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《分子生物学》课程教学课件(PPT讲稿)Chapter 8 the hot topics in genomics and Post-Genome Era

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《分子生物学》课程教学课件(PPT讲稿)Chapter 8 the hot topics in genomics and Post-Genome Era
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Molecular Biology course dhapter 8 the hot topics in genomics and Post-Genome Era

Chapter 8 the hot topics in genomics and Post-Genome Era •Molecular Biology Course

Outline Topic 1 Genome and genomics Topic 2 Proteomics Topic 3 Metabolomics Topic 4 Human Microbiome Project (HMP)

Topic 1 Genome and genomics Topic 2 Proteomics Topic 3 Metabolomics Topic 4 Human Microbiome Project (HMP) Outline

Key points重点掌握: The progress and importance of the HGP(HGP 划的进展及重要意义): Shotgun sequencing technology(鸟枪法序列分析技 术); The content of HapMap plan(HapMap计划内容); ■人类元基因组计划 the concept and progress of proteomics and metabolomics(基因组、基因组学、蛋白质组、蛋白组 学及代谢组学概念及进展)

Key points 重点掌握: The progress and importance of the HGP( HGP 计 划的进展及重要意义); Shotgun sequencing technology(鸟枪法序列分析技 术); The content of HapMap plan (HapMap计划内容) ; 人类元基因组计划 the concept and progress of proteomics and metabolomics(基因组、基因组学、蛋白质组、蛋白组 学及代谢组学概念及进展)

The studies on gene are the main line of life sciences in the 20th century 基因研究是20世纪生命科学的主线 in the first half of the 20th century as represented by genetics,the main outcomes of the life sciences include law of segregation law of independent assortment,law of linkage and crossing over,chemical properties of gene,DNA double helix structure,etc. 20世纪的上半叶,以遗传学为代表,生命科学通过 对基因分离、独立分配、连锁及化学属性等的研 究,最這以作为遗传信息载体的DNA双螺旋结构 的提出而告捷

The studies on gene are the main line of life sciences in the 20th century 基因研究是20世纪生命科学的主线 ★ in the first half of the 20th century , as represented by genetics, the main outcomes of the life sciences include law of segregation , law of independent assortment , law of linkage and crossing over , chemical properties of gene, DNA double helix structure, etc. 20世纪的上半叶,以遗传学为代表,生命科学通过 对基因分离、独立分配、连锁及化学属性等的研 究,最后以作为遗传信息载体的DNA双螺旋结构 的提出而告捷

In the second half of the 20th century,as represented by molecular biology,the life sciences reveal the mechanisms of DNA replication,transcription,translation and analysis the genetic codes and put forward “the central dogma”. 20世纪下半吐,以分子生物学为代表,生命科学通 过对基因复制、! 破译 分支的“中心法则”的问世而集成

★ In the second half of the 20th century, as represented by molecular biology, the life sciences reveal the mechanisms of DNA replication, transcription, translation and analysis the genetic codes and put forward “the central dogma”. 20世纪下半叶,以分子生物学为代表,生命科学通 过对基因复制、转录、翻译及遗传密码的分析与 破译,最终以统一生命世界各层次,生命科学各 分支的“中心法则”的问世而集成

In the 1990s,with the global genome project, particularly the Human Genome Project (HGP),gene research has been near"the peak',human knowledge on the life world reached an unprecedented depth and breadth. 20世纪90年代,随着全球基因组计划,尤其是人类 基因组计划付©P枧模空前,速度惊人的推进 基因研究已接近」 登峰造极” 类对生命世界 的理性认识迭到了箭所耒宥的深度写舒产度

★ In the 1990s, with the global genome project, particularly the Human Genome Project (HGP) , gene research has been near “the peak”, human knowledge on the life world reached an unprecedented depth and breadth. 20世纪90年代,随着全球基因组计划,尤其是人类 基因组计划(HGP)规模空前、速度惊人的推进, 基因研究已接近“登峰造极”,人类对生命世界 的理性认识达到了前所未有的深度与广度

Topic 1 Genome and Genomics (基因组和基因组学)

Topic 1 Genome and Genomics (基因组和基因组学)

1.1 Genome: the word‘genome'is from‘gene'and 'chromosome',refers to a full set of chromosomes or genes in an organism. 基因组一词是从genes和chromosomes合成而 来,用来描述生物的全部基因和染色体组成的概 念

1.1 Genome: the word ‘genome’ is from ‘gene’ and ‘chromosome’ , refers to a full set of chromosomes or genes in an organism. 基因组一词是从 genes 和 chromosomes 合成而 来,用来描述生物的全部基因和染色体组成的概 念

*In 1986,American scientist Thomas Roderick first proposed the concept of genomics. Genomics is the study of an organism's entire genome,including genome mapping (including the genetic map,physical map and transcription map),nucleotide sequence analysis,gene mapping and gene functional analysis. 1986年,美国科学家Thomas Roderick首先提出 了基因组学(genomics)的概念。指对所有基因 进行基因组作图(包括遗传图谱,物理图谱和转 录图谱),核苷酸序列分析,基因定位和基因功 能分析

★In 1986, American scientist Thomas Roderick first proposed the concept of genomics. Genomics is the study of an organism's entire genome, including genome mapping (including the genetic map, physical map and transcription map), nucleotide sequence analysis, gene mapping and gene functional analysis. 1986年, 美国科学家 Thomas Roderick 首先提出 了基因组学 (genomics) 的概念。指对所有基因 进行基因组作图(包括遗传图谱,物理图谱和转 录图谱),核苷酸序列分析,基因定位和基因功 能分析

Genomics should be divided into two categories:structural genomics,whose goal is the whole genome sequencing,and functional genomics,whose target is to identify the function of gene.The latter also known as the post-genome research. 基因组学应该包括两方面内容:以全基因组测序为 目标的结构基因组学(structural genomics)和 以基因功能鉴定为目标的功能基因组学 (functional genomics),后者又称后基因组研 究(post-genome)

★ Genomics should be divided into two categories: structural genomics, whose goal is the whole genome sequencing, and functional genomics, whose target is to identify the function of gene. The latter also known as the post-genome research. 基因组学应该包括两方面内容:以全基因组测序为 目标的结构基因组学 (structural genomics) 和 以基因功能鉴定为目标的功能基因组学 (functional genomics) ,后者又称后基因组研 究 (post-genome)

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