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非洲爪蟾功能基因组学的资源与转基因技术

Resources and transgenesis techniques for functional genomics in Xenopus.

作者信息

Ogino Hajime, Ochi Haruki

机构信息

Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5 Takayama, Ikoma, Nara, Japan.

出版信息

Dev Growth Differ. 2009 May;51(4):387-401. doi: 10.1111/j.1440-169X.2009.01098.x.

Abstract

Recent developments in genomic resources and high-throughput transgenesis techniques have allowed Xenopus to 'metamorphose' from a classic model for embryology to a leading-edge experimental system for functional genomics. This process has incorporated the fast-breeding diploid frog, Xenopus tropicalis, as a new model-system for vertebrate genomics and genetics. Sequencing of the X. tropicalis genome is nearly complete, and its comparison with mammalian sequences offers a reliable guide for the genome-wide prediction of cis-regulatory elements. Unique cDNA sets have been generated for both X. tropicalis and X. laevis, which have facilitated non-redundant, systematic gene expression screening and comprehensive gene expression analysis. A variety of transgenesis techniques are available for both X. laevis and X. tropicalis, and the appropriate procedure may be chosen depending on the purpose for which it is required. Effective use of these resources and techniques will help to reveal the overall picture of the complex wiring of gene regulatory networks that control vertebrate development.

摘要

基因组资源和高通量转基因技术的最新进展,使非洲爪蟾从经典的胚胎学模型“蜕变”为功能基因组学的前沿实验系统。这一过程纳入了繁殖迅速的二倍体青蛙——热带爪蟾,作为脊椎动物基因组学和遗传学的新模型系统。热带爪蟾基因组的测序已接近完成,将其与哺乳动物序列进行比较,可为全基因组预测顺式调控元件提供可靠指导。已为热带爪蟾和非洲爪蟾分别生成了独特的cDNA集,这有助于进行非冗余、系统性的基因表达筛选和全面的基因表达分析。非洲爪蟾和热带爪蟾都有多种转基因技术可供使用,可以根据所需目的选择合适的方法。有效利用这些资源和技术将有助于揭示控制脊椎动物发育的基因调控网络复杂线路的全貌。

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