[1]翟莹,张军,赵艳,等.大豆SbPRP1和SbPRP2基因在非生物胁迫下的表达及载体构建[J].大豆科学,2017,36(01):24-27.[doi:10.11861/j.issn.1000-9841.2017.01.0024]
 ZHAI Ying,ZHANG Jun,ZHAO Yan,et al.Expression and Vector Construction of SbPRP1 and SbPRP2 in Soybean Under Abiotic Stresses[J].Soybean Science,2017,36(01):24-27.[doi:10.11861/j.issn.1000-9841.2017.01.0024]
点击复制

大豆SbPRP1和SbPRP2基因在非生物胁迫下的表达及载体构建

参考文献/References:

[1]蒋炳军, 岳岩磊, 王彩洁, 等. 大豆分子育种研究进展[J]. 大豆科学, 2012, 31(4): 662-667. (Jiang B J, Yue Y L, Wang C J, et al. Recent advances in molecular breeding of soybean[J]. Soybean Science, 2012, 31(4): 662-667.)

[2]韩青, 陈瑞, 杨野, 等. 植物富含脯氨酸蛋白的研究进展[J]. 植物生理学报, 2015, 51(8): 1179-1184. (Han Q, Chen R, Yang Y, et al. Progress on plant proline-rich protein[J]. Plant Physiology Journal, 2015, 51 (8): 1179-1184.)
[3]翟莹, 张军, 陈阳, 等. 大豆GmPRP转基因拟南芥抗盐性鉴定[J]. 大豆科学, 2015, 34(2): 345-348. (Zhai Y, Zhang J, Chen Y, et al. Salt tolerance identification of soybean GmPRP- transgenic Arabidopsis[J]. Soybean Science, 2015, 34(2): 345-348.)
[4]Lawton M, Lamb C. Transcriptional activation of plant defense genes by fungal elicitor, wounding and infection[J]. Molecular and Cellular Biology, 1987, 7(1): 335-341.
[5]Showalter A, Butt A, Kim S. Molecular details of tomato extensin and glycine-rich protein gene expression[J]. Plant Molecular Biology, 1992, 19(2): 205-215.
[6]Didierjean L, Frendo P, Burkard G. Stress responses in maize: Sequence analysis of cDNAs encoding glycine-rich proteins[J]. Plant Molecular Biology, 1992, 18(4): 847-849.
[7]Didierjean L, Frendo P, Nasser W, et al. Heavy metal-responsive genes in maize: Identification and comparison of their expression upon various forms of abiotic stress[J]. Planta, 1996, 199(1): 1-8.
[8]Datta K, Schmidt A, Marcus A. Characterization of two soybean repetitive proline-rich proteins and a cognate cDNA from germinated axes[J]. The Plant Cell, 1989, 1: 945-952.?
[9]Kleis S, Tierney M. Isolation and characterization of a proline-rich cell wall protein from soybean seedling[J]. Plant Physiology, 1990, 94: 1897-1902.
[10]Bradley D, Kjellbom P, Lamb C. Elicitor-and wound-induced oxidative cross-linking of a proline-rich plant cell wall protein: A novel,rapid defense response[J]. Cell, 1992, 70(1): 21-30.
[11]Brisson L, Tenhaken R, Lamb C. Function of oxidative cross-Linking of cell wall structural proteins in plant disease resistance[J]. The Plant Cell, 1994, 6(12): 1703-1712.
[12]Priyanka B, Sekhar K, Sunita T, et al. Characterization of expressed sequence tags (ESTs) of pigeonpea (Cajanus cajan L.) and functional validation of selected genes for abiotic stress tolerance in Arabidopsis thaliana[J]. Molecular Genetics and Genomics, 2010, 283(3): 273-287.
[13]Gothandam K, Nalini E, Karthikeyan S, et al. OsPRP3, a flower specific proline-rich protein of rice, determines extracellular matrix structure of floral organs and its overexpression confers cold-tolerance[J]. Plant Molecular Biology, 2010, 72(1): 125-135.
[14]Zhang Y, Schl-ppi M. Cold responsive EARLI1 type HyPRPs improve freezing survival of yeast cells and form higher order complexes in plants[J]. Planta, 2007, 227(1): 233-243.
[15]Zhan X, Wang B, Li H, et al. Arabidopsis proline-rich protein important for development and abiotic stress tolerance is involved in microRNA biogenesis[J]. Proceedings of the National Academy of Sciences of the United States of America, 2012, 109(44): 18198-18203.
[16]吕高强, 吴向阳, 王心宇. 芝麻中一个富含脯氨酸新基因的克隆与特征分析[J]. 作物学报, 2015, 41(12): 1810-1818. (Lyu G Q, Wu X Y, Wang X Y. Cloning and characterization of a novel gene encoding proline-rich protein in sesame[J]. Acta Agronomica Sinica, 2015, 41(12): 1810-1818.)
[17]Hong J, Nagao R, Key J. Characterization and sequence analysis of a developmentally regulated putative cell wall protein gene isolated from soybean[J]. The Journal of Biological Chemistry, 1987, 262 (17): 8367-8376.
[18]Hong J, Nagao R, Key J. Characterization of a proline-rich cell wall protein gene family of soybean[J]. The Journal of Biological Chemistry, 1990, 265(5): 2470-2475.?
[19]Hong J, Nagao R, Key J. Developmentally regulated expression of soybean proline-rich cell wall protein genes[J]. The Plant Cell, 1989, 1: 937-943.?
[20]Wyatt R, Nagao R, Key J. Patterns of soybean prolinerich protein gene expression[J]. The Plant Cell, 1992, 4: 99-110.
[21]柴团耀, 张玉秀. 菜豆富含脯氨酸蛋白质基因在生物和非生物胁迫下的表达[J]. 植物学报, 1999, 41(l): 111-113. (Chai T Y, Zhang Y X. Gene expression analysis of a proline-rich protein from bean under biotic and abiotic stress[J]. Acta Botanica Sinica, 1999, 41(l): 111-113.)
[22]张德静, 秦丽霞, 李龙, 等. 异源表达棉花-GhPRP5-基因增强了拟南芥对盐和ABA的敏感性[J]. 作物学报, 2013, 39(3): 563-569. (Zhang D J, Qin L X, Li L, et al. Expression of cotton GhPRP5 gene in Arabidopsis enhances susceptibility to ABA and salt stresses[J]. Acta Agronomica Sinica, 2013, 39(3): 563-569.)
[23]Sheng J, Dovidio R, Mehdy M. Negative and positive regulation of a novel proline-rich protein mRNA by fungal elicitor and wounding[J]. The Plant Journal, 1991, 1(3): 345-354.
[24]杨君, 张艳, 王伟巧, 等. 海岛棉GbHyPRP1克隆及其转基因拟南芥抗黄萎病验证[J]. 植物遗传资源学报, 2015, 16(3): 594-602. (Yang J, Zhang Y, Wang W Q, et al. Cloning of GbHyPRP1 from Gossypium barbadense and validation of Verticillium wilt resistance in transgenic Arabidopsis[J]. Journal of Plant Genetic Resources, 2015, 16(3): 594-602.)
[25]Showalter A, Keppler B, Lichtenberg J, et al. A bioinformatics approach to the identification, classification, and analysis of hydroxyproline-rich glycoproteins[J]. Plant Physiology, 2010, 153(2): 485-513.
[26]Goodwin W, Pallas J, Jenkins G. Transcripts of a gene encoding a putative cell wall-plasma membrane linker protein are specifically cold-induced in Brassica napus[J]. Plant Molecular Biology, 1996, 31(4): 771-781.
[27]He C, Zhang J, Chen S. A soybean gene encoding a proline-rich protein is regulated by salicylic acid, an endogenous circadian rhythm and by various stresses[J]. Theoretical and Applied Genetics, 2002, 104(6-7): 1125-1131.

相似文献/References:

[1]刘章雄,李卫东,孙石,等.1983~2010年北京大豆育成品种的亲本地理来源及其遗传贡献[J].大豆科学,2013,32(01):1.[doi:10.3969/j.issn.1000-9841.2013.01.002]
 LIU Zhang-xiong,LI Wei-dong,SUN Shi,et al.Geographical Sources of Germplasm and Their Nuclear Contribution to Soybean Cultivars Released during 1983 to 2010 in Beijing[J].Soybean Science,2013,32(01):1.[doi:10.3969/j.issn.1000-9841.2013.01.002]
[2]李彩云,余永亮,杨红旗,等.大豆脂质转运蛋白基因GmLTP3的特征分析[J].大豆科学,2013,32(01):8.[doi:10.3969/j.issn.1000-9841.2013.01.003]
 LI Cai-yun,YU Yong-liang,YANG Hong-qi,et al.Characteristics of a Lipid-transfer Protein Gene GmLTP3 in Glycine max[J].Soybean Science,2013,32(01):8.[doi:10.3969/j.issn.1000-9841.2013.01.003]
[3]王明霞,崔晓霞,薛晨晨,等.大豆耐盐基因GmHAL3a的克隆及RNAi载体的构建[J].大豆科学,2013,32(01):12.[doi:10.3969/j.issn.1000-9841.2013.01.004]
 WANG Ming-xia,CUI Xiao-xia,XUE Chen-chen,et al.Cloning of Halotolerance 3 Gene and Construction of Its RNAi Vector in Soybean (Glycine max)[J].Soybean Science,2013,32(01):12.[doi:10.3969/j.issn.1000-9841.2013.01.004]
[4]张春宝,李玉秋,彭宝,等.线粒体ISSR与SCAR标记鉴定大豆细胞质雄性不育系与保持系[J].大豆科学,2013,32(01):19.[doi:10.3969/j.issn.1000-9841.2013.01.005]
 ZHANG Chun-bao,LI Yu-qiu,PENG Bao,et al.Identification of Soybean Cytoplasmic Male Sterile Line and Maintainer Line with Mitochondrial ISSR and SCAR Markers[J].Soybean Science,2013,32(01):19.[doi:10.3969/j.issn.1000-9841.2013.01.005]
[5]卢清瑶,赵琳,李冬梅,等.RAV基因对拟南芥和大豆不定芽再生的影响[J].大豆科学,2013,32(01):23.[doi:10.3969/j.issn.1000-9841.2013.01.006]
 LU Qing-yao,ZHAO Lin,LI Dong-mei,et al.Effects of RAV gene on Shoot Regeneration of Arabidopsis and Soybean[J].Soybean Science,2013,32(01):23.[doi:10.3969/j.issn.1000-9841.2013.01.006]
[6]杜景红,刘丽君.大豆fad3c基因沉默载体的构建[J].大豆科学,2013,32(01):28.[doi:10.3969/j.issn.1000-9841.2013.01.007]
 DU Jing-hong,LIU Li-jun.Construction of fad3c Gene Silencing Vector in Soybean[J].Soybean Science,2013,32(01):28.[doi:10.3969/j.issn.1000-9841.2013.01.007]
[7]张力伟,樊颖伦,牛腾飞,等.大豆“冀黄13”突变体筛选及突变体库的建立[J].大豆科学,2013,32(01):33.[doi:10.3969/j.issn.1000-9841.2013.01.008]
 ZHANG Li-wei,FAN Ying-lun,NIU Teng-fei?,et al.Screening of Mutants and Construction of Mutant Population for Soybean Cultivar "Jihuang13”[J].Soybean Science,2013,32(01):33.[doi:10.3969/j.issn.1000-9841.2013.01.008]
[8]盖江南,张彬彬,吴瑶,等.大豆不定胚悬浮培养基因型筛选及基因枪遗传转化的研究[J].大豆科学,2013,32(01):38.[doi:10.3969/j.issn.1000-9841.2013.01.009]
 GAI Jiang-nan,ZHANG Bin-bin,WU Yao,et al.Screening of Soybean Genotypes Suitable for Suspension Culture with Adventitious Embryos and Genetic Transformation by Particle Bombardment[J].Soybean Science,2013,32(01):38.[doi:10.3969/j.issn.1000-9841.2013.01.009]
[9]王鹏飞,刘丽君,唐晓飞,等.适于体细胞胚发生的大豆基因型筛选[J].大豆科学,2013,32(01):43.[doi:10.3969/j.issn.1000-9841.2013.01.010]
 WANG Peng-fei,LIU Li-jun,TANG Xiao-fei,et al.Screening of Soybean Genotypes Suitable for Somatic Embryogenesis[J].Soybean Science,2013,32(01):43.[doi:10.3969/j.issn.1000-9841.2013.01.010]
[10]刘德兴,年海,杨存义,等.耐酸铝大豆品种资源的筛选与鉴定[J].大豆科学,2013,32(01):46.[doi:10.3969/j.issn.1000-9841.2013.01.011]
 LIU De-xing,NIAN Hai,YANG Cun-yi,et al.Screening and Identifying Soybean Germplasm Tolerant to Acid Aluminum[J].Soybean Science,2013,32(01):46.[doi:10.3969/j.issn.1000-9841.2013.01.011]

备注/Memo

基金项目:国家自然科学基金(31301335);黑龙江省教育厅科学技术研究(12541889);黑龙省自然科学基金项目(C201458);黑龙江省普通本科高等学校青年创新人才培养计划(UNPYSCT_2016090)。

第一作者简介:翟莹(1982-),女,博士,副教授,主要从事大豆分子育种研究。E-mail:fairy39809079@126.com。

更新日期/Last Update: 2017-03-14