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Genomics02:02

Genomics

36.5K
Genomics is the science of genomes: it is the study of all the genetic material of an organism. In humans, the genome consists of information carried in 23 pairs of chromosomes in the nucleus, as well as mitochondrial DNA. In genomics, both coding and non-coding DNA is sequenced and analyzed. Genomics allows a better understanding of all living things, their evolution, and their diversity. It has a myriad of uses: for example, to build phylogenetic trees, to improve productivity and...
36.5K
Genome-wide Association Studies-GWAS01:11

Genome-wide Association Studies-GWAS

13.6K
Genome-wide association studies or GWAS are used to identify whether common SNPs are associated with certain diseases. Suppose specific SNPs are more frequently observed in individuals with a particular disease than those without the disease. In that case, those SNPs are said to be associated with the disease. Chi-square analysis is performed to check the probability of the allele likely to be associated with the disease.
GWAS does not require the identification of the target gene involved in...
13.6K
Next-generation Sequencing03:00

Next-generation Sequencing

91.5K
The first human genome sequencing project cost $2.7 billion and was declared complete in 2003, after 15 years of international cooperation and collaboration between several research teams and funding agencies. Today, with the advent of next-generation sequencing technologies, the cost and time of sequencing a human genome have dropped over 100 fold.
Next-Generation Sequencing Methods
Although all next-generation methods use different technologies, they all share a set of standard features....
91.5K
In-vitro Mutagenesis01:16

In-vitro Mutagenesis

14.0K
To learn more about the function of a gene, researchers can observe what happens when the gene is inactivated or “knocked out,” by creating genetically engineered knockout animals. Knockout mice have been particularly useful as models for human diseases such as cancer, Parkinson’s disease, and diabetes.
14.0K
RACE - Rapid Amplification of cDNA Ends02:35

RACE - Rapid Amplification of cDNA Ends

6.4K
Rapid Amplification of cDNA Ends, or RACE, is one of the most effective methods to obtain a full-length cDNA from an mRNA sequence between a known internal region to the unknown sequence at the 5’ or 3’ end. The unknown region is cloned in the cDNA by a gene-specific primer that binds the known end, and a hybrid primer that attaches a predefined anchor sequence to the unknown end of the cDNA. The sequence in between is amplified by PCR with an anchor primer and a gene-specific...
6.4K
Genomic DNA in Prokaryotes00:46

Genomic DNA in Prokaryotes

44.0K
The genome of most prokaryotic organisms consists of double-stranded DNA organized into one circular chromosome in a region of cytoplasm called the nucleoid. The chromosome is tightly wound, or supercoiled, for efficient storage. Prokaryotes also contain other circular pieces of DNA called plasmids. These plasmids are smaller than the chromosome and often carry genes that confer adaptive functions, such as antibiotic resistance.
Genomic Diversity in Bacteria
Although bacterial genomes are much...
44.0K

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Updated: Jul 20, 2025

Heuristic Mining of Hierarchical Genotypes and Accessory Genome Loci in Bacterial Populations
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コミュニティ主導のゲノミクス

Fatimah L C Jackson1

  • 1Howard University and QuadGrid Data Lab, Washington, DC, USA.

Science (New York, N.Y.)
|August 3, 2023
PubMed
まとめ
この要約は機械生成です。

古代のDNA分析は 奴隷化されたアフリカ系アメリカ人と 彼らの子孫を 結びつけています この遺伝学的な研究は 遺伝学と歴史の理解に不可欠なつながりを 提供しています

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科学分野:

  • 遺伝学
  • 人類学
  • 歴史

背景:

  • アフリカ系アメリカ人の遺伝学的な研究は 歴史的記録によってしばしば妨げられています.
  • 古代DNA (aDNA) は 歴史的記録の隙間を埋める可能性のある道を示しています

研究 の 目的:

  • 歴史的な個人と現代人の間の遺伝的つながりを確立する古代DNAの有用性を調査する.
  • アフリカ系アメリカ人の 遺伝学におけるDNAの応用を探求するためです

主な方法:

  • 骨格からDNAの抽出と配列決定
  • 比較型ゲノム解析と現代のDNAデータベース
  • 集団遺伝学の原理の適用

主要な成果:

  • 現代のアフリカ系アメリカ人の子孫と 古代のサンプルを結びつける 遺伝的マーカーの 特定に成功しました
  • 世代を超えて血統を追跡する DNAの実用性の実証

結論:

  • 古代のDNA分析は 子孫と祖先の過去を 再び結びつけるための強力なツールです
  • この方法論は アフリカ系アメリカ人の歴史とアイデンティティの 理解を大幅に高めることができます