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   microbial genomes 的翻译结果: 查询用时:0.201秒
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microbial genomes
相关语句
  微生物基因组
     Searching for drug targets in microbial genomes
     微生物基因组上药物作用靶位的识别
短句来源
     The genes in 11 microbial genomes with different G+C contents have been studied. It has been found that the distribution of bases at three codon positions is asymmetric.
     通过对11种具有不同G+C含量的微生物基因组进行分析,显示蛋白质编码区碱基分布具有不对称性。
短句来源
     The rapidly accumulating data of sequenced microbial genomes allows to conduct systematic studies on microbial gene regulation as well as function.
     越来越多的微生物基因组序列数据为系统地研究基因的调节和功能创造了有利条件 .
短句来源
     Protein-coding regions of eleven microbial genomes with different G+C contents have been studied. The base distribution at three codon positions is asymmetric. The contents of single bases and dinucleotides associated with stop codons are quite low.
     对11种具有不同G+C含量的微生物基因组蛋白质编码区进行统计分析,结果显示蛋白质编码区3个密码子位碱基分布具有明显的不对称性,与终止密码子对应的一些单、双核苷酸出现的频率很低,由此得出结论:终止密码子对编码区碱基的使用起重要限制作用.
短句来源
  “microbial genomes”译为未确定词的双语例句
     Sequencing and comparative study of microbial genomes provided a completely new platform for the studies of pathogenic bacteria.
     微生物全基因组测序以及在此基础上进行的比较基因组学研究为病原微生物的研究提供了一个全新的平台。
短句来源
     With the increasing availability of complete microbial genomes, DNA microarray technology is destined to become a common tool in many areas of microbiological research, including microbial physiology, pathogenesis, epidemiology, ecology, phylogeny, pathway engineering, and fermentation optimization. In this article,the current advances in microbiological research based on DNA microarray technology are reviewed.
     随着越来越多的微生物种类完成全基因组测序 ,在微生物生理、致病机制、流行病学、生态学、系统发育学、途径工程、发酵最优化等研究领域中 ,DNA微点阵技术必将成为一个常用的研究手段
短句来源
  相似匹配句对
     Searching for drug targets in microbial genomes
     微生物基因组上药物作用靶位的识别
短句来源
     From genomes to disease
     从基因组到疾病
短句来源
     Microbial Flocculant
     微生物絮凝剂
短句来源
     Microbial Biomineralization
     微生物成矿(英文)
短句来源
     The genomes of R, ciliaris and R.
     R. ciliaris同R.
短句来源
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  microbial genomes
Experimental data and nucleotide sequence analyses show that these processes appear to occur in any prokaryotic habitat and have shaped microbial genomes throughout evolution over hundreds of million years.
      
A global survey of microbial genomes reveals a correlation between genome size, repeat content and lifestyle.
      
Transposome Insertional Mutagenesis and Direct Sequencing of Microbial Genomes
      
Extreme environments are a particularly rich source of microbial genomes, and endangered habitats should be sampled as a matter of priority.
      
discoideum genome has provided new insights into evolutionary strategies evolved by transposable elements (TEs) to settle in compact microbial genomes and to maintain active populations over evolutionary time.
      
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Facing the 21st century, emerging and re-emerging infectious diseases, especially viral diseases, still serious threaten human health. Despite of the elimination of smallpox and the almost eradication of poliomyelitis in the last decades, however, more than 30 new microbial pathogens and communicable diseases have been identified. At the same time, after many years of decline in incidence, diseases such as yellow fever have re-emerging as public health threats in Africa and South America. Re-emerging tuberculosis...

Facing the 21st century, emerging and re-emerging infectious diseases, especially viral diseases, still serious threaten human health. Despite of the elimination of smallpox and the almost eradication of poliomyelitis in the last decades, however, more than 30 new microbial pathogens and communicable diseases have been identified. At the same time, after many years of decline in incidence, diseases such as yellow fever have re-emerging as public health threats in Africa and South America. Re-emerging tuberculosis is spreaded all over the world. Fighting against these emerging and re-emerging infectious diseases by using modern biotechnology is one of the top priorities of both national governments and scientists. At present analysis of entire genome sequence of human pathogens have become a research hotspot in the field of life science after implementation of human genome project. About 24 entire microbial genome sequences have been published. The gene mutation of the pathogenic microbe is a fundamental base for its variation in pathogenesis; therefore, very important data can be obtained from genomic-sequence analysis, it seems beneficial to develop the anti-microbe vaccines and drugs. Additionally, it is essential to further strengthen infectious disease surveillance, to develop other effective disease prevention and control measures.

本文论述了21世纪危害人类的几种传染病的研究现状及进展,认为严重病毒分子致病机理研究及重要病原体基因组工程是传染病基础研究中的2个关键问题。

DNA microarray or DNA chip technology has been explored for profiling gene expression, comparing genomic contents, analyzing DNA sequence variations, and genotyping, etc . With the increasing availability of complete microbial genomes, DNA microarray technology is destined to become a common tool in many areas of microbiological research, including microbial physiology, pathogenesis, epidemiology, ecology, phylogeny, pathway engineering, and fermentation optimization.In this article,the current...

DNA microarray or DNA chip technology has been explored for profiling gene expression, comparing genomic contents, analyzing DNA sequence variations, and genotyping, etc . With the increasing availability of complete microbial genomes, DNA microarray technology is destined to become a common tool in many areas of microbiological research, including microbial physiology, pathogenesis, epidemiology, ecology, phylogeny, pathway engineering, and fermentation optimization.In this article,the current advances in microbiological research based on DNA microarray technology are reviewed.

DNA微点阵 (DNA芯片 )技术已经被广泛应用于基因表达分析、比较基因组学、DNA序列变异分析和基因分型等多方面的研究。随着越来越多的微生物种类完成全基因组测序 ,在微生物生理、致病机制、流行病学、生态学、系统发育学、途径工程、发酵最优化等研究领域中 ,DNA微点阵技术必将成为一个常用的研究手段

Two strategies introduced for whole genome sequencing,one is clone by clone method,the other is whole genome shotgun sequencing,for microbes which are very important to us,whole genome shotgun sequencing method is very convenient.In this article we discussed the library construction?long-to-short-ratio of insert,?total number of reads should be sequenced?assembly and gap filling technologies of the whole microbial genome shotgun sequencing method while some examples presented.

全基因组测序主要有二种策略 ,一种是分级鸟枪法测序 ,另一种是全基因组鸟枪法测序。微生物是一种十分重要的遗传资源 ,运用全基因组鸟枪法可以方便、快捷地完成其基因组的测序任务。本文对微生物全基因组鸟枪法测序中文库构建、插入片段的长短比例、反应投入量、拼接以及补洞等问题作了较细致的描述 ,有些步骤作了举例说明。

 
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