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genetic engineering
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  基因工程
     Fertility Gene and Protein Expression Regulating in Genetic Engineering
     基因工程控制植物育性的基因表达调控和蛋白质工程研究
短句来源
     Improving the Resistance of Some Important Vegetables to Insects by Genetic Engineering
     基因工程改良几种重要蔬菜的抗虫性
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     Experimental Study on Genetic Engineering Vaccine with Peb1 Protein of Campylobacter Jejuni
     空肠弯曲菌粘附蛋白基因工程疫苗的实验研究
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     Risk Assessment of the Plant Genetic Engineering and the Safety Management
     植物基因工程的风险评估与安全管理研究
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     Studies on the Regularity of PPO Activity of Potatoes and Anti-wounded-browning Genetic Engineering for Tubers
     马铃薯PPO活性变化规律及抗块茎损伤褐化的基因工程研究
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  遗传工程
     Techniques for introducing Exogenous DNA into Rice and Genetic Engineering Breeding
     水稻外源DNA导入技术与遗传工程育种
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     D N A sequencing is an im portant technology of genetic engineering.
     D N A 测序是遗传工程的重要技术之一, D N A 测序技术的自动化对遗传工程的研究具有重要意义。
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     Status and Prospects of Genetic Engineering of Forest Trees
     树木遗传工程的现状与前景
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     DNA Recombination and Chloroplast Genetic Engineering
     DNA重组与叶绿体遗传工程
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     Progress of Genetic Engineering in milk Protein gene
     乳汁蛋白质基因的遗传工程研究进展
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  “genetic engineering”译为未确定词的双语例句
     Genetic Engineering of Tobacco with Double Resistance to Both Virus and Insect
     Genetic Engineering of Tobacco with Double Resistance to Both Virus and Insect
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     METHODS: The fused plasmid containing PTD gene and b3a2 bcr/abl gene of CML was constructed by genetic engineering technique and was expressed in E.
     方法 :利用基因工程技术 ,将PTD基因与CMLb3a2bcr/abl基因融合并原核表达。
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     Experiments of Mammalian Genetic Engineering Experiment 14 M13 Cloning and DNA Sequencing
     实验14 M13克隆和DNA顺序分析
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     Routine genetic engineering technique was applied to construct the prokaryotic expression systems of genotypes ompL1/1 and ompL1/2, and Ni-NTA affinity chromatography was performed to extract the target recombinant products rOmpL1/1 and rOmpL1/2. Immune aurosol electron microscopy was selected to locate the position of OmpL1s on leptospiral envelope.
     采用常规基因工程技术构建ompL1/1和ompL1/2主要基因型原核表达系统,Ni-NTA亲和层析法提纯目的重组表达产物rOmpL1/1和rOmpL1/2。 采用胶体金免疫电镜技术,对OmpL1s进行膜定位。
短句来源
     The Expression of MCT1 and CD147 in Human Gliomas and the Influence of CD147 Genetic Engineering Antibody on Glioma Cells Glycolysis Metabolism in Vitro
     CD147、MCT1在人脑胶质瘤中的表达及CD147单抗对U251细胞代谢干预的实验研究
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  genetic engineering
Simultaneous introduction of multiple genes into plants is a critical step in plant genetic engineering to manipulate multiple functional genes in metabolic engineering and trait stacking.
      
Thus, the development of the new PRV recombinant expressing the modified GP5m protein as a candidate vaccine established the basis for the study of bivalent genetic engineering vaccines against PRRSV and PRV.
      
Recombinant forms of HRP were produced by a genetic engineering approach using an E.
      
Genetic engineering yields promising results in the field, as recent studies demonstrate.
      
The present researches will facilitate the development of antibrown sweetpotato by genetic engineering.
      
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Wild soybean Glycinc soja with his characters of disease resistant, high protein content, tolerant to stress is an important germplasm for soybean improvement. Plant regeneration is first step for application of genetic engineering technique to soybean improvement. Several plant-lets were obtained from calluses of hypocotyle and cotyledon of wild soybean. The best medium for this is MS medium with supplements 2mg/l IAA, 5mg/1 BA and 2mg/l KT. The immature hypocotyl and cotyledon are best inoculants for...

Wild soybean Glycinc soja with his characters of disease resistant, high protein content, tolerant to stress is an important germplasm for soybean improvement. Plant regeneration is first step for application of genetic engineering technique to soybean improvement. Several plant-lets were obtained from calluses of hypocotyle and cotyledon of wild soybean. The best medium for this is MS medium with supplements 2mg/l IAA, 5mg/1 BA and 2mg/l KT. The immature hypocotyl and cotyledon are best inoculants for callus and plant inducing.

野生大豆Glvcine soja是栽培大豆G.max的近祖。它具有高蛋白、抗病性强、抗旱、抗涝和抗盐碱等许多优良性状。研究G.soja的愈伤组织的再生,对于研究Glycine属的遗传工程,改良现有栽培大豆都有重要意义。本文介绍采用MS基本培养基附加2mg/l IAA、5mg/l BA和2mg/l KT培养基,培养未成熟的G.soja幼嫩种子的下胚轴和子叶获得愈伤组织并分化出幼苗。 IAA——Indole—Acetic Acid. BA——6—Benzylamiaopurine. KT——Kinetin.

Biotechnology has been defined as a subject that uses biological organism, systems or processes to manufacture industrial products. Biotechnology is in reality a subject of great antiquity, having its origin in aneient microbial processes such as brewing, wine making, and fermented milk products as cheese and yoghurts. However, new developments in fermenter design and fermentation processes, in enzyme technology and more recently in genetic engineering have introdced new and exciting dimensions to the...

Biotechnology has been defined as a subject that uses biological organism, systems or processes to manufacture industrial products. Biotechnology is in reality a subject of great antiquity, having its origin in aneient microbial processes such as brewing, wine making, and fermented milk products as cheese and yoghurts. However, new developments in fermenter design and fermentation processes, in enzyme technology and more recently in genetic engineering have introdced new and exciting dimensions to the subject. In particular, bioteehnology stresses the integration of microbiology, biochemistry and chemical process or engineering, but above all, it is directed to application. This review attempts to highlight some of the important biological components of biotechnology i.e. microbial technology, enzyme technology and fermentation technology.

生物工程是应用生物有机体,生物系统或生物过程来制造工业产品的学科。生物工程在应用微生物方面有很悠久的历史。例如酿酒,发酵乳制品奶酪、酸乳等。目前又在发酵罐设计,发酵工艺,酶技术及遗传工程方面具有令人振奋的进展。生物工程学着重微生物学,生物化学和化学工程的结合,并直接付之实用。本综述主要介绍生物工程中几个同发酵有关的内容,即:微生物技术、酶技术及发酵枝术。

In this paper current advance of genetic engineering technology has been described. Development of molecular biology in recent decades, particularly the double helix strueture of DNA molecule and.genetic theory in general is briefly stated. Then the series of techniques showing how genetic engineering methodology works in bacterial, mammalian and plant cells is narrated. Finally, industrial application of genetic manipulation technology and its development and future prospects are observed....

In this paper current advance of genetic engineering technology has been described. Development of molecular biology in recent decades, particularly the double helix strueture of DNA molecule and.genetic theory in general is briefly stated. Then the series of techniques showing how genetic engineering methodology works in bacterial, mammalian and plant cells is narrated. Finally, industrial application of genetic manipulation technology and its development and future prospects are observed.

本文综述了近年来遗传工程技术的进展。概括地介绍了分子生物学中有关DNA分子的双螺旋结构和遗传学的一些基本概念和理论;比较具体地叙述了遗传工程技术是如何对细菌细胞、动物细胞和植物细胞进行操作的;最后扼要地介绍了遗传工程在工业上的应用及其发展前景。

 
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