期刊文献+

PRSV NIa-pro、NIa-vpg、NIb酵母双杂交诱饵表达载体的构建及自激活检测 被引量:1

Construction and Identification of Bait Vector Containing PRSV NIa-pro/NIa-vpg/NIb Gene in Yeast Two-hybrid System
在线阅读 下载PDF
导出
摘要 用PCR技术获得NIa-pro、NIa-vpg、NIb基因片段,将这些基因分别克隆到pBD-GAL4载体中,构建酵母双杂交系统的诱饵载体pBD-GAL4-NIa-pro、pBD-GAL4-NIa-vpg和pBD-GAL4-NIb。测序正确后,将重组质粒导入YRG-2酵母菌株,检测其表达产物对酵母细胞有无毒性及对报告基因有无激活作用。结果表明,获得了正确的NIa-pro、NIa-vpg、NIb基因片段,并成功克隆到pBD-GAL4诱饵载体中,且转化有诱饵载体的YRG-2在SD/-Trp营养缺陷平板上生长良好,说明表达产物对酵母细胞无毒性,对报告基因也无自激活作用,为下一步利用酵母双杂交系统检测与NIa-pro、NIa-vpg、NIb蛋白相互作用的蛋白奠定基础。 NIa-pro, NIa-vpg and NIb genes were amplified by PCR and then fused with pBD-GAIA. After confirmation with sequence analysis, the plasmid was transformed into the yeast cell YRG-2, and its toxicity and transcriptional activation was tested by color assay. As a result, the NIa-pro, NIa-vpg and NIb were successfully amplified and cloned into pBD-GAIA. The YRG-2 transformed with bait plasmids grew well on SD/-trp plate, without toxicity and autonomous activation effect. The bait vectors, pBD-GAIA-NIa-pro, pBD-GAIA-NIa-vpg and pBD-GAL4-Nib, constructed were expressed correctly, and could not activate the transcription of reporter gene alone in yeast two-hybrid system.
出处 《热带作物学报》 CSCD 2008年第3期369-373,共5页 Chinese Journal of Tropical Crops
基金 国家自然科学基金项目(编号:30760134 30560082) 中央级科研院所基本科研业务费项目资助
关键词 PRSV 酵母双杂交 诱饵载体 构建 检测 PRSV yeast two-hybrid bait vector construction identification
作者简介 王明钦,女,1982年生,硕士,主要从事番木瓜环斑病毒方面的研究,E-mail:wmq820515@163.com。 通讯作者,周鹏,E-mail:zhp6301@126.com,Tel:0898-66988564。
  • 相关文献

参考文献10

  • 1Jain R K, Sharma J, Sivakumar A S, et al. Variability in the coat protein gene of Papaya ring-spot virus isolates from multiple locations in India[J]. Archives of virology, 2004, 149 (12): 2 435-2 439
  • 2Riechmann J L, Lain S, Garcia J A. Highlights and prospects of potyvirus molecular biology[J].Journal of General Virology. 1992,73 : 1 - 16
  • 3Jose Luis Riechmann, Sonia Lain, Jua Antonio Garcia. Highights and prospects of potyvirus molecular biology[J].J Gen Virol. 1992,73:1-16
  • 4王升吉,吴元华.大豆花叶病毒分子生物学研究进展[J].农业生物技术学报,1998,6(3):286-292. 被引量:2
  • 5Jeremy A, Bruenn. Relationships among the positive strand and double strand RNA viruses as viewed through their RNA dependent RNA polymerase[J]. Nucleic Acid Research. 1991,19(2): 217-228
  • 6Guo D Y, Minna-liisa R, Mart S, et al. Toward a protein interaction map of potyvriuses: protein interaction matrixes of two potyvituses based on the yeast two-hybrid system[J]. Gen Virol, 1999,82:935 - 939
  • 7Kang S H, Lim W S, Kim K H. A protein interaction map of soybean mosaic vires strain G-H based on the yeast two-hybrid system[J].Mol Cells. 2004, 18(1): 122- 126
  • 8Field S, Sang O.A novel genetic system to detect protein-protein interactions[J]. Nature. 1989,340:2 452 - 2 461
  • 9张勇,黄爱军,曹莉,阎志勇,刘秀杰,张骐,路长林,何成.酵母双杂交方法筛选与NGF受体TrkA相互作用的新蛋白质[J].第二军医大学学报,2002,23(6):586-589. 被引量:4
  • 10奥斯伯F 布伦特R 金斯顿RE 等 颜子颖 王海林 编译.精编分子生物学实验指南[M].北京:科学出版社,1998.366-373.

二级参考文献3

  • 1奥斯伯 布伦特 等.精编分子生物学实验指南[M].北京:科学出版社,1998.37-38,55-68,589.
  • 2刘俊君,中国科学.B,1993年,24卷,3期,265页
  • 3王连铮,大豆遗传育种学,1992年,208页

共引文献157

同被引文献40

  • 1韦雪芳,王冬梅,刘思,周鹏.信号肽及其在蛋白质表达中的应用[J].生物技术通报,2006,22(6):38-42. 被引量:65
  • 2Fields S, Song O K. A novel genetic system to detect protein-protein interactions. Nature, 1989, 340(6230): 245-246.
  • 3Schopfer C R, Nasrallah J B. Self-incompatibility, prospects for a novel putative peptide-signaling molecule. Plant Physiology, 2000, 124: 935-939.
  • 4Chookajorn T, Kachroo A, Ripoll D R, Clark A G, Nasrallah J B. Specificity determinants and diversification of the Brassica self-incompatibility pollen ligand. Proceedings of the National Academy of Sciences of the USA, 2004, 101(4): 911-917.
  • 5Ivanov R, Gaude T. Brassica self-incompatibility: A glimpse below the surface. Plant Signaling Behavior, 2009, 4(10): 996-998.
  • 6McCubbin A G, Kao T H. Molecular recognition and response in pollen and pistil interactions. Annual Review of Cell and Developmental Biology, 2000, 16: 333-364.
  • 7Wheeler M J, Vatovec S, Franklin-Tong V E. The pollen S-determinant in Papaver: Comparisons with known plant receptors and protein ligand partners. Journal of Experimental Botany, 2010, 61(7):2015-2025.
  • 8NasraUah J B, Nasrallah M E. Pollen-stigma signaling in the sporophytic'self-incompatibility response. The Plant Cell, 1993, 5: 1325-1335.
  • 9Conner J A, Conner P, Nasrallah M E, Nasrallah J B. Comparative mapping of the Brassica S locus region and its homology in Arabidopsis: Implications for the evolution of mating systems in the Brassicaeeae. The Plant Cell, 1998, 10:801-812.
  • 10Hadj-Arab H, Chevre A M, Gaude T, Chable V. Variability of the self-incompatibility reaction in Brassica oleracea L. with S15 haplotype. SexualPlantReproduction, 2010, 23(2): 141-151.

引证文献1

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部