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recombinant DNA technology

美 [rɪˈkɑmbɪnənt ˌdiː en ˈeɪ tekˈnɑːlədʒi]

网络  DNA重组技术; 技术; 重组DNA技术; 重组; 重组 DNA技术

网络

双语例句

  • Before recombinant DNA technology enabled pharmaceutical companies to manufacture human insulin in the1980s, pig and cow insulin were routinely given to diabetic patients.
    在1980年重组DNA技术出现使得药厂制造人类胰岛素出现以前,猪及牛的胰岛素已经成为为糖尿病患者治疗常规使用的药物。
  • Recombinant protein refers to the use of recombinant DNA techniques in the production of the protein, whose species construct to fermentation, purification technology research development and industrialization of the recombinant protein is the important research content.
    重组蛋白质是指利用DNA重组技术生产的蛋白质,重组蛋白的菌种构建至发酵、纯化的工艺研究是重组蛋白研发和产业化的重要研究内容。
  • Biochip technology is a great breakthrough of life science after recombinant DNA technology and polymerase chain reaction.
    生物芯片技术是继基因工程(重组DNA技术)、聚合酶链式反应(PCR)之后在分子生物学领域中的又一重大突破。
  • The parents of 22 strong heterotic combinations, 'in-which Yiyuan 2, a wheat-rye recombinant was used as male parent, Were tested and analyzed by random amplified polymorphic DNA ( RAPD) markers technology.
    利用RAPD技术对小麦(黑麦)异源重组系异源2号组配的22个强优势杂交组合的亲本进行了遗传差异检测分析。
  • As recombinant DNA technology is consummating increasingly, genetic engineering drug is frequently researched and utilized.
    随着重组DNA技术的不断完善,基因工程药物的研制和利用日益增多。
  • Therapeutic recombinant proteins are produced by the recombinant DNA technology.
    重组药用蛋白质是指利用DNA重组技术生产的蛋白质。
  • Application of recombinant DNA technology in entomology
    重组DNA技术在昆虫学中的应用
  • Methods: An artificial egf gene was constructed with recombinant DNA technology and inserted into pQE-40 to get a expression plasmid pQE-EGF, in which egf was fused with 6 × His tag. Plasmid pQE-EGF was transformed into E.
    方法:用DNA重组技术构建EGF基因并插入表达载体pQE-40,与载体上的6×His标签融合,获得的表达质粒pQE-EGF转化E。
  • The advent of recombinant DNA technology has provided efficient and cost-effective alternate sources for many therapeutic proteins.
    重组DNA技术为许多治疗性蛋白的生产提供了一种有效的替代方法。
  • Although we are now able to produce pharmacological peptides by recombinant DNA technology, yet we fail to produce amidated peptides in the same way because bacteria lack the a-amidase.
    尽管我们能够通过重组DNA技术利用细菌生产具有药理活性的蛋白质,然而这种技术却不能用于生产酰胺化多肽,因为细菌中没有α-酰胺化酶。