Agriculture Reference
In-Depth Information
Brummell, D.A., Harpster, M.H., Civello, P.M., Palys, J.M., Bennett, A.B. and Dunsmuir, P. (1999b)
Modifi cation of expansin protein abundance in tomato fruit alters softening and cell wall
polymer metabolism during ripening. Plant Cell Online 11, 2203-2216.
Burkhardt, P.K., Beyer, P., Wünn, J., Klöti, A., Armstrong, G.A., Schledz, M., von Lintig, J. and
Potrykus, I. (1997) Transgenic rice ( Oryza sativa ) endosperm expressing daffodil ( Narcissus
pseudonarcissus ) phytoene synthase accumulates phytoene, a key intermediate of provitamin A
biosynthesis. Plant Journal 11, 1071-1078.
Butelli, E., Titta, L., Giorgio, M., Mock, H.-P., Matros, A., Peterek, S., Schijlen, E.G.W.M., Hall, R.D.,
Bovy, A.G., Luo, J. and Martin, C. (2008) Enrichment of tomato fruit with health-promoting
anthocyanins by expression of select transcription factors. Nature Biotechnology 26, 1301-1308.
Buttery, R.G. and Ling, L.C. (1993) Volatile components of tomato fruit and plant parts. In: Bioactive
Volatile Compounds from Plants . American Chemical Society, Washington, DC, pp. 23-34.
Buttery, R.G., Teranishi, R., Ling, L.C., Flath, R.A. and Stern, D.J. (1988) Quantitative studies on
origins of fresh tomato aroma volatiles. Journal of Agricultural and Food Chemistry 36, 1247-
1250.
Carbonell-Barrachina, A., Agustí, A. and Ruiz, J. (2006) Analysis of fl avor volatile compounds by
dynamic headspace in traditional and hybrid cultivars of Spanish tomatoes. European Food
Research and Technology 222, 536-542.
Carey, A.T., Smith, D.L., Harrison, E., Bird, C.R., Gross, K.C., Seymour, G.B. and Tucker, G.A. (2001)
Down-regulation of a ripening-related E -galactosidase gene (TBG1) in transgenic tomato fruits.
Journal of Experimental Botany 52, 663-668.
Causse, M., Chaïb, J., Lecomte, L., Buret, M. and Hospital, F. (2007) Both additivity and epistasis
control the genetic variation for fruit quality traits in tomato. Theoretical and Applied Genetics
115, 429-442.
Cebolla, A., Maria Vinardell, J., Kiss, E., Olah, B., Roudier, F., Kondorosi, A. and Kondorosi, E. (1999)
The mitotic inhibitor ccs52 is required for endoreduplication and ploidy-dependent cell
enlargement in plants. EMBO Journal 18, 4476-4484.
Chen, G., Hackett, R., Walker, D., Taylor, A., Lin, Z. and Grierson, D. (2004) Identifi cation of a
specifi c isoform of tomato lipoxygenase (TomloxC) involved in the generation of fatty acid-
derived fl avor compounds. Plant Physiology 136, 2641-2651.
Cheniclet, C., Rong, W.Y., Causse, M., Frangne, N., Bolling, L., Carde, J.-P. and Renaudin, J.-P. (2005)
Cell expansion and endoreduplication show a large genetic variability in pericarp and
contribute strongly to tomato fruit growth. Plant Physiology 139, 1984-1994.
Choi, D., Cho, H.-T. and Lee, Y. (2006) Expansins: expanding importance in plant growth and
development. Physiologia Plantarum 126, 511-518.
Christiansen, K.F., Olsen, E., Vegarud, G., Langsrud, T., Lea, P., Haugen, J.E. and Egelandsdal, B.
(2011) Flavor release of the tomato fl avor enhancer, 2-isobutylthiazole, from whey protein
stabilized model dressings. Food Science and Technology International 17, 143-154.
Cong, B., Liu, J. and Tanksley, S.D. (2002) Natural alleles at a tomato fruit size quantitative trait locus
differ by heterochronic regulatory mutations. Proceedings of the National Academy of Sciences
USA 99, 13606-13611.
Cong, L., Wang, C., Chen, L., Liu, H., Yang, G. and He, G. (2009) Expression of phytoene synthase1
and carotene desaturase crtI genes result in an increase in the total carotenoids content in
transgenic elite wheat ( Triticum aestivum L.). Journal of Agricultural and Food Chemistry 57,
8652-8660.
Cook, M.S. (2010) Phyto power in the fi ght against disease. In: Cook, M.S. (ed.) The Phytozyme Cure:
Treat or Reverse More Than 30 Serious Health Conditions with Powerful Plant Nutrients . Wiley,
Mississauga, Ontario, pp. 11-36.
Cookson, P.J., Kiano, J.W., Shipton, C.A., Fraser, P.D., Romer, S., Schuch, W., Bramley, P.M. and Pyke,
K.A. (2003) Increases in cell elongation, plastid compartment size and phytoene synthase
activity underlie the phenotype of the high pigment-1 mutant of tomato. Planta 217, 896-903.
Crozier, A., Lean, M.E.J., McDonald, M.S. and Black, C. (1997) quantitative analysis of the fl avonoid
content of commercial tomatoes, onions, lettuce, and celery. Journal of Agricultural and Food
Chemistry 45, 590-595.
D'Ambrosio, C., Giorio, G., Marino, I., Merendino, A., Petrozza, A., Salfi , L., Stigliani, A.L. and Cellini,
F. (2004) Virtually complete conversion of lycopene into E -carotene in fruits of tomato plants
transformed with the tomato lycopene E -cyclase (t lcy-b ) cDNA. Plant Science 166, 207-214.
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