Genome and transcriptome analysis of the grapevine (Vitis vinifera L.) WRKY gene family

被引:210
作者
Wang, Min [1 ]
Vannozzi, Alessandro [3 ]
Wang, Gang [1 ]
Liang, Ying-Hai [1 ]
Tornielli, Giovanni Battista [2 ]
Zenoni, Sara [2 ]
Cavallini, Erika [2 ]
Pezzotti, Mario [2 ]
Cheng, Zong-Ming [1 ]
机构
[1] Nanjing Agr Univ, Coll Hort, Fruit Crop Syst Biol Lab, Nanjing 210095, Jiangsu, Peoples R China
[2] Univ Verona, Dipartimento Biotecnol, I-37134 Verona, Italy
[3] Univ Padua, Dept Agron Food Nat Resources Anim & Environm, I-35020 Legnaro, PD, Italy
关键词
OSMOTIC-STRESS TOLERANCE; DNA-BINDING PROTEINS; ABSCISIC-ACID; ARABIDOPSIS-THALIANA; EXPRESSION PROFILES; DISEASE-RESISTANCE; SEED-GERMINATION; PLANT SENESCENCE; LEAF SENESCENCE; SALICYLIC-ACID;
D O I
10.1038/hortres.2014.16
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The plant WRKY gene family represents an ancient and complex class of zinc-finger transcription factors (TFs) that are involved in the regulation of various physiological processes, such as development and senescence, and in plant response to many biotic and abiotic stresses. Despite the growing number of studies on the genomic organisation of WRKY gene family in different species, little information is available about this family in grapevine (Vitis vinifera L.). In the present study, a total number of 59 putative grapevine WRKY transcription factors (VvWRKYs) were identified based on the analysis of various genomic and proteomic grapevine databases. According to their structural and phylogentic features, the identified grapevine WRKY transcription factors were classified into three main groups. In order to shed light into their regulatory roles in growth and development as well as in response to biotic and abiotic stress in grapevine, the VvWRKYs expression profiles were examined in publicly available microarray data. Bioinformatics analysis of these data revealed distinct temporal and spatial expression patterns of VvWRKYs in various tissues, organs and developmental stages, as well as in response to biotic and abiotic stresses. To also extend our analysis to situations not covered by the arrays and to validate our results, the expression profiles of selected VvWRKYs in response to drought stress, Erysiphe necator (powdery mildew) infection, and hormone treatments (salicilic acid and ethylene), were investigated by quantitative real-time reverse transcription PCR (qRT-PCR). The present study provides a foundation for further comparative genomics and functional studies of this important class of transcriptional regulators in grapevine.
引用
收藏
页数:16
相关论文
共 88 条
[71]   Aux/IAA proteins contain a potent transcriptional repression domain [J].
Tiwari, SB ;
Hagen, G ;
Guilfoyle, TJ .
PLANT CELL, 2004, 16 (02) :533-543
[72]   WRKY transcription factors:: from DNA binding towards biological function [J].
Ülker, B ;
Somssich, IE .
CURRENT OPINION IN PLANT BIOLOGY, 2004, 7 (05) :491-498
[73]   The WRKY70 transcription factor of Arabidopsis influences both the plant senescence and defense signaling pathways [J].
Ulker, Bekir ;
Mukhtar, M. Shahid ;
Somssich, Imre E. .
PLANTA, 2007, 226 (01) :125-137
[74]   A novel WRKY transcription factor is required for induction of PR-1a gene expression by salicylic acid and bacterial elicitors [J].
van Verk, Marcel C. ;
Pappaioannou, Dimitri ;
Neeleman, Lyda ;
Bol, John F. ;
Linthorst, Huub J. M. .
PLANT PHYSIOLOGY, 2008, 146 (04) :1983-1995
[75]   Genome-wide analysis of the grapevine stilbene synthase multigenic family: genomic organization and expression profiles upon biotic and abiotic stresses [J].
Vannozzi, Alessandro ;
Dry, Ian B. ;
Fasoli, Marianna ;
Zenoni, Sara ;
Lucchin, Margherita .
BMC PLANT BIOLOGY, 2012, 12
[76]   Compatible GLRaV-3 viral infections affect berry ripening decreasing sugar accumulation and anthocyanin biosynthesis in Vitis vinifera [J].
Vega, Andrea ;
Gutierrez, Rodrigo A. ;
Pena-Neira, Alvaro ;
Cramer, Grant R. ;
Arce-Johnson, Patricio .
PLANT MOLECULAR BIOLOGY, 2011, 77 (03) :261-274
[77]   A High Quality Draft Consensus Sequence of the Genome of a Heterozygous Grapevine Variety [J].
Velasco, Riccardo ;
Zharkikh, Andrey ;
Troggio, Michela ;
Cartwright, Dustin A. ;
Cestaro, Alessandro ;
Pruss, Dmitry ;
Pindo, Massimo ;
FitzGerald, Lisa M. ;
Vezzulli, Silvia ;
Reid, Julia ;
Malacarne, Giulia ;
Iliev, Diana ;
Coppola, Giuseppina ;
Wardell, Bryan ;
Micheletti, Diego ;
Macalma, Teresita ;
Facci, Marco ;
Mitchell, Jeff T. ;
Perazzolli, Michele ;
Eldredge, Glenn ;
Gatto, Pamela ;
Oyzerski, Rozan ;
Moretto, Marco ;
Gutin, Natalia ;
Stefanini, Marco ;
Chen, Yang ;
Segala, Cinzia ;
Davenport, Christine ;
Dematte, Lorenzo ;
Mraz, Amy ;
Battilana, Juri ;
Stormo, Keith ;
Costa, Fabrizio ;
Tao, Quanzhou ;
Si-Ammour, Azeddine ;
Harkins, Tim ;
Lackey, Angie ;
Perbost, Clotilde ;
Taillon, Bruce ;
Stella, Alessandra ;
Solovyev, Victor ;
Fawcett, Jeffrey A. ;
Sterck, Lieven ;
Vandepoele, Klaas ;
Grando, Stella M. ;
Toppo, Stefano ;
Moser, Claudio ;
Lanchbury, Jerry ;
Bogden, Robert ;
Skolnick, Mark .
PLOS ONE, 2007, 2 (12)
[78]   A genomic approach to identify regulatory nodes in the transcriptional network of systemic acquired resistance in plants [J].
Wang, Dong ;
Amornsiripanitch, Nita ;
Dong, Xinnian .
PLOS PATHOGENS, 2006, 2 (11) :1042-1050
[79]   The WRKY family of transcription factors in rice and Arabidopsis and their origins [J].
Wu, KL ;
Guo, ZJ ;
Wang, HH ;
Li, J .
DNA RESEARCH, 2005, 12 (01) :9-26
[80]   Enhanced heat and drought tolerance in transgenic rice seedlings overexpressing OsWRKY11 under the control of HSP101 promoter [J].
Wu, Xiaolan ;
Shiroto, Yoko ;
Kishitani, Sachie ;
Ito, Yukihiro ;
Toriyama, Kinya .
PLANT CELL REPORTS, 2009, 28 (01) :21-30