[1] 郭启芳.改善泛素系统提高植物逆境适应性研究[D].泰安:山东农业大学,2007.
[2] Jones A M,Vierstra R D,Daniels S M,et al.The role of separate molecular domains in the structure of phytochrome from etiolated Avena sativa L.[J].Planta,1985,164(4):501-506.
[3] Callis J,Vierstra R D.Ubiquitin and ubiquitin genes in higher plants[J].Plant Molecular and Cell Biology,1989,6:1-30.
[4] Callis J,Carpenter T,Sun C W, et al. Structure and evolution of genes encoding polyubiquitin and ubiquitin-like proteins in Arabidopsis thaliana ecotype Columbia[J].Genetics,1995,139(2):921-939.
[5] 王高鸿,黄久常.蛋白质的选择性降解[J].生命科学,1999,11(1):24-26.
[6] 吴慧娟,张志刚.泛素-蛋白酶体途径及意义[J].国际病理科学与临床杂志,2006,26(1):7-10.
[7] Belknap W R,Garbarino J E.The role of ubiquitin in plant senescence and stress responses[J].Trends in Plant Science,1996,1(10):331-335.
[8] Dreher K,Callis J.Ubiquitin,hormones and biotic stress in plants[J].Annals of Botany,2007,99:787-822.
[9] 商书交,周 燕,娄兴亮,等. UBL5 基因的结构与功能研究[J].北京林业大学学报,2010,32(5):172-176.
[10] Friedmann J S,Koop B F,Raymond V,et al.Isolation of a ubiquitin-like (UBL5) gene from a screen identifying highly expressed and conserved iris genes[J].Genomics,2001,71(2):252-255.
[11] Ramelot T A,Cort J R,Yee A A,et al.Solution structure of the yeast ubiquitin-like modifier protein Hub1[J].Journal of Structural and Functional Genomics,2003,4(1):25-30.
[12] Mcnally T,Huang Q L,Janis R S,et al.Structural analysis of UBL5,a novel ubiquitin-like modifier[J].Protein Science,2003,12(7):1562-1566.
[13] Hochstrasser M.Origin and function of ubiquitin-like proteins[J].Nature,2009,458(7237):422-429.
[14] Yashiroda H,Tanaka K.Hub1 is an essential ubiquitin-like protein without functioning as a typical modifier in fission yeast[J].Genes to Cells,2004,9(12):1187-1197.
[15] Dittmar G A,Wilkinson C R,Jedrzejewski P T,et al.Role of a ubiquitin-like modification in polarized morphogenesis[J].Science,2002,295(5564):2442-2446.
[16] 沙 伟,张梅娟,刘 博,等.毛尖紫萼藓抗旱相关基因 Gp-LEA 的克隆与表达分析[J].西北植物学报,2013,33(9):1724-1730.
[17] Peeters A M,Blankestijn-de vries H,Hanhart C J,et al.Characterization of mutants with reduced seed dormancy at two novel rdo loci and a further characterization of rdo1 and rdo2 in Arabidopsis [J].Physiologia Plantarum,2002,115(4):604-612.
[18] Fleury D,Himanen K,Cnops G,et al.The Arabidopsis thaliana homolog of yeast BRE1 has a function in cell cycle regulation during early leaf and root growth[J].The Plant Cell,2007,19(2):417-432.
[19] Liu Y X,Koornneef M,Soppe W J.The absence of histone H2B monoubiquitination in the Arabidopsi s hub1(rdo4) mutant reveals a role for chromatin remodeling in seed dormancy[J].The Plant Cell,2007,19(2):433-444.
[20] Dhawan R,Luo H,Foerster A M,et al.HISTONE MONOUBIQUITINATION1 interacts with a subunit of the mediator complex and regulates defense against necrotrophic fungal pathogens in Arabidopsis [J].The Plant Cell,2009,21(3):1000-1019.
[21] Lolas I B,Himanen K,Gronlund J T,et al.The transcript elongation factor FACT affects Arabidopsis vegetative and reproductive development and genetically interacts with HUB1/2[J].The Plant Journal,2010,61(4):686-697.
[22] Kiyosue T,Yamaguchi-Shinozaki K,Shinozaki K.Cloning of cDNAs for genes that are early responsive to dehydration stress (ERDs) in Arabidopsis thaliana L.:idetification of three ERDs as HSP cognate genes[J].Plant Molecular Biology,1990,25:791-798.
[23] Ko J H,Yang S H,Han K H.Upregulation of an Arabidopsis RING-H2 gene,XERICO,confers drought tolerance through increased abscisic acid biosynthesis[J].The Plant Journal,2006,47(3):343-355.
[24] 宁约瑟,王国梁,谢 旗.泛素连接酶E3介导的植物干旱胁迫反应[J].植物学报,2011,46(6):606-616.
[25] Chen X,Wood A J.The 26sproteasome of the resurrection plant Tortula ruralis:cloning and characterization of the TrRPT2 subunit[J].Biologia Plantrum,2003,46(3):363-368.
[26] 沙 伟,于 冰,刘 卓.毛尖紫萼藓泛素延伸蛋白基因克隆及序列分析[J].生物技术,2012,22(3):9-13. |