基因组学

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  • genomics
基因组学基因组学
  1. “你要追寻的就是名声,”加州大学戴维斯分校基因组学研究者泰特斯·布朗说道。

    The thing you are searching for reputation says Titus Brown , a genomics researcher at the University of California , Davis . "

  2. 四方研究所和东英吉利亚大学的微生物基因组学教授马克·帕伦建议采用一个固有的专有名词清单来重新命名,因为B.1.617.2这样的标签不好念也不好记。

    Mark Pallen , professor of microbial genomics at the Quadram Institute and University of East Anglia , suggested alternatives that use a pre-generated list of proper nouns because labels like B.1.617.2 are so tricky to pronounce and remember .

  3. 同时,DNA甲基化图谱的构建可以为作物基因组学的研究提供新的实验数据、新方法和新思路。

    The methylation map could provide new data for genomics researches in plants .

  4. DNA多态性及其在植物功能基因组学研究中的应用

    DNA Polymorphism and Its Applications in Plant Functional Genomics

  5. 肿瘤发生的遗传机制;体细胞突变的发生机制;DNA修复,基因组学与分子医学。

    Cancer genetics , somatic mutagenesis , DNA repair , genomics and molecular medicine .

  6. DNA和RNA的结构基因组学研究的应用前景

    Research progress and commercial future of structural genomics of DNA and RNA

  7. RNA干扰文库在功能基因组学研究中的发展及应用

    Development and Application of RNAi Interference Library in Functional Genomics

  8. 目前,快速发展中的环境DNA测序学科(简称环境基因组学),为这一难题的解决提供了帮助。

    The rapidly growing field of environmental DNA sequencing , called metagenomics , now helps to overcome this problem .

  9. 结构基因组学与蛋白质核磁共振(NMR)光谱

    Structural genomics and protein nuclear magnetic resonance spectra

  10. 并分析了功能基因组学的研究及RNA干扰技术在黑麦草研究中可能的应用前景。

    Furthermore , the prospects of RNA interference in Lolium genetic improvement and functional genomics are discussed .

  11. 这为罗汉果功能基因组学以及甜苷V生物合成分子机理研究打下了坚实的基础。

    This is a solid foundation for the study of Siraitia grosvenorii functional genomics and mogrosides V molecular mechanism of biosynthesis .

  12. 表达序列标签(EST)在基因组学研究中的应用

    Application of EST in the Study of Genomics

  13. 从DNA计算机的基本原理、应用形式、与基因组学研究的重要关系等方面总结和评述了相关研究进展。

    This article presents the basic principles of DNA computer , its applications , its important relationship with genomic research and our comments on all above issues .

  14. 介绍了DNA和RNA的结构基因组学的主要研究内容和进展,讨论了结构基因组学的商业应用前景。

    This paper introduces the main contents and progress of structural genomics research of DNA and RNA and discusses commercial future of structural genomics .

  15. 由基因组学先驱克莱格凡特在加利福尼亚成立的syntheticgenomics公司,是该领域的领头羊。

    Synthetic Genomics , the company founded in California by genomics pioneer Craig Venter , is the leader here .

  16. 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。

    DNA microarray or DNA chip technology has been explored for profiling gene expression , comparing genomic contents , analyzing DNA sequence variations , and genotyping , etc .

  17. 随着基因组学和DNA测序技术的迅速发展,微生物的全基因组测序已经变得越来越便捷和高效。

    As a consequence of the rapid development of genomics and DNA sequencing technology , whole genome sequence of microorganisms now is becoming more and more common and efficient .

  18. 基于比较基因组学的玉米ESTs定位方法

    A Strategy Based on Comparative Genomics to Align ESTs of Maize

  19. 单倍体再用秋水仙碱处理后获得DH系,所得材料对油菜功能基因组学的研究可能有一定的价值。

    We generated completely homozygous DH lines as a model system for functional genomics work in B.

  20. 目的从粪便上清液代谢组学及基因组学探讨类风湿关节炎(Rheumatoidarthritis,简称RA)脾虚证的中医证候实质。

    Objective : To study the spleen deficiency syndrome of rheumatoid arthritis from fecal supernatant metabonomics and Genomics of traditional Chinese medicine .

  21. 近年来植物功能基因组学的研究技术主要包括表达序列标签、基因表达的系列分析、DNA微阵列和反向遗传学等。

    In recent years , main methods of studying the plant functional genomics include expressed sequence tag , serial analysis of gene expression , DNA micro array , reverse genetics and so on .

  22. 此外,又利用生物信息学和比较基因组学的方法,预测了控制主要性状QTL所在染色体区段的候选基因。

    In addition , the cadidate genes of QTL located on chromosome regions were speculated using comparative genomics and bioinformatics .

  23. 目前研究重点主要在基因组学(Genomics)和蛋白质学(Proteomics),即分析核酸和蛋白质中表达结构功能的生物信息。

    The recent research focuses on Genomics and Proteomics , which investigate structural and functional information of nucleus and protein .

  24. 该图谱是国内第一张结球白菜分子遗传图谱,将为基因定位、比较基因组学和重要农艺性状的QTL定位等研究打下良好基础。

    The molecular genetic map is fundamental for gene localization , comparative genomics , and QTL mapping of agronomically important traits .

  25. 植物功能基因组学研究是利用结构基因组学积累的数据,从中得到有价值的信息,阐述DNA序列的功能,从而对所有基因如何行使其职能并控制各种生命现象的问题作出回答。

    That plant functional genomics study is to give an answer to how gene controls various biological phenomena , obtaining valuable information from the data of structure genomics and expounding the function of DNA sequence .

  26. 分子标记技术的建立与发展不仅促进了基因(QTL)的遗传定位研究,而且为在DNA水平上进行物种间的比较基因组学研究提供了重要的技术手段。

    The development of molecular marker technology facilitated genetic mapping of genes and QTLs , also provided an important tool to comparative mapping of different species at the DNA level .

  27. 斯氏假单胞菌(PseudomonasStutzeri)A1501的基因组学研究

    Study on the Genome of Pseudomonas Stutzeri A 1 50 1

  28. 遗传图谱是数量性状基因定位(QTL)、基因图位克隆、比较基因组学研究以及分子标记辅助育种等的基础。

    Genetic linkage map is a QTL mapping , the genetic map spaces cloning , comparative genomics research and and molecular marker-assisted breeding the foundation .

  29. 在水生物疾病的研究方面,海洋环境基因组学用DNA微阵列技术分析染病生物的基因表达谱,筛选出发生变化的基因表达,为理解病毒感染机制提供了大量信息。

    The application of DNA microarray technology can analyze gene expression profiling to pick out gene expressions that are generally altered or compromised that might then link to reduced resistance of organisms to disease , providing information for viral infection mechanisms .

  30. 植物功能基因组学的研究方法主要包括:表达序列标签(EST)、基因表达序列分析(SAGE)c、DNA微阵列和DNA芯片、反求遗传学、蛋白质组学和生物信息学;

    The research metheds of functional genomics , mainly include Expressed Sequence Tag ( EST ), Serial Analysis of Gene Expression ( SAGE ), cDNA microarrays and DNA chips , Reverse genetics , Proteomics and Bioinformatics .