.et al.(2005)Delay in flowering and increase in biomass of 86 Chapman,K.D.et al.(2001)Transgenic cotton plants with increased transgenic tobacco expressing the Arabidopsis floral repressor gene seed oleic acid content.J.Am.Oil Chem.Soc.78,941-947 FLOWERING LOCUS C.J.Plant Physiol.162,711-717 87 Thelen,J.J.and Ohlrogge,J.B.(2002)Metabolic engineering of fatty 78 Shoseyov,O.et al.(2003)Modulation of wood fibers and paper by acid biosynthesis in plants.Metab.Engin.4,12-21 cellulose-binding domains.In Application of Enzymes to 88 Vigeolas,H.et al.(2007)Increasing seed oil content in oil-seed rape Lignocellulosics.ACS Symposium Series 855 (Mansfield,S.D.and (Brassica napus L.)by over-expression of a yeast glycerol-3-phosphate Saddler,J.N.,eds),pp.116-131,American Chemical Society dehydrogenase under the control of a seed-specific promoter.Plant 79 Sakamoto,T.et al.(2003)Genetic manipulation of gibberellin Biotechnol.J.5,431-441 metabolism in transgenic rice.Nat.Biotechnol.21,909-913 89 Wu,G.et al.(2005)Stepwise engineering to produce high yields of very 80 Dodd,A.N.et al.(2005)Plant circadian clocks increase long-chain polyunsaturated fatty acids in plants.Nat.Biotechnol.23. photosynthesis,growth,survival,and competitive advantage. 1013-1017 Science309,630-633 90 Wu,G.and Birch,R.G.(2007)Doubled sugar contentin sugarcane plants 81 Ariizumi,T.et al.(2004)Disruption of the novel plant protein NEFI modified to produce a sucrose isomer.Plant Biotechnol.J.5,109-117 affects lipid accumulation in the plastids of the tapetum and exine 91 Yuan,J.S.et al.(2008)Plant systems biology comes of age.Trends formation of pollen,resulting in male sterility in Arabidopsis thaliana. Plant Sci.13,165-171 PlantJ.39,170-181 92 Wu,X.et al.(2007)Factors impacting ethanol production from grain 82 Li,S.F.et al.(2007)Suppression and restoration of male fertility using sorghum in the dry-grind process.Cereal Chem.84,130-136 a transcription factor.Plant Biotechnol.J.5,297-312 93 Wu,M.et al.(2006)Energy and emission benefits of alternative 83 Khan,M.S.(2005)Plant biology-engineered male sterility.Nature 436, transportation liquid fuels derived from switchgrass:a fuel life cycle 783-785 assessment.Biotechnol.Prog.22,1012-1024 42975 Peng, J. et al. (1997) The Arabidopsis GAI gene defines a signaling pathway that negatively regulates gibberellin responses. Genes Dev. 11, 3194–3205 76 Jung, H.J.G. and Vogel, K.P. (1992) Lignification of switchgrass (Panicum virgatum) and big bluestem (Andropogon gerardii) plant parts during maturation and its effect on fiber degradability. J. Sci. Food Agric. 59, 169–176 77 Salehi, H. et al. (2005) Delay in flowering and increase in biomass of transgenic tobacco expressing the Arabidopsis floral repressor gene FLOWERING LOCUS C. J. Plant Physiol. 162, 711–717 78 Shoseyov, O. et al. (2003) Modulation of wood fibers and paper by cellulose-binding domains. In Application of Enzymes to Lignocellulosics. ACS Symposium Series 855 (Mansfield, S.D. and Saddler, J.N., eds), pp. 116–131, American Chemical Society 79 Sakamoto, T. et al. (2003) Genetic manipulation of gibberellin metabolism in transgenic rice. Nat. Biotechnol. 21, 909–913 80 Dodd, A.N. et al. (2005) Plant circadian clocks increase photosynthesis, growth, survival, and competitive advantage. Science 309, 630–633 81 Ariizumi, T. et al. (2004) Disruption of the novel plant protein NEF1 affects lipid accumulation in the plastids of the tapetum and exine formation of pollen, resulting in male sterility in Arabidopsis thaliana. Plant J. 39, 170–181 82 Li, S.F. et al. (2007) Suppression and restoration of male fertility using a transcription factor. Plant Biotechnol. J. 5, 297–312 83 Khan, M.S. (2005) Plant biology–engineered male sterility. Nature 436, 783–785 84 Mlynarova, L. et al. (2006) Directed microspore-specific recombination of transgenic alleles to prevent pollen-mediated transmission of transgenes. Plant Biotechnol. J. 4, 445–452 85 Luo, K. et al. (2007) ‘GM-gene-deletor’: fused loxP-FRT recognition sequences dramatically improve the efficiency of FLP or CRE recombinase on transgene excision from pollen and seed of tobacco plants. Plant Biotechnol. J. 5, 263–274 86 Chapman, K.D. et al. (2001) Transgenic cotton plants with increased seed oleic acid content. J. Am. Oil Chem. Soc. 78, 941–947 87 Thelen, J.J. and Ohlrogge, J.B. (2002) Metabolic engineering of fatty acid biosynthesis in plants. Metab. Engin. 4, 12–21 88 Vigeolas, H. et al. (2007) Increasing seed oil content in oil-seed rape (Brassica napus L.) by over-expression of a yeast glycerol-3-phosphate dehydrogenase under the control of a seed-specific promoter. Plant Biotechnol. J. 5, 431–441 89 Wu, G. et al. (2005) Stepwise engineering to produce high yields of very long-chain polyunsaturated fatty acids in plants. Nat. Biotechnol. 23, 1013–1017 90 Wu, G. and Birch, R.G. (2007) Doubled sugar content in sugarcane plants modified to produce a sucrose isomer. Plant Biotechnol. J. 5, 109–117 91 Yuan, J.S. et al. (2008) Plant systems biology comes of age. Trends Plant Sci. 13, 165–171 92 Wu, X. et al. (2007) Factors impacting ethanol production from grain sorghum in the dry-grind process. Cereal Chem. 84, 130–136 93 Wu, M. et al. (2006) Energy and emission benefits of alternative transportation liquid fuels derived from switchgrass: a fuel life cycle assessment. Biotechnol. Prog. 22, 1012–1024 Review Trends in Plant Science Vol.13 No.8 429
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