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DNA genotyping and sequencing

Data da imagem: 04/12/2018
Cod. da imagem: c0386479
Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 04/12/2018

Cod. da imagem: c0386479

Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

DNA genotyping and sequencing. Centrifugation of DNA samples prior to high-throughput genotyping and sequencing. This research is taking place at the Cancer Genomics Research Laboratory, in Gaithersburg, Maryland, USA, part of the National Cancer Institute's Division of Cancer Epidemiology and Genetics (DCEG). Photographed in 2016.

Editorial RM
DNA genotyping and sequencing

Data da imagem: 04/12/2018
Cod. da imagem: c0386474
Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 04/12/2018

Cod. da imagem: c0386474

Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

DNA genotyping and sequencing. Technician plating deoxyribonucleic acid (DNA) samples for high-throughput genotyping and sequencing. This research is taking place at the Cancer Genomics Research Laboratory, in Gaithersburg, Maryland, USA, part of the National Cancer Institute's Division of Cancer Epidemiology and Genetics (DCEG). Also shown is an automated liquid-handling robot. Photographed in 2016.

Editorial RM
DNA genotyping and sequencing

Data da imagem: 04/12/2018
Cod. da imagem: c0386480
Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 04/12/2018

Cod. da imagem: c0386480

Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

DNA genotyping and sequencing. Selection of DNA samples being processed for amplification. This research is taking place at the Cancer Genomics Research Laboratory, in Gaithersburg, Maryland, USA, part of the National Cancer Institute's Division of Cancer Epidemiology and Genetics (DCEG). Photographed in 2016.

Editorial RM
DNA genotyping and sequencing

Data da imagem: 04/12/2018
Cod. da imagem: c0386475
Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 04/12/2018

Cod. da imagem: c0386475

Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

DNA genotyping and sequencing. Technician preparing for a viral whole-genome sequencing experiment. This research is taking place at the Cancer Genomics Research Laboratory, in Gaithersburg, Maryland, USA, part of the National Cancer Institute's Division of Cancer Epidemiology and Genetics (DCEG). Photographed in 2016.

Editorial RM
DNA genotyping and sequencing

Data da imagem: 04/12/2018
Cod. da imagem: c0386476
Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 04/12/2018

Cod. da imagem: c0386476

Crédito: National Cancer Institute/ Science Photo Library/ Fotoarena

DNA genotyping and sequencing. Close-up of a technician preparing for a viral whole-genome sequencing experiment. This research is taking place at the Cancer Genomics Research Laboratory, in Gaithersburg, Maryland, USA, part of the National Cancer Institute's Division of Cancer Epidemiology and Genetics (DCEG). Photographed in 2016.

Editorial RM
GENETICS RESEARCH

Data da imagem: 11/07/2002
Cod. da imagem: CRYHDR
Crédito: LAURENT / BSIP/ Alamy/ Fotoarena

Direito Controlado


Data da imagem: 11/07/2002

Cod. da imagem: CRYHDR

Crédito: LAURENT / BSIP/ Alamy/ Fotoarena

Photo essay. Institut Gustave-Roussy, in the French region of Ile-de-France. Clinical Biology Department. Molecular genetics workstation. Polymerase chain reaction (PCR) is a technique to target a specific piece of DNA and then to use that piece as a template to produce billions of copies. Called DNA amplification, it is used here in decoding the genome to study predisposition to skin cancer. Here, DNA sequencing.

Criativa RM
GENETICS RESEARCH

Data da imagem: 11/07/2002
Cod. da imagem: CRYHE4
Crédito: LAURENT / BSIP/ Alamy/ Fotoarena

Direito Controlado


Data da imagem: 11/07/2002

Cod. da imagem: CRYHE4

Crédito: LAURENT / BSIP/ Alamy/ Fotoarena

Photo essay. Institut Gustave-Roussy, in the French region of Ile-de-France. Clinical Biology Department. Molecular genetics workstation. Polymerase chain reaction (PCR) is a technique to target a specific piece of DNA and then to use that piece as a template to produce billions of copies. Called DNA amplification, it is used here in decoding the genome to study predisposition to skin cancer. Here, DNA sequencing.

Criativa RM
GENETIC ENGINEERING

Data da imagem: 26/08/1997
Cod. da imagem: CT01GK
Crédito: ESTIOT / BSIP/ Alamy/ Fotoarena

Direito Controlado


Data da imagem: 26/08/1997

Cod. da imagem: CT01GK

Crédito: ESTIOT / BSIP/ Alamy/ Fotoarena

DNA has two long chains composed of altered molecules of phosphoric acid and deoxyribose linked to four nucleic acids : adenine, thymine, cytosine, and guanine. The two chains are twisted together forming an helix. DNA molecules are the components of chromosomes. Genes correspond to different fragments of DNA carrying hereditary information. Gene can be manipulated to study their development and functional mechanisms. Gene engineering can be used to diagnosis hereditary diseases or for therapeutic purposes (gene therapy).

Criativa RM
GENETICS, DNA

Data da imagem: 28/05/1997
Cod. da imagem: CRYYWP
Crédito: V & L / BSIP/ Alamy/ Fotoarena

Direito Controlado


Data da imagem: 28/05/1997

Cod. da imagem: CRYYWP

Crédito: V & L / BSIP/ Alamy/ Fotoarena

DNA has two long chains composed of altered molecules of phosphoric acid and deoxyribose linked to four nucleic acids: adenine, thymine, cytosine, and guanine. The two chains are twisted together forming an helix. DNA molecules are the constituent components of chromosomes. Genes correspond to different fragments of DNA carrying hereditary information. This is a symbolic representation of gene research showing chromosomes, a test tube, the DNA helix, and a gene map.

Criativa RM
Bovine genetics research

Data da imagem: 31/12/1969
Cod. da imagem: c0207614
Crédito: Peggy Greb/us Department Of Agriculture/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0207614

Crédito: Peggy Greb/us Department Of Agriculture/ Science Photo Library/ Fotoarena

Bovine genetics research. Geneticist analysing bovine DNA using BovineSNP50 BeadChips, a form of genetic analysis using microchip arrays. In this case, the device provides genotypic data and decodes a cow's genome at more than 50,000 locations. This data is used in cattle research ranging from genome selection to mapping of birth defects. This research is being carried out by the Agricultural Research Service (ARS) of the US Department of Agriculture. Photographed in the USA.

Editorial RM
DNA MassARRAY analysis

Data da imagem: 31/12/1969
Cod. da imagem: c0156521
Crédito: Arno Massee/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0156521

Crédito: Arno Massee/ Science Photo Library/ Fotoarena

DNA MassARRAY analysis. Close-up of a Sequenom DNA MassARRAY machine. MassARRAY platforms are used for SNP (single-nucleotide polymorphism) genotyping, methylation detection and quantitative gene expression analysis.

Editorial RM
DNA MassARRAY analysis

Data da imagem: 31/12/1969
Cod. da imagem: c0156522
Crédito: Arno Massee/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0156522

Crédito: Arno Massee/ Science Photo Library/ Fotoarena

DNA MassARRAY analysis. Close-up of a Sequenom DNA MassARRAY machine. MassARRAY platforms are used for SNP (single-nucleotide polymorphism) genotyping, methylation detection and quantitative gene expression analysis.

Editorial RM
DNA MassARRAY analysis

Data da imagem: 31/12/1969
Cod. da imagem: c0156517
Crédito: Arno Massee/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0156517

Crédito: Arno Massee/ Science Photo Library/ Fotoarena

DNA MassARRAY analysis. Technician filling sample plates with resin in a molecular epidemiology lab before running it through a Sequenom DNA MassARRAY machine. MassARRAY platforms are used for SNP (single-nucleotide polymorphism) genotyping, methylation detection and quantitative gene expression analysis.

Editorial RM
DNA MassARRAY analysis

Data da imagem: 31/12/1969
Cod. da imagem: c0156518
Crédito: Arno Massee/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0156518

Crédito: Arno Massee/ Science Photo Library/ Fotoarena

DNA MassARRAY analysis. Technician filling sample plates with resin in a molecular epidemiology lab before running it through a Sequenom DNA MassARRAY machine. MassARRAY platforms are used for SNP (single-nucleotide polymorphism) genotyping, methylation detection and quantitative gene expression analysis.

Editorial RM
DNA MassARRAY analysis

Data da imagem: 31/12/1969
Cod. da imagem: c0156519
Crédito: Arno Massee/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0156519

Crédito: Arno Massee/ Science Photo Library/ Fotoarena

DNA MassARRAY analysis. Technician holding chips from a Sequenom DNA MassARRAY machine. MassARRAY platforms are used for SNP (single-nucleotide polymorphism) genotyping, methylation detection and quantitative gene expression analysis.

Editorial RM
DNA MassARRAY analysis

Data da imagem: 31/12/1969
Cod. da imagem: c0156520
Crédito: Arno Massee/ Science Photo Library/ Fotoarena

Direito Controlado


Data da imagem: 31/12/1969

Cod. da imagem: c0156520

Crédito: Arno Massee/ Science Photo Library/ Fotoarena

DNA MassARRAY analysis. Technician holding a chip from a Sequenom DNA MassARRAY machine. MassARRAY platforms are used for SNP (single-nucleotide polymorphism) genotyping, methylation detection and quantitative gene expression analysis.

Editorial RM
 
 
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