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Home > Archive>Volume 22, Issue 2, 2021 >502-511. DOI:10.13430/j.cnki.jpgr.20200813001 Online First
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Isolation of the PspA gene from Nostoc flagelliforme and Analysis of Its Drought Resistance in Transgenic Plants
DOI:
10.13430/j.cnki.jpgr.20200813001
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  • WANG Meng

    WANG Meng

    School of Life Sciences, Ningxia University
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  • LI Xiao-xu

    LI Xiao-xu

    School of Life Sciences, Ningxia University
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  • ZHANG Zheng

    ZHANG Zheng

    School of Life Sciences, Ningxia University
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  • MA Cai-xia

    MA Cai-xia

    School of Life Sciences, Ningxia University
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  • MA Xiao-rong

    MA Xiao-rong

    School of Life Sciences, Ningxia University
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  • WANG Ling-xia

    WANG Ling-xia

    School of Life Sciences, Ningxia University
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  • LIANG Wen-yu

    LIANG Wen-yu

    School of Life Sciences, Ningxia University
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Affiliation:

School of Life Sciences, Ningxia University

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Fund Project:

Natural Science Foundation of Ningxia Hui Autonomous Region (2019AAC03053)

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    Abstract:

    In order to study the functional basis of Phage shock protein A (PspA), the full-length coding sequence (CDS) of the PspA gene was isolated based on sequence homolog and its expression pattern of PspA from N. flagelliforme under drought stress was studied by RT-qPCR. We further generated a plasmid pCAM35s-GFP-PspA which were subjected for a subcellular localization analysis and a transformation in A. thaliana. PspA contained a 777-bp full-length coding sequence, and this gene was significantly up-regulated in N. flagelliforme upon drought stress treatment. A transient expression of PspA in N. benthamiana suggested a sublocalization on the plasma membrane. Moreover, by transforming this gene in A. thaliana, the transgenic plants showed low copies of the PspA gene using Southern hybridization and expressed the recombination protein by Western blot analysis. The transgenic plants expressing the PspA gene, if compared to the wild type plants, were found to be highly resistant against drought stress. Collectively, the results provided a foundation for further exploring the biological function of the N. flagelliforme PspA gene that interplays with drought stress.

    Key words:Nostoc flagelliforme; PspA gene; subcellular localization; transformation; differential expression
    Reference
    [1] DeAngelis C M, Nag D, Withey J H, Matson J S. Characterization of the Vibrio cholerae Phage Shock Protein Response. Journal of Bacteriology, 2019, 201 (14): e00761-18
    [2] Cui X W, Sherman Wen H M, Kinoshita Y, Koishi S, Isowaki C, Ou L S, Masuda Y, Honjoh K I, Miyamoto T. Role of Phage Shock Protein in Recovery of Heat-injured Salmonella. Biocontrol science, 2018, 23 (1): 17-25
    [3] Thurotte A, Brüser T, Mascher T, Schneider D. Membrane chaperoning by members of the PspA/IM30 protein family. Communicative Integrative Biology, 2017, 10 (1): e1264546
    [4] Flores-Kim J, Darwin A J. The Phage Shock Protein Response. Annual Review of Microbiology, 2016, 70: 83-101
    [5] Zhang N, Jovanovic G, McDonald C, Ces O, Zhang X D, Buck M. Transcription Regulation and Membrane Stress Management in Enterobacterial Pathogens. Advances in experimental medicine and biology, 2016, 915: 207-230
    [6] McDonald C, Jovanovic G, Wallace B A, Ces O, Buck M. Structure and function of PspA and Vipp1 N-terminal peptides: Insights into the membrane stress sensing and mitigation. Biochimica et Biophysica Acta (BBA) - Biomembranes, 2017, 1859 (1): 28-39
    [7] Standar K, Mehner D, Osadnik H, Berthelmann F, Hause G, Lünsdorf H, Brüser T. PspA can form large scaffolds in Escherichia coli. FEBS Letters, 2008, 582 (25-26): 3585-3589
    [8] McDonald C, Jovanovic G, Ces O, Buck M. Membrane Stored Curvature Elastic Stress Modulates Recruitment of Maintenance Proteins PspA and Vipp1. mBio, 2015, 6 (5): e01188-15
    [9] Atieno M, Wilson N, Casteriano A, Crossett B, Lesueur D, Deaker R. Aqueous peat extract exposes rhizobia to sub-lethal stress which may prime cells for improved desiccation tolerance. Applied Microbiology and Biotechnology, 2018, 102 (17): 7521-7539
    [10] Chueca B, Pérez-Sáez E, Pagán R, García-Gonzalo D. Global transcriptional response of Escherichia coli MG1655 cells exposed to the oxygenated monoterpenes citral and carvacrol. International journal of food microbiology, 2017, 257: 49-57
    [11] Wang B, Yang J J, Xu C, Yi L X, Wan C H. Dynamic expression of intra- and extra-cellular proteome and the influence of epiphytic bacteria for Nostoc flagelliforme in response to rehydration. Environmental microbiology, 2020, 22 (4): 1251-1264
    [12] Han P P, Guo R J, Shen S G, Yan R R, Wu Y K, Yao S Y, Wang H Y, Jia S R. Proteomic profiling of Nostoc flagelliforme reveals the common mechanism in promoting polysaccharide production by different light qualities. Biochemical Engineering Journal, 2018, 132: 68-78
    [13] 范红丽,冯翠娥,吴佳月,周丽,郑蕊,苏建宇,岳思君. 发状念珠藻NfwspA3基因的克隆及其耐旱能力分析. 植物遗传资源学报, 2019, 20 (2): 451-458Fan H L, Feng C E, Wu J Y, Zhou L, Zheng R, Su J Y, Yue S J. Gene Cloning of NfwspA3 and Analysis of Its Drought Tolerance Capability in Nostoc flagelliforme. Journal of Plant Genetic Resources, 2019, 20 (2): 451-458
    [14] Liang W Y, Zhou Y W, Wang L X, You X R, Zhang Y P, Cheng C L, Chen W. Ultrastructural, physiological and proteomic analysis of Nostoc flagelliforme in response to dehydration and rehydration. Journal of Proteomics, 2012, 75 (18): 5604-5627
    [15] Wang L X, Lei X T, Yang J, Wang S P, Liu Y, Liang W Y. Comparative transcriptome analysis reveals that photosynthesis contributes to drought tolerance of Nostoc flagelliforme (Nostocales, Cyanobacteria). Phycologia, 2018, 57 (1): 113-120
    [16] Ahkami A H, Wang W Z, Wietsma T W, Winkler T, Lange I, Jansson C, Lange B M, McDowell N G. Metabolic shifts associated with drought-induced senescence in Brachypodium. Plant Science, 2019, 289: 110278
    [17] Mohd A, Glyn M, Sibte H. Analysis of rpoS and bolA gene expression under various stress-induced environments in planktonic and biofilm phase using 2(-ΔΔCT) method. Molecular and cellular biochemistry, 2011, 357 (1-2): 275-282
    [18] 张家瑞,孙僖,梁芳,王菲,张艳俊,王海燕,刘大群. 小麦病程相关蛋白1基因的亚细胞定位及信号肽鉴定. 河北农业大学学报, 2017, 40 (4): 1-7Zhang J R, Sun X, Liang F, Wang F, Zhang Y J, Wang H Y, Liu D Q. Identification of the signal peptide and subcellular localization of pathogenesis-related protein 1 gene from wheat. Journal of Hebei Agricultural University, 2017, 40 (4): 1-7
    [19] Kleerebezem M, Tommassen J. Expression of the pspA gene stimulates efficient protein export in Escherichia coli. Molecular microbiology, 1993, 7 (6): 947-956
    [20] Model P, Jovanovic G, Dworkin J. The Escherichia coli phage-shock-protein (psp) operon. Molecular Microbiology, 1997, 24 (2): 255-261
    [21] 李思平,杨硕,李欢,刘庆,辛国胜. 甘薯对干旱胁迫响应的生理诊断研究. 植物生理学报, 2020, 56 (3): 466-478Li S P, Yang S, Li H, Liu Q, Xin G S. Physiological diagnosis of response to drought stress of sweet potato. Plant Physiology Journal, 2020, 56 (3): 466-478
    [22] 余婧,郭玉双,雷波,张孝廉,赵德刚. 烟草NtMYB44b转录因子基因克隆以及生物信息学和表达分析. 植物生理学报, 2020, 56 (2): 200-208Yu J, Guo Y S, Lei B, Zhang X L, Zhao D G. Cloning and bioinformatic and expression analyses of NtMYB44b transcription factor gene in Nicotiana tabacum. Plant Physiology Journal, 2020, 56 (2): 200-208
    [23] 王冰,程宪国. 干旱、高盐及低温胁迫下植物生理及转录因子的应答调控. 植物营养与肥料学报, 2017, 23 (6): 1565-1574Wang B, Cheng X G. Physiological responses and regulatory pathways of transcription factors in plants under drought, high-salt, and low temperature stresses. Journal of Plant Nutrition and Fertilizers, 2017, 23 (6): 1565-1574
    [24] 申玉华,徐振军,唐立红,杨晓坡,黄文婕,武小斌,张文波. 紫花苜蓿NAC类转录因子基因MsNAC2的克隆及其功能分析. 中国农业科学, 2015, 48 (15): 2925-2938Shen Y H, Xu Z J, Tang L H, Yang X P, Huang W J, Wu X B, Zhang W B. Cloning and Function Analysis of the MsNAC2 Gene with NAC Transcription Factor from Alfalfa. Scientia Agricultura Sinica, 2015, 48 (15): 2925-2938
    [25] 梁文裕,杨佳,吴诗杰,焦广飞,王淑萍,徐婷婷. 发菜耐旱相关蛋白NXL-01的基因克隆与表达分析. 西北植物学报, 2015, 35 (1): 44-49Liang W Y, Yang J, Wu S J, Jiao G F, Wang S P, Xu T T. Clone and Expression of Hypothetical Protein NXL-01 Related to Drought tolerant in Nostoc flagelliforme. Acta Botanica Boreali-Occidentalia Sinica, 2015, 35 (1): 44-49
    [26] Joly N, Burrows P C, Engl C, Jovanovic G, Buck M. A Lower-Order Oligomer Form of Phage Shock Protein A (PspA) Stably Associates with the Hexameric AAA+ Transcription Activator Protein PspF for Negative Regulation. Journal of Molecular Biology, 2009, 394 (4): 764-775
    [27] Hankamer B D, Elderkin S L, Buck M, Nield J. Organization of the AAA+ adaptor protein PspA is an oligomeric ring. The Journal of biological chemistry, 2004, 279 (10): 8862-8866
    [28] Karlinsey J E, Maguire M E, Becker L A, Crouch M L, Fang F C. The phage shock protein PspA facilitates divalent metal transport and is required for virulence of Salmonella enterica sv. Typhimurium. Molecular Microbiology, 2010, 78 (3): 669-685
    [29] 楚乐乐,罗成科,李芳兰,路旭平,马天利,李培富. 盐胁迫下OsDSR2 RNAi转基因水稻的生理特性及转录组学分析. 植物遗传资源学报, 2020, 21 (4): 954-965Chu L L, Luo C K, Li F L, Lu X P, Ma T L, Li P F. Analysis of the Physiological Characteristics and Transcriptome Profiles of OsDSR2 RNAi Transgenic Rice under Salt Stress. Journal of Plant Genetic Resources, 2020, 21 (4): 954-965
    [30] Zhang LG, Kondo H, Kamikubo H, Kataoka M, Sakamoto W. VIPP1 Has a Disordered C-Terminal Tail Necessary for Protecting Photosynthetic Membranes against Stress. Plant physiology, 2016, 171 (3): 1983-1995
    [31] Armstrong R M, Adams K L, Zilisch J E, Bretl D J, Sato H, Anderson D M, Zahrt T C. Rv2744c Is a PspA Ortholog That Regulates Lipid Droplet Homeostasis and Nonreplicating Persistence in Mycobacterium tuberculosis. Journal of bacteriology, 2016, 198 (11): 1645-1661
    [32] Bidle K A, Kirkland P A, Nannen J L, Maupin-Furlow J A. Proteomic analysis of Haloferax volcanii reveals salinity-mediated regulation of the stress response protein PspA. Microbiology, 2008, 154: 1436-1443
    [33] Wang Y Y, Fu Z B, Ng K L, Lam C C, Chan A K N, Sze1 K F, Wong W K R. Enhancement of excretory production of an exoglucanase from Escherichia coli with phage shock protein A (PspA) overexpression. Journal of microbiology and biotechnology, 2011, 21 (6): 637-645
    [34] 刘大伟,王正祥. PspA外源表达对枯草芽孢杆菌168蛋白质分泌的影响. 天然产物研究与开发, 2008, 20 (5): 855-858Liu D W, Wang Z X. The Influence of PspA Expression in Bacillus subtilis 168 on Protein Secretion. Natural Product Research and Development, 2008, 20 (5): 855-858
    [35] Manganelli R, Gennaro M L. Protecting from Envelope Stress: Variations on the Phage-Shock-Protein Theme. Trends in Microbiology, 2017, 25 (3): 205-216
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History
  • Received:August 13,2020
  • Revised:September 11,2020
  • Adopted:October 19,2020
  • Online: March 09,2021
  • Published:
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