期刊文献+

植物基因克隆技术的发展与展望 被引量:6

Development and Prospect of the Gene Cloning Technology in Plant
在线阅读 下载PDF
导出
摘要 基因克隆技术是生命科学技术领域里非常重要的部分,为了纵览植物基因克隆的理论和技术的发展创新历程,对各种技术体系,正向遗传学途径、反向遗传学途径(包含定位克隆和同源序列克隆及随后发展起来的电子克隆)进行了综述。随着后基因组时代的到来,植物基因克隆技术将发挥更加重要的作用。 Gene cloning technology is a very important in life science area. In order to insight the development and renovation process of gene cloning theories and techniques, many important cloning technique system applied in plant research were reviewed. Forward genetics strategy was based on expressed functions of genes, which by means of identifying the product or the mutant phenotype of gene. Forward genetics strategy included two aspects: functional cloning and phenotype cloning. Reverse genetics strategy was founded on the special location and sequences of gene itself, including positional cloning, homology cloning, and electronic cloning which developed in recent years. With the advent of post-genome era, plant gene cloning technology will play more important role in the future.
出处 《长江蔬菜》 2009年第10X期13-18,共6页 Journal of Changjiang Vegetables
基金 国家自然科学基金(30571262) "十一五"国家科技支撑计划(2006BAD01A7) 西北农林科技大学"青年学术骨干支持计划"(01140304) 西北农林科技大学人才基金(01140508)
关键词 基因克隆 功能克隆 定位克隆 转座子标签法 抑制性差减杂交 同源序列法 基因芯片 电子克隆 Gene cloning Functional cloning Positional cloning Transposon tagging Suppression subtractive hybridization Homology cloning Gene chips Electronic cloning
  • 相关文献

参考文献33

  • 1Li L G, He Z Y. Pandev G K. et al. Functional cloning and characterization of a plant efflux carrier for multidrug and heavv metal detoxification[J]. J Biol Chem, 2002, 277 (2): 5 360-5 368.
  • 2Milligan S B, John B, Yaghoobi J, et al. The root nematode resistance gene Mi from tomato is a member of the leucine zipper, nucleotide binding, leucine-rich repeat family of plant genes[J]. Plant Cell, 1998, 10:1 307-1 319.
  • 3Ernst K, Amar K, Doris K. The broad-spectrum potato cyst nematode resistance gene (Hero) froln tomato is the only member of a large gene family of NBS-LRR genes with an unusual amino acid repeat in the LRR region [J]. Plant J, 2002, 31: 127-136.
  • 4van der Vossen E A G, van der Voort J, Kanyuka K. Homologues of a single resistance-gene cluster in potato confer resistance to distinct pathogens: a virus and a nematode [J]. Plant J, 2000, 23: 567-576.
  • 5Xiao S, Ellwood S, Calls O, et al. Broad-spectrum mildew resistance in Arabidopsis thaliana mediated by RPWS[J]. Science, 2001, 291:118-120.
  • 6Swiderski M R. Innes R W. The Arabidopsis PBS1 resistance gene encodes a member of a novel protein kinase subfamily[J]. Plant J, 2001, 26:101-112.
  • 7Bittner-Eddy P D, Crute E B, Holub J L, et al. RPP13 is a simple loeus in Arabidopsis thaliana for alleles that specifiy downy mildew resistance to different avimlence determinants in Peronospora parasitica [J]. Plant J, 2000, 21: 177- 188.
  • 8Bryan G T, Wu K, Farrall L, et al. A single amino acid dif ference distinguishes resistant and susceptible alleles of the rice blast resistance gene Pi-ta[J]. Plant Cell, 2000, 12: 2 033-2 045.
  • 9Yoshimura S, Yamanouchi, U, Katayose Y, et al. Expression of Xa1, a bacterial blight resistance gene in rice, is induced by bacterial inoculation [J]. Proc Natl Acad Sci USA, 1998, 95:1 663-1 668.
  • 10Wang Z X, Yano M, Yamanouchi U. The Pi-b gene for rice blast resistance belongs to the nucleotide binding and leucine-rich repeat class of plant disease resistance genes [J]. Plant cell, 1999, 19: 55-64.

二级参考文献59

共引文献114

同被引文献100

引证文献6

二级引证文献16

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