留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Identification and characterization of rice blast resistance gene Pid4 by a combination of transcriptomic profiling and genome analysis

Zhixiong Chen Wen Zhao Xiaobo Zhu Chengdong Zou Junjie Yin Mawsheng Chern Xiaogang Zhou Heng Ying Xin Jiang Yongzhen Li Haicheng Liao Mengping Cheng Weitao Li Min He Jing Wang Jichun Wang Bingtian Ma Jirui Wang Shigui Li Lihuang Zhu Xuewei Chen

Zhixiong Chen, Wen Zhao, Xiaobo Zhu, Chengdong Zou, Junjie Yin, Mawsheng Chern, Xiaogang Zhou, Heng Ying, Xin Jiang, Yongzhen Li, Haicheng Liao, Mengping Cheng, Weitao Li, Min He, Jing Wang, Jichun Wang, Bingtian Ma, Jirui Wang, Shigui Li, Lihuang Zhu, Xuewei Chen. Identification and characterization of rice blast resistance gene Pid4 by a combination of transcriptomic profiling and genome analysis[J]. Journal of Genetics and Genomics, 2018, 45(12): 663-672. doi: 10.1016/j.jgg.2018.10.007
Citation: Zhixiong Chen, Wen Zhao, Xiaobo Zhu, Chengdong Zou, Junjie Yin, Mawsheng Chern, Xiaogang Zhou, Heng Ying, Xin Jiang, Yongzhen Li, Haicheng Liao, Mengping Cheng, Weitao Li, Min He, Jing Wang, Jichun Wang, Bingtian Ma, Jirui Wang, Shigui Li, Lihuang Zhu, Xuewei Chen. Identification and characterization of rice blast resistance gene Pid4 by a combination of transcriptomic profiling and genome analysis[J]. Journal of Genetics and Genomics, 2018, 45(12): 663-672. doi: 10.1016/j.jgg.2018.10.007

doi: 10.1016/j.jgg.2018.10.007

Identification and characterization of rice blast resistance gene Pid4 by a combination of transcriptomic profiling and genome analysis

More Information
    • 关键词:
    •  / 
    •  / 
    •  / 
    •  / 
    •  
    These authors contributed equally to this work.
  • [1] Bart, R., Chern, M., Park, C.J. et al. A novel system for gene silencing using siRNAs in rice leaf and stem-derived protoplasts Plant Methods, 2 (2006),pp. 1-9
    [2] Burch-Smith, T.M., Schiff, M., Caplan, J.L. et al. A novel role for the TIR domain in association with pathogen-derived elicitors PLoS Biol., 5 (2007),pp. 0501-0514
    [3] Chang, C., Yu, D., Jiao, J. et al. Barley MLA immune receptors directly interfere with antagonistically acting transcription factors to initiate disease resistance signaling Plant Cell, 25 (2013),pp. 1158-1173
    [4] Chen, X., Shang, J., Chen, D. et al. A B-lectin receptor kinase gene conferring rice blast resistance Plant J., 46 (2006),pp. 794-804
    [5] Chen, X.W., Li, S.G., Xu, J.C. et al. Identification of two blast resistance genes in a rice variety, Digu J. Phytopathol., 152 (2004),pp. 77-85
    [6] Clark, R.M., Schweikert, G., Toomajian, C. et al. Science, 317 (2007),pp. 338-342
    [7] Dangl, J.L., Jones, J.D. Plant pathogens and integrated defence responses to infection Nature, 411 (2001),pp. 826-833
    [8] Deng, Y., Zhai, K., Xie, Z. et al. Epigenetic regulation of antagonistic receptors confers rice blast resistance with yield balance Science, 355 (2017),pp. 962-969
    [9] Fang, N., Wang, R., He, W. et al. Mol. Breeding, 36 (2016),pp. 171-178
    [10] Flor, H.H. Current status of gene for gene concept Annu. Rev. Phytopathol., 9 (1971),pp. 275-296
    [11] Fu, J., Liu, H., Li, Y. et al. Manipulating broad-spectrum disease resistance by suppressing pathogen-induced auxin accumulation in rice Plant Physiol., 155 (2011),pp. 589-602
    [12] Hayashi, N., Inoue, H., Kato, T. et al. Plant J., 64 (2010),pp. 498-510
    [13] Hazzouri, K.M., Flowers, J.M., Visser, H.J. et al. Whole genome re-sequencing of date palms yields insights into diversification of a fruit tree crop Nat. Commun., 6 (2015),pp. 8824-8834
    [14] Huang, X., Wei, X., Sang, T. et al. Genome-wide association studies of 14 agronomic traits in rice landraces Nat. Genet., 42 (2010),pp. 961-967
    [15] Huang, X., Yang, S., Gong, J. et al. Genomic analysis of hybrid rice varieties reveals numerous superior alleles that contribute to heterosis Nat. Commun., 6 (2015),pp. 6258-6266
    [16] Hulbert, S.H., Webb, C.A., Smith, S.M. et al. Resistance gene complexes: evolution and utilization Annu. Rev. Phytopathol., 39 (2003),pp. 285-312
    [17] Inoue, H., Hayashi, N., Matsushita, A. et al. Blast resistance of CC-NB-LRR protein Pb1 is mediated by WRKY45 through protein-protein interaction Proc. Natl. Acad. Sci. U. S. A., 110 (2013),pp. 9577-9582
    [18] Jain, M., Nijhawan, A., Tyagi, A.K. et al. Validation of housekeeping genes as internal control for studying gene expression in rice by quantitative real-time PCR Biochem. Biophys. Res. Commun., 345 (2006),pp. 646-651
    [19] Ke, Y., Deng, H., Wang, S. Advances in understanding broad-spectrum resistance to pathogens in rice Plant J., 90 (2017),pp. 738-748
    [20] Kou, Y., Wang, S. Broad-spectrum and durability: understanding of quantitative disease resistance Curr. Opin. Plant Biol., 13 (2010),pp. 181-185
    [21] Li, D., Huang, Z., Song, S. et al. Integrated analysis of phenome, genome, and transcriptome of hybrid rice uncovered multiple heterosis-related loci for yield increase Proc. Natl. Acad. Sci. U. S. A., 113 (2016),pp. E6026-E6035
    [22] Li, L.C., Dahiya, R. MethPrimer: designing primers for methylation PCRs Bioinformatics, 18 (2002),pp. 1427-1431
    [23] Li, W., Liu, Y., Wang, J. et al. Mol. Plant Pathol., 17 (2016),pp. 354-368
    [24] Li, W., Zhu, Z., Chern, M. et al. A natural allele of a transcription factor in rice confers broad-spectrum blast resistance Cell, 170 (2017),pp. 114-126
    [25] Lin, T., Zhu, G., Zhang, J. et al. Genomic analyses provide insights into the history of tomato breeding Nat. Genet., 46 (2014),pp. 1220-1226
    [26] Liu, Q., Yang, J., Zhang, S. et al. Mol. Plant Microbe Interact., 29 (2016),pp. 46-56
    [27] Liu, S.F., Yang, X.R., Sun, S.Q. et al. Tianjin Agric. Sci., 13 (2007),pp. 55-58
    [28] Liu, W., Wang, G.L. Plant innate immunity in rice: a defense against pathogen infection Natl. Sci. Rev., 3 (2016),pp. 295-308
    [29] Liu, X., Lin, F., Wang, L. et al. Genetics, 176 (2007),pp. 2541-2549
    [30] Ma, J., Lei, C., Xu, X. et al. Mol. Plant Microbe Interact., 28 (2015),pp. 558-568
    [31] Martin, G.B., Bogdanove, A.J., Sessa, G. Understanding the functions of plant disease resistance proteins Annu. Rev. Plant Biol., 54 (2003),pp. 23-61
    [32] Nimchuk, Z., Eulgem, T., Iii, B.F.H. et al. Recognition and response in the plant immune system Annu. Rev. Genet., 37 (2003),pp. 579-609
    [33] Obeidat, M., Hao, K., Bossé, Y. et al. Molecular mechanisms underlying variations in lung function: a systems genetics analysis Lancet Respir. Med., 3 (2015),pp. 782-795
    [34] Padmanabhan, M.S., Ma, S., Burch-Smith, T.M. et al. Novel positive regulatory role for the SPL6 transcription factor in the N TIR-NB-LRR receptor-mediated plant innate immunity PLoS Pathog., 9 (2013)
    [35] Qu, S., Liu, G., Zhou, B. et al. Genetics, 172 (2006),pp. 1901-1914
    [36] Rausher, M.D. Co-evolution and plant resistance to natural enemies Nature, 411 (2001),pp. 857-864
    [37] Ribot, C., Hirsch, J., Balzergue, S. et al. J. Plant Physiol., 165 (2008),pp. 114-124
    [38] Roumen, E.C. Partial resistance to neck blast influenced by stage of panicle development and rice genotype Euphytica, 64 (1992),pp. 173-182
    [39] Roux, M., Schwessinger, B., Albrecht, C. et al. Plant Cell, 23 (2011),pp. 2440-2455
    [40] Shang-Zhong, W.U., Zhu, X.Y., Liu, B. et al. Sci. Agric. Sin., 37 (2004),pp. 528-534
    [41] Shang, J., Tao, Y., Chen, X. et al. Genetics, 182 (2009),pp. 1303-1311
    [42] Shen, K.A., Chin, D.B., Arroyo-Garcia, R. et al. Dm3 is one member of a large constitutively expressed family of nucleotide binding site-leucine-rich repeat encoding genes Mol. Plant Microbe Interact., 15 (2002),pp. 251-261
    [43] Shen, Q.H., Saijo, Y., Mauch, S. et al. Nuclear activity of MLA immune receptors links isolate-specific and basal disease-resistance responses Science, 315 (2007),pp. 1098-1103
    [44] Si, L., Chen, J., Huang, X. et al. OsSPL13 controls grain size in cultivated rice Nat. Genet., 48 (2016),pp. 447-457
    [45] Skamnioti, P., Gurr, S.J. Against the grain: safeguarding rice from rice blast disease Trends Biotechnol., 27 (2009),pp. 141-150
    [46] Staskawicz, B.J., Ausubel, F.M., Baker, B.J. et al. Molecular genetics of plant disease resistance Science, 268 (1995),pp. 661-667
    [47] Takagi, H., Abe, A., Yoshida, K. et al. QTL-seq: rapid mapping of quantitative trait loci in rice by whole genome resequencing of DNA from two bulked populations Plant J., 74 (2013),pp. 174-183
    [48] Tan, X.H., Chen, X.W., Li, S.G. et al. Acta Genet. Sin., 27 (2000),pp. 701-705
    [49] Vos, I.A., Moritz, L., Pieterse, C.M.J. et al. Impact of hormonal crosstalk on plant resistance and fitness under multi-attacker conditions Front. Plant Sci., 6 (2015),pp. 639-652
    [50] Wang, C., Yang, Y., Yuan, X. et al. BMC Plant Biol., 14 (2014),p. 311
    [51] Wang, Y., Xiong, G., Hu, J. et al. Nat. Genet., 47 (2015),pp. 944-948
    [52] Wang, Z.X., Yano, M., Yamanouchi, U. et al. Plant J., 19 (1999),pp. 55-64
    [53] Wilson, R., Talbot, N. Nat. Rev. Microbiol., 7 (2009),pp. 185-195
    [54] Wirthmueller, L., Zhang, Y., Jones, J.D. et al. Curr. Biol., 17 (2007),pp. 2023-2029
    [55] Wu, J., Fan, Y., Db, Zheng, K. et al. Genetic control of rice blast resistance in the durably resistant cultivar Gumei 2 against multiple isolates Theor. Appl. Genet., 111 (2005),pp. 50-56
    [56] Yang, M., Wang, X., Ren, D. et al. Proc. Natl. Acad. Sci. U. S. A., 114 (2017),pp. 8101-8106
    [57] Yano, K., Yamamoto, E., Aya, K. et al. Genome-wide association study using whole-genome sequencing rapidly identifies new genes influencing agronomic traits in rice Nat. Genet., 48 (2016),pp. 927-936
    [58] You, Q., Zhai, K., Yang, D. et al. An E3 ubiquitin ligase-BAG protein module controls plant innate immunity and broad-spectrum disease resistance Cell Host Microbe, 20 (2016),pp. 758-769
    [59] Zhang, Y., Su, J., Duan, S. et al. A highly efficient rice green tissue protoplast system for transient gene expression and studying light/chloroplast-related processes Plant Methods, 7 (2011),p. 30
    [60] Zheng, W., Wang, Y., Wang, L. et al. Theor. Appl. Genet., 129 (2016),pp. 1035-1044
    [61] Zhu, Z.H., Fang, X., Zhang, Y.X. et al. Proc. Natl. Acad. Sci. U. S. A., 107 (2010),pp. 13960-13965
    [62] Zhuang, J.Y., Ma, W.B., Wu, J.L. et al. Mapping of leaf and neck blast resistance genes with resistance gene analog, RAPD and RFLP in rice Euphytica, 128 (2002),pp. 363-370
  • 加载中
计量
  • 文章访问数:  185
  • HTML全文浏览量:  60
  • PDF下载量:  7
  • 被引次数: 0
出版历程
  • 收稿日期:  2018-06-08
  • 录用日期:  2018-10-18
  • 修回日期:  2018-09-11
  • 网络出版日期:  2018-12-31
  • 刊出日期:  2018-12-20

目录

    /

    返回文章
    返回