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of alanine amino-transferase. Plant Biotechnol. J. 2008, 6, 722-732, doi:10.1111/
j.1467-7652.2008.00351.x.
164. Ameziane, R.; Bernhard, K.; Lightfoot, D. Expression of the bacterial gdhA gene
encoding a NADPH-glutamate dehydrogenase in tobacco affects plant growth and
development. Plant Soil 2000, 221, 47-57, doi:10.1023/A:1004794000267.
165. Bi, Y.M.; Kant, S.; Clark, J.; Gidda, S.; Ming, F.; Xu, J.; Rochon, A.; Shelp, B.J.;
Hao, L.; Zhao, R.; et al. Increased nitrogen use efficiency in transgenic rice plants
over-expressing a nitrogen-responsive early nodulin gene identified from rice ex-
pression profiling. Plant Cell Environ. 2009, 32, 1749-1760, doi:10.1111/j.1365-
3040.2009.02032.x.
166. Chichkova, S.; Arellano, J.; Vance, C.P.; Hernandez, G. Transgenic tobacco plants
that overexpress alfalfa NADH-glutamate synthase have higher carbon and nitrogen
content. J. Exp. Bot. 2001, 52, 2079-2087.
167. Yamaya, T.; Obara, M.; Nakajima, H.; Sasaki, S.; Hayakawa, T.; Sato, T. Genetic
manipulation and quantitative trait loci mapping for nitrogen recycling in rice. J.
Exp. Bot. 2002, 53, 917-925, doi:10.1093/jexbot/53.370.917.
168. Tabuchi, M.; Abiko, T.; Yamaya, T. Assimilation of ammonium ions and reutiliza-
tion of nitrogen in rice (O. sativa L.). J. Exp. Bot. 2007, 58, 2319-2327, doi:10.1093/
jxb/erm016.
169. Yanagisawa, S.; Akiyama, A.; Kisaka, H.; Uchimiya, H.; Miwa, T. Metabolic en-
gineering with Dof1 transcription factor in plants: Improved nitrogen assimilation
and growth under low-nitrogen conditions. Proc. Natl. Acad. Sci. USA 2004, 101,
7833-7838, doi:10.1073/pnas.0402267101.
170. Fonder, N.; Heens, B.; Xanthoulis, D. Optimisation de la fertlisation azotée de
cultures industrielles légumières sous irrigation. Biotechnol. Agron. Soc. Environ.
2010, 14, 103-111.
171. Quilléré, I.; Dufossé, C.; Roux, Y.; Foyer, C.H.; Caboche, M.; Morot-Gaudry, J.F.
The effects of deregulation of NR gene expression on growth and nitrogen metabo-
lism of Nicotiana plumbaginifolia plants. J. Exp. Bot. 1994, 278, 1205-1211.
172. Djennane, S.; Chauvin, J.E.; Quilleré, I.; Meyer, C.; Chupeau, Y. Introduction and
expression of a deregulated tobacco nitrate reductase gene in potato lead to high-
ly reduced nitrate levels in transgenic tubers. Transgenic Res. 2002, 11, 175-184,
doi:10.1023/A:1015299711171.
173. Djennane, S.; Quilleré, I.; Leydecker, M.-T.; Meyer, C.; Chauvin, J.E. Expression of
a deregulated tobacco nitrate reductase gene in potato increases biomass production
and decreases nitrate concentration in all organs. Planta 2004, 219, 884-893.
174. Curtis, I.S.; Power, J.B.; de Laat, A.M.M.; Caboche, M.; Davey, M.R. Expression of
a chimeric nitrate reductase gene in transgenic lettuce reduces nitrate in leaves. Plant
Cell Rep. 1999, 18, 889-896, doi:10.1007/s002990050680.
175. Xu, Y. Quantitative trait loci: Separating, pyramiding, and cloning. Plant Breed. Rev.
1997, 15, 85-139.
176. Yu, J.; Buckler, E.S. Genetic association mapping and genome organization of
maize. Cur. Opin. Biotech. 2006, 17, 155-160, doi:10.1016/j.copbio.2006.02.003.
177. Salvi, S.; Tuberosa, R. Cloning QTLs in Plants. In Genomics-Assisted Crop Im-
provement; Varshney, R.K., Tuberosa, R., Eds.; Springer: Dordrecht, The Nether-
lands, 2007; Volume 1, pp. 207-226.
 
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