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Beitrag zur Charakterisierung des potenziellen C13-Norisoprenoid-Fingerprints von Trauben der Rebsorte Blaufränkisch anhand verschiedener burgenländischer Standort-Rieden-Kombinationen Cover

Beitrag zur Charakterisierung des potenziellen C13-Norisoprenoid-Fingerprints von Trauben der Rebsorte Blaufränkisch anhand verschiedener burgenländischer Standort-Rieden-Kombinationen

Open Access
|Jan 2026

References

  1. Antalick, G. 2022: State of the art of Blaufränkisch wine composition. Vortrag bei Blaufränkisch-Symposium. Ledina-Slowenien 24.045.2022.
  2. Baumes, R., Wirth, J., Bureau, S., Gunata, Y., Razungles, A. 2002: Biogeneration of C13-norisoprenoid compounds: experiments supportive for an apo-carotenoid pathway in grapevines. Analytica Chimica Acta, 458(1): 3-14.
  3. Caputi, L., Carlin, S., Ghiglieno, I., Stefanini, M., Valenti, L., Vrhovsek, U., Mattivi, F. 2011: Relationship of changes in rotundone content during grape ripening and winemaking to manipulation of the ‘peppery’ character of wine. Journal of Agricultural and Food Chemistry, 59(10): 5565-5571.
  4. Cazzonelli, C. I., Pogson, B. J. 2010: Source to sink: regulation of carotenoid biosynthesis in plants. Trends in Plant Science, 15(5): 266-274.
  5. Düring, H., Davtyan, A. 2002: Developmental changes of primary processes of photosynthesis in sun-and shade-adapted berries of two grapevine cultivars. VITIS-Geilweilerhof, 41(2): 63-68.
  6. Eggers, N. J., Bohna, K., Dooley, B. 2006: Determination of vitispirane in wines by stable isotope dilution assay. American Journal of Enology and Viticulture, 57(2): 226232.
  7. Escudero, A., Campo, E., Fariña, L., Cacho, J., Ferreira, V. 2007: Analytical characterization of the aroma of five premium red wines. Insights into the role of odor families and the concept of fruitiness of wines. Journal of Agricultural and Food Chemistry, 55(11): 4501-4510.
  8. Fanciullino, A. L., Bidel, L. P. R., Urban, L. 2014: Carotenoid responses to environmental stimuli: integrating redox and carbon controls into a fruit model. Plant, Cell & Environment, 37(2): 273289.
  9. Fischer, U., Ziegler, M., Gök, R., Bechtloff, P., Wacker, M., Schmarr, H. G., Winterhalter, P. 2017: Petrolfehlnote in Rieslingweinen - Pflanzenphysiologische, chemische und sensorische Ansätze zur Minimierung; 2017. FEI-Jahrestagung. Institut für Weinbau und Oenologie, DLR Rheinpfalz.
  10. Fraser, P. D., Truesdale, M. R., Bird, C. R., Schuch, W., Bramley, P. M. 1994: Carotenoid biosynthesis during tomato fruit development (evidence for tissue-specific gene expression). Plant Physiology, 105(1): 405-413.
  11. Gök, R. 2015: Einfluss von Hefen auf die glykosidisch gebundenen Aromavorstufen und Untersuchungen zur Vermeidung der TDN-Fehlnote in Riesling. Verlag Dr. Hut.
  12. International Organization of Vine and Wine 2010: OIV/OENO Resolution 390/2010.
  13. International Organization of Vine and Wine 2013 OIV/OENO Resolution 478/2013.
  14. Joubert, C., Young, P. R., Eyéghé-Bickong, H. A., Vivier, M. A. 2016: Field-grown grapevine berries use carotenoids and the associated xanthophyll cycles to acclimate to UV exposure differentially in high and low light (shade) conditions. Frontiers in Plant Science, 7: 786.
  15. Kolb, C. A., Kopecký, J., Riederer, M., Pfündel, E. E. 2003: UV screening by phenolics in berries of grapevine (Vitis vinifera). Functional Plant Biology, 30(12): 1177-1186.
  16. Kunert, A.-K. 2017: Methodenentwicklung zur Quantifizierung von Carotinoiden in Kartoffeln und Weißwein-Trauben. Verlag Dr. Hut.
  17. Lee, S. H., Seo, M. J., Riu, M., Cotta, J. P., Block, D. E., Dokoozlian, N. K., Ebeler, S. E. 2007: Vine microclimate and norisoprenoid concentration in Cabernet Sauvignon grapes and wines. American Journal of Enology and Viticulture, 58(3): 291301.
  18. Mathieu, S., Terrier, N., Procureur, J., Bigey, F., Günata, Z. 2005: A carotenoid cleavage dioxygenase from Vitis vinifera L.: functional characterization and expression during grape berry development in relation to C13-norisoprenoid accumulation. Journal of Experimental Botany, 56(420): 2721-2731.
  19. Mendes-Pinto, M. M. 2009: Carotenoid breakdown products the norisoprenoids in wine aroma. Archives of Biochemistry and Biophysics, 483(2): 236-245.
  20. Merzlyak, M. N., Solovchenko, A. E., Chivkunova, O. B. 2002: Patterns of pigment changes in apple fruits during adaptation to high sunlight and sunscald development. Plant Physiology and Biochemistry, 40(6-8): 679-684.
  21. Ou, C., Du, X., Shellie, K., Ross, C., Qian, M. C. 2010: Volatile compounds and sensory attributes of wine from cv. Merlot (Vitis vinifera L.) grown under differential levels of water deficit with or without a kaolin-based, foliar reflectant particle film. Journal of Agricultural and Food Chemistry, 58(24): 12890-12898.
  22. Philipp, C., Goek, R., Sari, S., Regner, F., Eder, R., Winterhalter, P. 2020: The potential of Austrian wines for the formation of the petrol note (kerosene off-flavor). Mitteilungen Klosterneuburg, 70(3): 198-218.
  23. Pineau, B., Barbe, J. C., Van Leeuwen, C., Dubourdieu, D. 2007: Which impact for β-damascenone on red wines aroma? Journal of Agricultural and Food Chemistry, 55(10): 41034108.
  24. Razungles, A. J., Babic, I., Sapis, J. C., Bayonove, C. L. 1996: Particular behavior of epoxy xanthophylls during veraison and maturation of grape. Journal of Agricultural and Food Chemistry, 44(12): 3821-3825.
  25. Razungles, A. J., Baumes, R. L., Dufour, C., Sznaper, C. N., Bayonove, C. L. 1998: Effect of sun exposure on carotenoids and C13-norisoprenoid glycosides in Syrah berries (Vitis vinifera L.). Sciences des Aliments (France).
  26. Ristic, R., Bindon, K., Francis, L. I., Herderich, M. J., Iland, P. G. 2010: Flavonoids and C13-norisoprenoids in Vitis vinifera L. cv. Shiraz: relationships between grape and wine composition, wine colour and wine sensory properties. Australian Journal of Grape and Wine Research, 16(3): 369-388.
  27. Robinson, A. L., Boss, P. K., Solomon, P. S., Trengove, R. D., Heymann, H., Ebeler, S. E. 2014: Origins of grape and wine aroma. Part 1. Chemical components and viticultural impacts.
  28. Savoi, S., Wong, D. C., Arapitsas, P., Miculan, M., Bucchetti, B., Peterlunger, E., Castellarin, S. D. 2016: Transcriptome and metabolite profiling reveals that prolonged drought modulates the phenylpropanoid and terpenoid pathway in white grapes (Vitis vinifera L.). BMC Plant Biology, 16(1): 1-17.
  29. Schultz, H. 2000: Climate change and viticulture: a European perspective on climatology, carbon dioxide and UV-B effects. Australian Journal of Grape and Wine Research, 6(1): 2-12.
  30. Sefton, M. A., Francis, I. L., Williams, P. J. 1993: The volatile composition of Chardonnay juices: a study by flavor precursor analysis. American Journal of Enology and Viticulture, 44(4): 359-370.
  31. Sefton, M. A., Skouroumounis, G. K., Elsey, G. M., Taylor, D. K. 2011: Occurrence, sensory impact, formation, and fate of damascenone in grapes, wines, and other foods and beverages. Journal of Agricultural and Food Chemistry, 59(18): 9717-9746.
  32. Simpson, R. F. 1978: 1,1,6-Trimethyl-1,2-dihydronaphthalene: an important contributor to the bottle-aged bouquet of wine. Chem. Ind. 1: 37.
  33. Winterhalter, P., Schreier, P. 1994: C13-Norisoprenoid glycosides in plant tissues: an overview on their occurrence, composition and role as flavour precursors. Flavour and Fragrance Journal, 9(6): 281-287.
  34. Young, P. R., Eyeghe-Bickong, H. A., du Plessis, K., Alexandersson, E., Jacobson, D. A., Coetzee, Z., Vivier, M. A. 2016: Grapevine plasticity in response to an altered microclimate: Sauvignon Blanc modulates specific metabolites in response to increased berry exposure. Plant Physiology, 170(3): 1235-1254.
  35. Yuan, F., Schreiner, R. P., Qian, M. C. 2018: Soil nitrogen, phosphorus, and potassium alter β-damascenone and other volatiles in Pinot Noir berries. American Journal of Enology and Viticulture, 69(2): 157-166.
DOI: https://doi.org/10.2478/mittklbg-2023-0009 | Journal eISSN: 3061-063X | Journal ISSN: 3061-0621
Language: English
Page range: 136 - 151
Published on: Jan 8, 2026
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2026 Christian Philipp, Nikolaus Schlögl, Recep Gök, Peter Winterhalter, und Reinhard Eder, published by High School and Federal Office of Viticulture and Pomology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.