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重组微生物
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  recombinant microorganism
     Progresses in the application of recombinant microorganism, transgenic microbe, genic engineering strain, transgenic animmal and plant genic technology in remaking antibiotic and producing hormone like drug, amino acids and enzymes are reviewed.
     综述了重组微生物、转基因微生物、基因工程菌、转基因动物以及植物的基因技术在改造抗生素、生产激素类药物、生产氨基酸和酶等方面应用的最近进展 .
短句来源
     This paper reviewed present statu and advances of research on risk assessment of the agricultural recombinant microorganism, introduced monitoring methods and environmental impact of agricultural recombinant microorganism, discussed the existing problem about biosafty of environmental release of agricultural recombinant microorganism in detail.
     综述了近年来农业重组微生物的研究现状和进展 ,详细介绍农业重组微生物环境释放的监控方法以及对环境的冲击作用 ,对一些有关生物安全研究的热点问题进行了探讨
短句来源
  recombinant microorganisms
     Finally, the latest development, esp. the kinetics of recombinant microorganisms, mammallian and plant cells are briefly introduced.
     还对生化反应工程的最新发展,特别是对重组微生物、哺乳动物细胞和植物细胞的生长、产物形成动力学作了扼要介绍。
短句来源
  “重组微生物”译为未确定词的双语例句
     Recombinant BCG vaccine of microorganisms and its prospects
     重组微生物-BCG疫苗及其运用前景
短句来源
     Advances of the research on risk assessment of agricultural ecombinant microorganism
     农业重组微生物生物安全研究进展
短句来源
     Though the homology of PLA 2 gene is less than 10% between S.violaceoruber 2917 and snake venom, they have similar proton transfering system, Ca 2+ binding ring as well as hydrophobic channels. The cloning of this gene provides more information for the studying of PLA 2 structure and function, and also provides basis for the production of PLA 2 with the recombinant Streptomyces strains.
     与蛇毒的磷脂酶A2 的同源性小于 10 % ,但有类似的质子传递系统、Ca2 + 结合环以及疏水通道等结构 这个基因的克隆为磷脂酶A2 结构与功能的研究提供更多的信息 ,也为利用重组微生物生产磷脂酶A2 打下了基础
短句来源
     Since 1996, a remarkable progress in the area of genetically engineered agricultural microorganisms has been made in China.
     介绍了我国农业微生物基因工程研究现状,特别是饲料、肥料和农药用重组微生物制剂的研究成果。
短句来源
     Environmental monitoring of GMM,as one of the main contents in biosafety assessmenis, is calling much attention of many researchers and scientists.
     遗传重组微生物 (GMM)的环境监测作为生物安全性评价的重要内容之一 ,正越来越得到广大科研工作者的密切关注。
短句来源
  相似匹配句对
     The recombinant plasmid expressed well in E.
     从重组E.
短句来源
     Microbe
     微生物
短句来源
     Advances of the research on risk assessment of agricultural ecombinant microorganism
     农业重组微生物生物安全研究进展
短句来源
     Recombinant BCG vaccine of microorganisms and its prospects
     重组微生物-BCG疫苗及其运用前景
短句来源
     MICROBIAL ACCUMULATION OF URANIUM
     微生物富集铀
短句来源
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  recombinant microorganism
The polysaccharide from the recombinant microorganism is largely indistinguishable, structurally and functionally, from native xanthan gum.
      
Production of tryptophan by a temperature sensitive recombinant microorganism (Escherichia coli W3110 ΔtrpLDtrpRtstna- (pCRT185)) was investigated.
      
Selection pressure is widely used in stabilizing the plasmid of the recombinant microorganism.
      
  recombinant microorganisms
Range of substrates and steroid bioconversion reactions performed by recombinant microorganisms Saccharomyces cerevisiae and Yar
      
In biomaterials applications there exists a need to protect against the environmental release of recombinant microorganisms and transmissible genetic material and to prevent the recovery of proprietary genetic information.
      
The production of enzymes from wild-type thermophiles is very low, therefore, for industrial applications, it is necessary to use recombinant microorganisms.
      
Analysis of bifurcations in continuous fermentation using recombinant microorganisms with delayed responses
      
This test system provides a simple way to estimate effects of changing environmental factors on plasmid transfer rates and on the survival of recombinant microorganisms.
      
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The aim,scope and importance of biochemical reaction engineering are expounded, and the intrinsic kinetics of microbial growth, product formation arts substrate consumption as well as the macro-kinetics of external and internal diffusion effects of biocatalyst particle or film are systematically introduced. Finally, the latest development, esp. the kinetics of recombinant microorganisms, mammallian and plant cells are briefly introduced.

本文阐明了生化反应工程的目的、范围和重要性。并对微生物生长、产物形成和基质消耗的本征动力学以及对生物催化剂颗粒或膜的内外扩散影响的宏观动力学作了较系统的介绍。还对生化反应工程的最新发展,特别是对重组微生物、哺乳动物细胞和植物细胞的生长、产物形成动力学作了扼要介绍。

Based on known molecular interactions of aporepressor,corepressor and inducer,a mathematical model of product formation about the Trp operon regulated recombinant microbes has been proposed,The linear relation of the overall transcription rate constant and overall translation rate constant on specific growth rate has been sugested.Used experimental data of which engineered microorganisms express interferon(IFN),Decay constant of IFN,mRNA transcription rate constant,IFN expression rate constant have been estimated.An...

Based on known molecular interactions of aporepressor,corepressor and inducer,a mathematical model of product formation about the Trp operon regulated recombinant microbes has been proposed,The linear relation of the overall transcription rate constant and overall translation rate constant on specific growth rate has been sugested.Used experimental data of which engineered microorganisms express interferon(IFN),Decay constant of IFN,mRNA transcription rate constant,IFN expression rate constant have been estimated.An equation ralated to IFN concentration in fermentation on specific growth rate and Trp concentration has been obtained.By application of the equation,the expression of IFN is calculated based on Trp concentration and specific growth rate in fermentation.Also,the optimum overall culture time can be determined.

根据阻遏蛋白,辅阻遏因子与启动基因之间的相互作用,建立了采用色氨酸启动子的基因工程重组微生物的产物表达数学模型。提出了mRNA最大转录速率常数和产物表达速率常数与比生长速率呈线性关系的假设,用干扰素基因工程菌培养过程中的实验数据估计了mRNA转录速率常数,干扰素表达速率常数和干扰素降解速率常数。推导出了发酵过程中干扰素表达量和细胞内干扰素比活计算公式。运用这些公式可以通过检测色氨酸浓度和细胞比生长速率来计算预测干扰素表达量,确定最佳的终止培养时间

Progresses in the application of recombinant microorganism, transgenic microbe, genic engineering strain, transgenic animmal and plant genic technology in remaking antibiotic and producing hormone like drug, amino acids and enzymes are reviewed.

综述了重组微生物、转基因微生物、基因工程菌、转基因动物以及植物的基因技术在改造抗生素、生产激素类药物、生产氨基酸和酶等方面应用的最近进展 .

 
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