Carranco R, Espinosa JM, PrietoDapena P et al., 2010. Repression by an auxin/indole acetic acid protein connects auxin signaling with heat shock factormediated seed longevity[J]. Proceedings of the National Academy of Sciences of the United States of America, 107 (50): 21908—21913
Chen LG, Zhang LP, Yu DQ, 2010. Woundinginduced WRKY8 is involved in basal defense in Arabidopsis[J]. Molecular PlantMicrobe Interactions, 23 (5): 558—565
Chen YF, Li LQ, Xu Q et al., 2009. The WRKY6 transcription factor modulates PHOSPHATE1 expression in response to low Pi stress in Arabidopsis[J]. The Plant Cell, 21 (11): 3554—3566
Clough SJ, Bent AF, 1998. Floral dip: a simplified method for Agrobacteriummediated transformation of Arabidopsis thaliana[J]. The Plant Journal, 16 (6): 735—743
Devaiah BN, Karthikeyan AS, Raghothama KG, 2007. WRKY75 transcription factor is a modulator of phosphate acquisition and root development in Arabidopsis[J]. Plant Physiology, 143 (4): 1789—1801
Dong JX, Chen CH, Chen ZX, 2003. Expression profiles of the Arabidopsis WRKY gene superfamily during plant defense response[J]. Plant Molecular Biology, 51 (1): 21—37
Eulgem E, Rushton PJ, Robatzek S et al., 2000. The WRKY superfamily of plant transcription factors[J]. Trends in Plant Science, 5 (5): 199—206
Eulgem T, 2005. Regulation of the Arabidopsis defense transcriptome[J]. Trends in Plant Science, 10 (2): 71—78
Grunewald W, Karimi M, Wieczorek K et al., 2008. A role for AtWRKY23 in feeding site establishment of plantparasitic nematodes[J]. Plant Physiology, 148 (1): 358—368
Grunewald W, Smet ID, Lewis DR et al., 2012. Transcription factor WRKY23 assists auxin distribution patterns during Arabidopsis root development through local control on flavonol biosynthesis[J]. Proceedings of the National Academy of Sciences of the United States of America, 109(5): 1554—1559
Hammargren J, Rosenquist S, Jansson C et al., 2008. A novel connection between nucleotide and carbohydrate metabolism in mitochondria: sugar regulation of the Arabidopsis nucleoside diphosphate kinase 3a gene[J]. Plant Cell Reports, 27 (3): 529—534
Hu YR, Dong QY, Yu DQ, 2012. Arabidopsis WRKY46 coordinates with WRKY70 and WRKY53 in basal resistance against pathogen Pseudomonas syringae[J]. Plant Science, 185 (186): 288—297
Ishida T, Hattori S, Sano R et al., 2007. Arabidopsis TRANSPARENT TESTA GLABRA2 is directly regulated by R2R3 MYB transcription factors and is involved in regulation of GLABRA2 transcription in epidermal differentiation[J]. The Plant Cell, 19 (8): 2531—2543
Jiang YQ, Deyholos MK, 2009. Functional characterization of Arabidopsis NaClinducible WRKY25 and WRKY33 transcription factors in abiotic stresses[J]. Plant Molecule Biology, 69 (1-2): 91—105
Jiang WB, Yu DQ, 2009. Arabidopsis WRKY2 transcription factor mediates seed germination and postgermination arrest of development by abscisic acid[J]. BMC Plant Biology, 9 (96): 1471—1485
Johnson CS, Kolevski B, Smyth DR, 2002. TRANSPARENT TESTA GLABRA2, a trichome and seed coat development gene of Arabidopsis, encodes a WRKY transcription factor[J]. The Plant Cell, 14 (6): 1359—1375
Lai ZB, Wang F, Zheng ZY et al., 2011. A critical role of autophagy in plant resistance to necrotrophic fungal pathogens[J]. The Plant Journal, 66: 953—968
Lee SH, Cho HT, 2006. PINOID positively regulates auxin efflux in Arabidopsis Root hair cells and tobacco cells[J]. The Plant Cell, 18 (7): 1604—1616
Li SJ, Fu QT, Chen LG et al., 2011. Arabidopsis thaliana WRKY25, WRKY26, and WRKY33 coordinate induction of plant thermotolerance[J]. Planta, 233 (6): 1237—1252
Li SJ, Zhou X, Chen LG et al., 2010. Functional characterization of Arabidopsis thaliana WRKY39 in heat stress[J]. Molecules and Cells, 29 (5): 475—483
Luo M, Dennis ES, Berger F et al., 2005. MINISEED3(MINI3), a WRKY family gene, and HAIKU2(IKU2), a leucinerich repeat(LRR) KINASE gene, are regulators of seed size in Arabidopsis[J]. Proceedings of the National Academy of Sciences of the United States of America, 102 (48): 17531—17536
Miao Y, Zentgraf U, 2007. The antagonist function of Arabidopsis WRKY53 and ESR/ESP in leaf senescence is modulated by the jasmonic and salicylic acid equilibrium[J]. The Plant Cell, 19 (3): 819—830
Noutoshi Y, Ito T, Seki M et al., 2005. A single amino acid insertion in the WRKY domain of the Arabidopsis TIR—NBS—LRR—WRKYtype disease resistance protein SLH1(sensitive to low humidity 1)causes activation of defense responses and hypersensitive cell death[J]. The Plant Journal, 43 (6): 873—888
Oshino T, Miura S, Kikuchi S et al., 2011. Auxin depletion in barley plants under hightemperature conditions represses DNA proliferation in organelles and nuclei via transcriptional alterations[J]. Plant, Cell and Environment, 34 (2): 284—290
Qiu YP, Jing SJ, Fu J et al., 2004. Cloning and analysis of expression profile of 13 WRKY genes in rice[J]. Chinese Science Bull, 49: 2159—2168
Robatzek S, Somssich IE, 2002. Targets of AtWRKY6 regulation during plant senescence and pathogen defense[J]. Genes & Development, 16 (9): 1139—1149
Rogg LE, Bartel B, 2001. Auxin signaling: derepression through regulated Proteolysis[J]. Developmental Cell, 1 (5): 595—604
Wis′niewska J, Xu J, Seifertová D et al., 2006. Polar PIN localization directs auxin flow in plants[J]. Science, 312 (5775): 883—885
Yang PZ, Chen CH, Wang ZP et al., 1999. A pathogen and salicylic acidinduced WRKY DNAbinding activity recognizes the elicitor response element of the tobacco class I chitinase gene promoter[J]. The Plant Journal, 18 (2): 141—149
Yu DQ, Chen CH, Chen ZX, 2001. Evidence for an important role of WRKY DNA binding protein in the regulation of NPR1 gene expression[J]. The Plant Cell, 13: 1527—1539
Yu DQ (余迪求), Chen LG (陈利钢), Zhang LP (张利平), 2006. Transcription factor WRKY superfamily: Origin, structure and function[J]. Acta Botanica Yunnanica (云南植物研究), 28 (1): 69—77
Zentgraf U, Laun T, Miao Y, 2010. The complex regulation of WRKY53 during leaf senescence of Arabidopsis thaliana[J]. European Journal of Cell Biology, 89: 133—137
Zou CS, Jiang WB, Yu DQ, 2010. Male gametophytespecific WRKY34 transcription factor mediates cold sensitivity of mature pollen in Arabidopsis[J]. Journal of Experimental Botany, 61 (14): 3901—3914
Zheng ZY, Qamar SA, Chen ZX et al., 2006. Arabidopsis WRKY33 transcription factor is required for resistance to necrotrophic fungal pathogens[J]. The Plant Journal, 48 (4): 592—605
Zhou X, Jiang YJ, Yu DQ, 2011. WRKY22 transcription factor mediates darkinduced leaf senescence in Arabidopsis[J]. Molecules and Cells, 31 (4): 303—313 |