棉花WRKY转录因子研究进展
Literature Review of Plant WRKY Transcription Factors
摘要: 植物在生长发育过程中会受到体内转录因子的调控以适应环境的变化,而WRKY家族是植物中数量排名第二的转录因子大家族,该家族每个成员都有一个高度保守的WRKY结构域,能与W盒特异性结合,调控下游目标基因的表达,参与植物的胁迫反应、生长发育等。棉花在我国是仅次于粮食的第二大农作物,随着棉花全基因组测序完成,近年来棉花WRKY转录因子的全基因组分析和基因功能研究得以开展,本文对棉花WRKY转录因子研究进展的综述将对棉花WRKY转录因子的后续研究方向提供新视角。
Abstract: Plants in the process of growth and development will be affected by the regulation of transcription factors in the body to adapt to the changes in the environment. The WRKY family in plants is ranked second transcription factor family, and every member in the family has a highly conserved WRKY domain, which can combine with W box to regulate the expression of downstream target genes and involve in plant stress responses, growth and development. In China, cotton is the second largest crop after food. With the completion of the genome sequencing of cotton, the genome-wide analysis and gene function research of cotton WRKY transcription factor genes have been carried out in recent years. The review of the research progress of cotton WRKY transcription factors in this paper will provide a new perspective for the future research of cotton WRKY transcription factors.
文章引用:刘超, 袁洁, 向浏欣. 棉花WRKY转录因子研究进展[J]. 农业科学, 2020, 10(8): 628-633. https://doi.org/10.12677/HJAS.2020.108094

参考文献

[1] Schwechheimer, M.Z. and Bevan, M.W. (1998) Plant Transcription Factor Studies. Annual Review of Plant Physiology and Plant Molecular Biology, 49, 127-150. [Google Scholar] [CrossRef] [PubMed]
[2] Jin, J., et al. (2014) PlantTFDB 3.0: A Portal for the Functional and Evolutionary Study of Plant Transcription Factors. Nucleic Acids Research, 42, D1182-D1187. [Google Scholar] [CrossRef] [PubMed]
[3] Guo, Y., Cai, Z. and Gan, S. (2004) Tran-scriptome of Arabidopsis Leaf Senescence. Plant, Cell & Environment, 27, 521-549. [Google Scholar] [CrossRef
[4] Ishiguro, S., and Nakamura, K. (1994) Characterization of a cDNA Encoding a Novel DNA-Binding Protein, SPF1, That Recognizes SP8 Sequences in the 5’ Upstream Regions of Genes Coding for Sporamin and β-Amylase from Sweet Potato. Molecular Genetics and Genomics, 244, 563-571. [Google Scholar] [CrossRef
[5] Wu, K.L., Guo, Z., Wang, H.H. and Li, J. (2005) The WRKY Family of Transcription Factors in Ice and Arabidopsis and Their Origins. DNA Research, 12, 9-26. [Google Scholar] [CrossRef] [PubMed]
[6] Eulgem, T., Rushton, P.J., Schmelzer, E., et al. (1999) Early Nuclear Events in Plant Defence Signalling: Rapid Gene Activation by WRKY Transcription Factors. Embo Journal, 18, 4689-4699. [Google Scholar] [CrossRef] [PubMed]
[7] Ulker, B. and Somssich, I.E. (2004) WRKY Tra-nacipion Factors: From DNA Binding towards Biological, Function. Current Opinion in Plant Biology, 7, 491-498. [Google Scholar] [CrossRef] [PubMed]
[8] Hassan, S., Lethin, J., Blomberg, R., et al. (2019) In Silico Based Screening of WRKY Genes for Identifying Functional Genes Regulated by WRKY under Salt Stress. Computational Bi-ology and Chemistry, 83, Article ID: 107131. [Google Scholar] [CrossRef] [PubMed]
[9] Wang, W., Sun, Y.Q., Li, G.L., et al. (2019) Ge-nome-Wide Identification, Characterization, and Expression Patterns of the BZR Transcription Factor Family in Sugar Beet (Beta vulgaris L.). BMC Plant Biology, 19, e7817. [Google Scholar] [CrossRef] [PubMed]
[10] Zheng, J., Liu, F., Zhu, C., et al. (2019) Identification, Expression, Alternative Splicing and Functional Analysis of Pepper WRKY Gene Family in Response to Biotic and Abiotic Stresses. PLoS ONE, 14, e0219775. [Google Scholar] [CrossRef] [PubMed]
[11] Xue, C., Li, H., Liu, Z., et al. (2019) Genome-Wide Analysis of the WRKY Gene Family and Their Positive Responses to Phytoplasma Invasion in Chinese Jujube. BMC Genomics, 20, 464. [Google Scholar] [CrossRef] [PubMed]
[12] Maeo, K., Hayashi, S., Kojima-Suzuki, H., et al. (2001) Role of Conserved Residues of the WRKY Domain in the DNA-Binding of Tobacco WRKY Family Proteins. Bioscience, Bi-otechnology, and Biochemistry, 65, 2428-2436. [Google Scholar] [CrossRef] [PubMed]
[13] Xie, Z., Zhang, Z.L., Zou, X., et al. (2005) Annotations and Functional Analyses of the Rice WRKY Gene Superfamily Reveal Positive and Negative Regulators of Abscisic Acid Signaling in Aleuronecells. Plant Physiology, 137, 176-189. [Google Scholar] [CrossRef] [PubMed]
[14] Zhang, Y.J. and Wang, L.J. (2005) The WRKY Transcription Factor Supertamily: Its Origin in Eukaryotes and Expansion in Plants. BMC Evolutionary Biology, 5, 1-12. [Google Scholar] [CrossRef] [PubMed]
[15] Thomas Eulgem, P.J.R., Robatzek, S. and Somssich, L.E. (2000) The WRKY Superfamily of Plant Transcription Factors. Rends in Plant Science, 5, 1360-1385. [Google Scholar] [CrossRef
[16] Rushton, P.J., Macdonald, H., Hutly, A.K., Lazarus, C.M. and Hooley, R. (1995) Members of a New Family of DNA- Binding Proteins Bind to a Conserved Cis-Element in the Promoters of a-Amy2 Genes. Plant Molecular Biology, 29, 691-702. [Google Scholar] [CrossRef
[17] Rushton, P., Somssich, I.E., Ringler, P. and Shen, Q.J. (2010) WRKY Transcription Factors. Trends in Plant Science, 15, 247-258. [Google Scholar] [CrossRef] [PubMed]
[18] Yu, D., Chen, C. and Chen, Z. (2001) Evidence for an Important Role of WRKY DNA Binding Proteins in the Regulation of NPR1 Gene Expression. The Plant Cell, 13, 1527-1540. [Google Scholar] [CrossRef
[19] Turck, F., Zhou, A. and Somssich, I.E. (2004) Stimulus-Dependent, Promoter-Specific Binding of Transcription Factor WRKY1 to Its Native Promoter and the Defense-Related Gene PcPR1-1 in Parsley. The Plant Cell, 16, 2573-2585. [Google Scholar] [CrossRef] [PubMed]
[20] Rocher, A., Dumas, C. and Cock, J.M. (2005) A W-Box Is Required for Full Expression of the SA-Responsive Gene SFR2. Gene, 344, 181-192. [Google Scholar] [CrossRef] [PubMed]
[21] Gu, L., Wei, H., Wang, H., et al. (2018) Characterization and Functional Analysis of GhWRKY42, a Group IId WRKY Gene, in Upland Cotton (Gossypium hirsutum L.). BMC Ge-netics, 19, 48. [Google Scholar] [CrossRef] [PubMed]
[22] Dou, L., Zhang, X., Pang, C., et al. (2014) Genome-Wide Analy-sis of the WRKY Gene Family in Cotton. Molecular Genetics and Genomics, 289, 1103-1121. [Google Scholar] [CrossRef] [PubMed]
[23] Cai, C.P., et al. (2014) Genome-Wide Analysis of the WRKY Transcription Factor Gene Family in Gossypium raimondii and the Expression of Orthologs in Cultivated Tetraploidcot-ton. The Crop Journal, 2, 87-101. [Google Scholar] [CrossRef
[24] Dai, X., Wang, Y. and Zhang, W.H. (2015) OsWRKY74, a WRKY Transcription Factor, Modulates Tolerance to Phosphate Starvation in Rice. Journal of Experimental Botany, 67, 947-960. [Google Scholar] [CrossRef] [PubMed]
[25] Ding, M., Chen, J., Jiang, Y., et al. (2015) Genome-Wide Investigation and Transcriptome Analysis of the WRKY Gene Family in Gossypium. Molecular Genetics and Genomics, 290, 151-171. [Google Scholar] [CrossRef] [PubMed]
[26] Gu, L., Li, L., Wei, H., et al. (2018) Identification of the Group IIa WRKY Subfamily and the Functional Analysis of GhWRKY17 in Upland Cotton (Gossypium hirsutum L.). PLoS ONE, 13, e0191681. [Google Scholar] [CrossRef] [PubMed]
[27] Gu, L., Dou, L., Guo, Y., et al. (2019) The WRKY Transcrip-tion Factor GhWRKY27 Coordinates the Senescence Regulatory Pathway in Upland Cotton (Gossypium hirsutum L.). BMC Plant Biology, 19, 116. [Google Scholar] [CrossRef] [PubMed]
[28] Wang, N.N., Xu, S.W., Sun, Y.L., et al. (2019) The Cotton WRKY Transcription Factor (GhWRKY33) Reduces Transgenic Arabidopsis Resistance to Drought Stress. Scientific Reports, 9, Article No. 724. [Google Scholar] [CrossRef] [PubMed]
[29] Sun, J., An, H., Shi, W., et al. (2012) Molecular Cloning and Characterization of GhWRKY11, a Gene Implicated in Pathogen Responses from Cotton. South African Journal of Botany, 81, 113-123. [Google Scholar] [CrossRef