Orlani F, Lohmer S,...
 
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Orlani F, Lohmer S, Thompson R, Salamini F, Motto M: The
Orlani F, Lohmer S, Thompson R, Salamini F, Motto M: The
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Orlani F, Lohmer S, Thompson R, Salamini F, Motto M: The transcriptional PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/2570694 activator Opaque-2 controls the expression of cytosolic type of pyruvate orthophosphate dikinase-1 in maize endosperms. Mol Gen Genet 1996, 250:647-654. 27. Mechin V, Thevenot C, Le Guilloux M, Prioul JL, Damerval C: Developmental Assessment of maize endosperm proteome indicates a pivotal role for pyruvate orthophosphate dikinase. Plant Physiol 2007, 143:1203-1219. 28. Mauri I, Maddaloni M, Lohmer S, Motto M, Salamini F, Thompson R, Martegani E: Useful expression of the transcriptional activator Opaque-2 of Zea mays in reworked yeast. Mol Gen Genet 1993, 241:319-326. 29. Hinnebusch AG: Translational regulation of GCN4 and also the general amino acid control of yeast. Annu Rev Microbiol 2005, fifty nine:407-50. thirty. Curien G, Biou V, Mas-Droux C, Robert-Genthon M, Ferrer JL, Dumas R: Amino acid biosynthesis: new architectures in allosteric enzymes. Plant Physiol Biochem 2008, forty six:325-339. 31. Coruzzi G, Past R: Amino acids. In Molecular biology of plants. Edited by: Buchanan B, Gruissem W, Jones R. Rockville, Maryland; 2000:, Am. Soc. Plant Physiol. 32. Galili G, H gen R: Metabolic engineering of amino acids and storage proteins in plants. Metabolic Eng 2002, four:3-11, 2002. 33. Frankard V, Ghislain M, Jacobs M: Two feedback-insensitive enzymes of your aspartate pathway in Nicotiana sylvestris. Plant Physiol 1992, 99:1285-1293. 34. Guillet G, Poupart J, Basurco J, De Luca V: Expression of tryptophan decarboxylase and tyrosine decarboxylase genes in tobacco brings about altered biochemical and physiological phenotypes. Plant Physiol 2000, 122:933-943. 35. Turpin DH, Weger H, Huppe HC: Interactions amongst photosynthesis, respiration and nitrogen metabolic process. In Plant Metabolic rate. Edited by: Dennis HT, Turpin DH, Lefebre DD, Layzell DB. Longman Singapore Publishers, Singapore; 509-524.Hartings et al. BMC Genomics 2011, 12:forty one http://www.biomedcentral.com/1471-2164/12/Page eighteen of36. Mitchell-Olds T, Pedersen D: The molecular foundation of quantitative genetic variation in central and secondary metabolic rate in Arabidopsis. Genetics 1998, 149:739-747. 37. Yanagisawa S, Akiyama A, Kisaka H, Uchimiya H, Miwa T: Metabolic engineering with Dof1 transcription element in crops: improved nitrogen assimilation and advancement below low-nitrogen circumstances. Proc Natl Acad Sci United states 2004, a hundred and one:7833-7838. 38. Rademacher T, HKOH-1r Ha ler RE, Hirsch HJ, Zhang L, Lipka V, Weie D, Kreuzaler F, Peterh sel C: An engineered phosphoenolpyruvate carboxylase redirects carbon and nitrogen stream in transgenic potato vegetation. Plant J 2002, 32:25-39. 39. Chapman EJ, Estelle M: System of auxin-regulated gene expression in crops. Ann Rev Genet 2009, forty three:265-285. 40. M ler M, Dues G, Balconi C, Salamini F, Thompson RD: Nitrogen and hormonal responsiveness of your 22 kDa -zein and b-32 genes in maize endosperm is exhibited inside the absence with the transcriptional regulator Opaque-2. The Plant Journal 1997, twelve(2):281-291. forty one. Forestan C, Meda S, Varotto S: ZmPIN1-mediated auxin transportation is expounded to cellular differentiation during maize embryogenesis and endosperm development. Plant Physiol 2010, 152:1373-1390. 42. LeClere S, Schmelz EA, Chourey PS: Sugar concentrations regulate tryptophandependent auxin biosynthesis in building maize kernels. Plant Physiol 2010, 153:306-318. 43. Coruzzi G, Bush DR: Nitrogen and carbon nutrient and metabolite signling in crops. Plant Physiol 2001, one hundred twenty five:61-64. forty four. Rate J, Laxmi A, St Martin SK, Jang JC: International tran.

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