Transcriptome-Wide Identification of Novel UV-B- and Light Modulated Flavonol Pathway Genes Controlled by VviMYBF1

被引:33
作者
Czemmel, Stefan [1 ,2 ]
Hoell, Janine [2 ]
Loyola, Rodrigo [3 ,4 ]
Arce-Johnson, Patricio [3 ]
Antonio Alcalde, Jose [4 ,5 ]
Tomas Matus, Jose
Bogs, Jochen [2 ,6 ,7 ]
机构
[1] Univ Tubingen, Quantitat Biol Ctr, Tubingen, Germany
[2] Ctr Organismal Studies Heidelberg, Heidelberg, Germany
[3] Pontificia Univ Catolica Chile, Dept Genet Mol & Microbiol, Santiago, Chile
[4] Pontificia Univ Catolica Chile, Dept Fruticultura & Enol, Santiago, Chile
[5] CSIC IRTA UAB UB, Ctr Res Agr Genom, Barcelona, Spain
[6] Dienstleistungszentrum Landlicher Raum Rheinpfalz, Viticulture & Enol Grp, Neustadt, Germany
[7] Fachhochsch Bingen, Bingen, Germany
关键词
flavonols; MYB; gene regulation; HY5; UV-containing light; grapevine; PROANTHOCYANIDIN BIOSYNTHESIS; RED WINE; FUNCTIONAL-CHARACTERIZATION; COEXPRESSION ANALYSIS; PLANT FLAVONOIDS; AUXIN-TRANSPORT; SYNTHASE GENES; GRAPEVINE; EXPRESSION; ARABIDOPSIS;
D O I
10.3389/fpls.2017.01084
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Flavonols constitute a group of flavonoids with important photoprotective roles in plants. In addition, flavonol content and composition greatly influences fruit quality. We previously demonstrated that the grapevine R2R3-MYB transcription factor (TF) VviMYBF1 promotes flavonol accumulation by inducing the expression of flavonol synthase (VviFLS1/VviFLS4), a key step of the initial flavonol pathway. Despite this, gene networks underlying flavonol modification in grapevine including both structural and regulatory genes remain poorly understood. In order to identify flavonol modifying genes and TFs acting downstream of VviMYBF1 a microarray-based transcriptome analysis was performed on grapevine hairy roots ectopically expressing VviMYBF1 or a Green Fluorescent Protein as control. VviFLS1 was induced in VviMYBF1 transgenic roots and glycosylated flavonols accumulated significantly compared with control lines. Among the differentially expressed genes, potential flavonol-modifying enzymes with predicted rhamnosyltransferase (e.g., RhaT1) or glycosyltransferase (e.g., GT3) activities were identified. In addition, important TFs of the MYB and bZIP families such as the proanthocyanidin regulator VviMYBPA1 and the UV-B light responsive HY5 homolog VviHYH were significantly altered in their expression pattern by overexpression of VviMYBF1. Co-temporal expression analysis demonstrated positive correlation of VviMYBF1 with VviFLS1, VviGT3, and VviRhaT1 during berry development and in fruits ripened with different light and UV-B radiation conditions at field. These results show that VviMYBF1 overexpression led to the identification of novel genes of the flavonol pathway and that the flavonol modifying machinery can be influenced by agricultural practices to optimize flavonol composition in grapes.
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页数:15
相关论文
共 62 条
[1]   CONTROLLING THE FALSE DISCOVERY RATE - A PRACTICAL AND POWERFUL APPROACH TO MULTIPLE TESTING [J].
BENJAMINI, Y ;
HOCHBERG, Y .
JOURNAL OF THE ROYAL STATISTICAL SOCIETY SERIES B-STATISTICAL METHODOLOGY, 1995, 57 (01) :289-300
[2]   Identification of the flavonoid hydroxylases from grapevine and their regulation during fruit development [J].
Bogs, J ;
Ebadi, A ;
McDavid, D ;
Robinson, SP .
PLANT PHYSIOLOGY, 2006, 140 (01) :279-291
[3]   The grapevine transcription factor VvMYBPA1 regulates proanthocyanidin synthesis during fruit development [J].
Bogs, Jochen ;
Jaffe, Felix W. ;
Takos, Adam M. ;
Walker, Amanda R. ;
Robinson, Simon P. .
PLANT PHYSIOLOGY, 2007, 143 (03) :1347-1361
[4]  
Boulton R, 2001, AM J ENOL VITICULT, V52, P67
[5]   High-flavonol tomatoes resulting from the heterologous expression of the maize transcription factor genes LC and C1 [J].
Bovy, A ;
de Vos, R ;
Kemper, M ;
Schijlen, E ;
Pertejo, MA ;
Muir, S ;
Collins, G ;
Robinson, S ;
Verhoeyen, M ;
Hughes, S ;
Santos-Buelga, C ;
van Tunen, A .
PLANT CELL, 2002, 14 (10) :2509-2526
[6]   Antioxidant and antiradical activities of flavonoids [J].
Burda, S ;
Oleszek, W .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2001, 49 (06) :2774-2779
[7]   Solar ultraviolet radiation is necessary to enhance grapevine fruit ripening transcriptional and phenolic responses [J].
Carbonell-Bejerano, Pablo ;
Diago, Maria-Paz ;
Martinez-Abaigar, Javier ;
Martinez-Zapater, Jose M. ;
Tardaguila, Javier ;
Nunez-Olivera, Encarnacion .
BMC PLANT BIOLOGY, 2014, 14
[8]   Flavonol profiles of Vitis vinifera red grapes and their single-cultivar wines [J].
Castillo-Munoz, Noelia ;
Gomez-Alonso, Sergio ;
Garcia-Romero, Esteban ;
Hermosin-Gutierrez, Isidro .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2007, 55 (03) :992-1002
[9]   Ectopic expression of VlmybA1 in grapevine activates a narrow set of genes involved in anthocyanin synthesis and transport [J].
Cutanda-Perez, Maria-Cruz ;
Ageorges, Agnes ;
Gomez, Camila ;
Vialet, Sandrine ;
Terrier, Nancy ;
Romieu, Charles ;
Torregrosa, Laurent .
PLANT MOLECULAR BIOLOGY, 2009, 69 (06) :633-648
[10]   R2R3 MYB transcription factors: key regulators of the flavonoid biosynthetic pathway in grapevine [J].
Czemmel, Stefan ;
Heppel, Simon C. ;
Bogs, Jochen .
PROTOPLASMA, 2012, 249 :109-118