期刊论文详细信息
BMC Plant Biology
Tartaric acid pathways in Vitis vinifera L. (cv. Ugni blanc): a comparative study of two vintages with contrasted climatic conditions
Research Article
Gerald Ferrari1  Vincent Dumot1  Stéphane Claverol2  Audrey Osowsky3  Olivier Claisse3  Amélie Rabot3  Céline Cholet3  Laurence Gény3 
[1] Bureau National Interprofessionnel du Cognac, Station Viticole, France;Centre Génomique Fonctionnelle, Université de Bordeaux, Plateforme Protéome, France;Institut des Sciences de la Vigne et du Vin, Université de Bordeaux, EA 4577, Unité de recherche œnologie, France;INRA, ISVV, USC INRA 1366 Œnologie, 210 Chemin de Leysotte, CS 50008, F-33882, Villenave d’Ornon, France;
关键词: Ascorbate;    L-idonate dehydrogenase;    Tartrate;    Vitis vinifera;    Vintage effect;   
DOI  :  10.1186/s12870-016-0833-1
 received in 2016-04-04, accepted in 2016-06-15,  发布年份 2016
来源: Springer
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【 摘 要 】

BackgroundThe acid component of grape berries, originating in the metabolism of malate and tartrate, the latter being less well-known than the former, is a key factor at play in the microbiological stability of wines destined for distillation. Grape acidity is increasingly affected by climate changes. The ability to compare two vintages with contrasted climatic conditions may contribute to a global understanding of the regulation of acid metabolism and the future consequences for berry composition.ResultsThe results of the analyses (molecular, protein, enzymatic) of tartrate biosynthesis pathways were compared with the developmental accumulation of tartrate in Ugni blanc grape berries, from floral bud to maturity. The existence of two distinct steps during this pathway was confirmed: one prior to ascorbate, with phases of VvGME, VvVTC2, VvVTC4, VvL-GalDH, VvGLDH gene expression and abundant protein, different for each vintage; the other downstream of ascorbate, leading to the synthesis of tartrate with maximum VvL-IdnDH genetic and protein expression towards the beginning of the growth process, and in correlation with enzyme activity regardless of the vintage.ConclusionsOverall results suggest that the two steps of this pathway do not appear to be regulated in the same way and could both be activated very early on during berry development.

【 授权许可】

CC BY   
© The Author(s). 2016

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