后基因组时代
- 名post-genomic era
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pathway预测是后基因组时代各类组学研究的基础,已成为近年来生物信息学的研究热点之一。
Pathway prediction is the basis of various types of omics in post-genomic era . With the extreme importance , it has become one of the focuses of bioinformatics in recent years .
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由蛋白质相互作用构成的PPI网络的拓扑特性分析是后基因组时代最重要的研究课题之一。
Analysis of the topology characters of PPI network composed of protein-protein interactions is one of the most important issues in the post-genomic era .
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DNA微阵列技术以其高通量、自动化、平行化、快速化的优势,成为后基因组时代在转录组水平进行肿瘤基因表达谱分析的最强有力工具。
With the advantages of high throughput , automation and speed , DNA microarray is becoming the most powerful tool in cancer research in the post-genome age .
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激光捕获显微切割(LaserCaptureMicrodissection,LCM)与基因芯片是后基因组时代新出现的两种技术。
Laser capture microdissection ( LCM ) and microarray are two new immerging techniques in post-genome era .
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科学技术不断迅猛发展,DNA芯片已成为生命科学后基因组时代研究的重要工具。
As the science and technology developed rapidly , DNA chips have become an important tool in the research of life science in the era of post genome project .
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它极大地推动了DNA芯片技术、生物信息技术、生命科学工业的兴起与发展;开辟了后基因组时代的新纪元。
It not only cause a prominent initiation and development of DNA chips technology , bioinformatics technique and bioscience industry , but also initiate the new era of post-genome .
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RNAi在后基因组时代的基因功能研究和药物开发中具有广阔应用前景。
RNAi has the promise of the study of gene function and drug development .
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在后基因组时代面临的一个重大挑战就是如何从整体层面上揭示生物系统中DNA、RNA、蛋白质和各种生物小分子通过相互作用而产生生命现象。
In the post-genome era facing a major challenge is how to reveal the phenomenon of life at the whole level , which arising from interactions among DNA , RNA , proteins and small molecules of various biological systems .
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作为基因变异的主要形式,SNPs在对疾病的起因、风险评估和防治方面有着巨大的潜力。其研究已成为人类后基因组时代的主要内容之一。
As the mostly major in the human genetics variability , SNPs have immense potentiality in the study of disease ' etiopathogenisis , risk assessment , prevention and treatment . It is now one of the main areas in the post-genomics era .
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蛋白质组是后基因组时代出现的一个新兴研究领域。
Proteome is a new research area of the post-genome era .
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利剑配鞘:重视后基因组时代医学伦理研究
Stressing the Research on Medical Ethics in the Era of Post-genomics
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后基因组时代药物研究的新领域&蛋白质组学
New fields of the medicinal research in post-genome era & Proteomics
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后基因组时代的代谢工程:机遇与挑战
Metabolic engineering in the post genomic era : opportunities and challenges
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后基因组时代的结核新疫苗研究
Studies on the novel vaccines against tuberculosis in the post-genome era
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后基因组时代的营养学研究
Nutrition Research in the Post - genome - sequencing Era
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蛋白质相关问题是后基因组时代的研究重点。
Related studies on Protein are the focus of the post-genome era .
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蛋白质相互作用网络是后基因组时代系统生物学研究的重要内容。
Several representative methods of clustering in protein-protein interaction network are reviewed .
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比较基因组学是后基因组时代基因组研究的一项重要内容。
Comparative genomics is an important content in post-genome era .
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基因功能注释&后基因组时代面临的挑战
Annotation of Gene Function : A Big Challenge in the Post-genomic Era
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后基因组时代,表达谱基因芯片技术被广泛应用。
Gene expression microarray techonology is widely used in post genome studies .
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后基因组时代的生物医学与人
Biomedicine and Human Being in the Post - genomic Era
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后基因组时代的生物芯片技术
Bio - Chip Technology in Post - genomics Era
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随着越来越多的模式生物测序完成,开始进入后基因组时代。
The post genome era starts with more and more model organisms sequenced .
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在后基因组时代,蛋白质组研究是基因功能研究的重要内容。
In post-genome era , proteome research is important connotation on gene function .
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后基因组时代植物细胞培养生产次生代谢产物研究的策略
Strategies for secondary metabolite production through plant cell culture in the post-genomic era
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人类基因组计划与后基因组时代
Human Genome Project and the Post Genome Era
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后基因组时代生物信息学的新进展
Progress of Bioinformatics in Post - genome Era
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其中转录调控是后基因组时代的一个重要研究课题。
And the transcriptional regulation is an important research topic in the post-genomic era .
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后基因组时代的医学发展
Medical Development of Post Human Genome Project Era
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后基因组时代的胶质瘤分子生物学研究
Molecular Biological Study on Glioma in Post-genomic Era