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DNA Collection

Choose a picture from our DNA Collection for your Wall Art and Photo Gifts

3,049 items

Background imageDNA Collection: Watson and Crick with their DNA model

Watson and Crick with their DNA model
COMMERCIAL USE REQUIRES CLEARANCE. The discoverers of the structure of DNA. James Watson (b.1928) at left and Francis Crick (1916-2004), with their model of part of a DNA molecule in 1953

Background imageDNA Collection: Rosalind Franklin

Rosalind Franklin
ROSALIND FRANKLIN Pioneer Molecular Biologist she made important contributions to understanding the structure of DNA

Background imageDNA Collection: DNA transcription, molecular model

DNA transcription, molecular model. Secondary structure of the enzyme RNA polymerase II synthesising a mRNA (messenger ribonucleic acid, lilac) strand from a DNA (deoxyribonucleic acid)

Background imageDNA Collection: Double-stranded RNA molecule

Double-stranded RNA molecule. Computer model of the structure of double-stranded RNA (ribonucleic acid). The majority of RNA in a cell is in the single-stranded form

Background imageDNA Collection: DNA molecule

DNA molecule. 3D-computer artwork of a space filling molecular model of deoxyribonucleic acid (DNA)

Background imageDNA Collection: Watson and Crick, DNA discovers

Watson and Crick, DNA discovers
Watson and Crick. Caricature of the molecular biologists and discoverers of the structure of DNA James Watson (born 1928, left) and Francis Crick (1916-2004), with their model of a DNA molecule

Background imageDNA Collection: DNA molecule

DNA molecule. Computer artwork of a molecule of DNA (deoxyribonucleic acid) with the chemical formulas of its components. DNA is composed of two sugar-phosphate backbones (blue)

Background imageDNA Collection: DNA molecule, artwork

DNA molecule, artwork
DNA molecule. Computer artwork of a double stranded DNA (deoxyribonucleic acid) molecule amongst clouds of swirling gas. DNA is composed of two strands twisted into a double helix

Background imageDNA Collection: The Tarbet Hotel, Loch Lomond, Caledonian Railway poster, 1920

The Tarbet Hotel, Loch Lomond, Caledonian Railway poster, 1920
Caledonian Railway poster, showing the hotel, and a boat and steamer on the loch, with highland scenery. Artwork by DNA

Background imageDNA Collection: Peebles for Health, Rest and Recreation, railway poster, 1900-1922

Peebles for Health, Rest and Recreation, railway poster, 1900-1922
Caledonian Railway poster. Artwork by DNA

Background imageDNA Collection: Computer screen showing a human genetic sequence

Computer screen showing a human genetic sequence
DNA sequencing. Computer screen showing a sequence of base pairs forming part of the human genetic code. The three billion base pairs that form the genetic code of human DNA (deoxyribonucleic acid)

Background imageDNA Collection: X and Y chromosomes

X and Y chromosomes, coloured scanning electron micrograph (SEM). Humans have 46 chromosomes in total: 23 inherited from the mother and 23 from the father

Background imageDNA Collection: DNA molecule

DNA molecule, computer artwork. DNA (deoxyribonucleic acid) is composed of two strands twisted into a double helix. Each strand consists of a sugar-phosphate backbone attached to nucleotide bases

Background imageDNA Collection: Rough endoplasmic reticulum, TEM

Rough endoplasmic reticulum, TEM
Rough endoplasmic reticulum, coloured transmission electron micrograph (TEM). This section shows the rough endoplasmic reticulum (ER, folds, centre), a membranous structure that occurs in cells

Background imageDNA Collection: Herpes virus replicating

Herpes virus replicating, computer artwork.Viruses are only able to replicate in a host cell.The glycoprotein spikes in the virus envelope(green)

Background imageDNA Collection: Cell structure

Cell structure. Confocal light micrograph of cultured endothelial cells. A fluorescent dye has been used to show the cell structure

Background imageDNA Collection: Mitosis, light micrograph

Mitosis, light micrograph
Mitosis. Confocal light micrograph of the stages of mitosis (nuclear division) and cytokinesis (cell division). During mitosis the nuclear envelope disintegrates (3rd image) and the chromosomes (blue)

Background imageDNA Collection: Fingerprint scanner

Fingerprint scanner. Persons finger being scanned by a fingerprint scanner. This scanner is being used to open a door. The ridges on peoples fingers form a unique identifying pattern

Background imageDNA Collection: Computer artwork of a beta DNA segment and spheres

Computer artwork of a beta DNA segment and spheres
DNA molecule. Computer artwork of part of a strand of beta DNA (deoxyribonucleic acid) seen on a background of spheres. The spheres may represent bacteria

Background imageDNA Collection: Nucleotide base matrix

Nucleotide base matrix. Computer artwork depicting a matrix of nucleotide bases: adenine (A), cytosine (C), guanine (G) and thymine (T)

Background imageDNA Collection: DNA molecule, computer model

DNA molecule, computer model
DNA molecule. Computer artwork of the molecular structure of DNA (deoxyribonucleic acid). The DNA molecule is composed of two strands twisted into a double helix

Background imageDNA Collection: Nucleosome molecule

Nucleosome molecule, computer model. A nucleosome is a subunit of chromatin, the substance that forms chromosomes. It consists of a short length of DNA (deoxyribonucleic acid)

Background imageDNA Collection: DNA molecule, abstract image

DNA molecule, abstract image
DNA molecule. Abstract computer artwork of a view along the inside of a molecule of DNA (deoxyribonucleic acid). DNA contains sections called genes that encode the bodys genetic information

Background imageDNA Collection: DNA nucleosome, molecular model

DNA nucleosome, molecular model
DNA nucleosome. Molecular model of a nucleosome, the fundamental repeating unit used to package DNA (deoxyribonucleic acid) inside cell nuclei

Background imageDNA Collection: Dividing yeast cells, SEM

Dividing yeast cells, SEM
Dividing yeast cells. Coloured scanning electron micrograph (SEM) of Schizosaccharomyces pombe yeast cells dividing. S. pombe is a single-celled fungus that is studied widely as a model organism for

Background imageDNA Collection: Dividing yeast cells, SEM

Dividing yeast cells, SEM
Dividing yeast cells. Coloured scanning electron micrograph (SEM) of Schizosaccharomyces pombe yeast cells dividing. S. pombe is a single-celled fungus that is studied widely as a model organism for

Background imageDNA Collection: E. coli bacterium

E. coli bacterium
Escherichia coli. Coloured transmission electron micrograph (TEM) of an Escherichia coli bacterium. E. coli are Gram-negative bacilli (rod-shaped) bacteria

Background imageDNA Collection: HIV reverse transcription enzyme

HIV reverse transcription enzyme. Molecular models of the reverse transcriptase enzyme found in HIV (the human immunodeficiency virus)

Background imageDNA Collection: Hepatitis C virus enzyme, molecular model

Hepatitis C virus enzyme, molecular model
Hepatitis C virus enzyme. Molecular model of a genetic enzyme from the Hepatitis C virus. This enzyme is called HC-J4 RNA polymerase

Background imageDNA Collection: False-col TEM of AIDS virus inside T-cell

False-col TEM of AIDS virus inside T-cell
False-colour transmission electron micrograph of AIDS virus particles inside a stricken T4 lymphoc- yte, a white blood cell of the immune system

Background imageDNA Collection: Orangutan portrait

Orangutan portrait
Orangutans are great apes, as opposed to monkeys, and are closely related to humans, having 97% of DNA in common. They are extremely patient and intelligent mammals who are observant and inquisitive

Background imageDNA Collection: Arecibo message and decoded key C016 / 6817

Arecibo message and decoded key C016 / 6817
Arecibo message and decoded key. Diagram showing the binary transmission (left) known as the Arecibo message, with the message decoded and labelled at centre and right

Background imageDNA Collection: Chloroplast structure, artwork

Chloroplast structure, artwork
Chloroplast structure. Artwork showing the internal structure of chloroplasts, the organelles in plant cells responsible for photosynthesis

Background imageDNA Collection: Primordial Soup

Primordial Soup
Christophe Kiciak

Background imageDNA Collection: Rosalind Franklin, British chemist

Rosalind Franklin, British chemist
Rosalind Franklin (1920-1958), British chemist and X-ray crystallographer, holding a model of DNA (deoxyribonucleic acid)

Background imageDNA Collection: DNA, illustration

DNA, illustration
DNA (deoxyribonucleic acid) molecule, computer illustration

Background imageDNA Collection: Biomedical illustration of DNA Replication as bases attach to strand with two newly formed strands

Biomedical illustration of DNA Replication as bases attach to strand with two newly formed strands twist eventually producing two new identical double DNA strands

Background imageDNA Collection: Plasma cells, TEM

Plasma cells, TEM
Plasma cells. Coloured transmission electron micrograph (TEM) of plasma cells. Plasma cells are mature B lymphocytes (white blood cells) that produce and secrete antibodies during an immune response

Background imageDNA Collection: RNA-editing enzyme, molecular model

RNA-editing enzyme, molecular model
RNA-editing enzyme. Molecular model of a left-handed, RNA double helix (Z-RNA, centre) bound by the Z alpha domain of the human RNA-editing enzyme ADAR1 (double-stranded RNA adenosine deaminase)

Background imageDNA Collection: Zinc fingers bound to a DNA strand

Zinc fingers bound to a DNA strand, molecular model. The double helix of DNA (deoxyribonucleic acid, red and yellow) is seen here with two Zif268 proteins (blue and green)

Background imageDNA Collection: Full set of male chromosomes, SEM

Full set of male chromosomes, SEM
Set of human chromosomes, coloured scanning election micrograph (SEM). Chromosomes are a packaged form of the genetic material deoxyribonucleic acid (DNA)

Background imageDNA Collection: Chromosome

Chromosome. Computer artwork of a condensed chromosome. Chromosomes, which consist of two identical chromatids joined at a centromere (centre)

Background imageDNA Collection: Dividing cells

Dividing cells. Computer artwork of a spiral of cells during mitosis (nuclear division). During mitosis two daughter nuclei are formed from one parent nucleus

Background imageDNA Collection: Square tomato

Square tomato. Conceptual image of a tomato that has a cuboid shape. This could represent a tomato that has been genetically modified to form this shape to allow more efficient packaging

Background imageDNA Collection: Anti-cancer drug binding to DNA, AFM

Anti-cancer drug binding to DNA, AFM
Drug-DNA complexes. Coloured atomic force micrograph (AFM) of plasmids (blue) of DNA (deoxyribonucleic acid) bound to the anti-cancer drug ditercalinium

Background imageDNA Collection: DNA autoradiogram, artwork

DNA autoradiogram, artwork. Autoradiograms show the order of nucleotide bases (basic building blocks) in a sample of DNA (deoxyribonucleic acid)

Background imageDNA Collection: Computer artwork of DNA replication

Computer artwork of DNA replication
DNA replication. Computer artwork depicting DNA (deoxyribonucleic acid) replication. This segment of DNA is being " unzipped" to form a Y-shaped replication fork

Background imageDNA Collection: DNA Double Helix with Autoradiograph

DNA Double Helix with Autoradiograph
Conceptual computer illustration of the DNA double helix together with a graphic representation of an autoradiograph display



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Why Choose Us?

We are a leading provider of Art Prints and Photo Gifts since 2004, working in partnership with a range of Sporting Clubs, Charities, Museums and Picture Libraries. A large share of profits from any of their images will go directly towards supporting that charity or club. Our archive of images is carefully curated to bring you a wide range of subjects, including landscapes, wildlife, architecture, and more. We ship from our partner labs in the UK, USA, EU (Netherlands) and Australia.
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How do I place an order?

Ordering is quick & easy - Just follow 5 Simple Steps:
  1. Find your image: Use our search box or browse our online photo Collections to find the image you want.

  2. Choose your print format: Select your desired product and add it to your cart.

  3. Enter your details: If you're a returning customer, simply enter your email address and password, and we'll fill in your billing and shipping address details. All personal details are held securely and are fully GDPR compliant. As standard, we remove all Personally Identifiable Information after 12 months.

  4. Pay for your purchase: We use state-of-the-art security for online shopping and do not have access to your card details.

  5. Sit back and relax: We'll email you confirmation of your order and when it's dispatched. Registered customers can also track orders in the 'My Account' area.

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How do I pay for an order?

You can pay for your order with most of the major credit and debit cards, or PayPal. For added security, major financial institutions process payment details separately and securely on our behalf. We do not have access to your online payment card details. Online payments are preferred however we do take phone orders. For UK customers only we accept cheques issued against a UK bank.
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Is my data safe?

We take data security very seriously. We do not have access to your full card details and all payments are requested over a fully secure connection. Additionally, we fully comply with current European and GDPR legislation, and automatically remove all personal data after at most 12 months (unless you have an account with us and have signed in recently). We also have a strict opt-in policy and would never sell your personal details. Your data is only used to fulfill your order promptly and efficiently.
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Is wall art ready to hang?

For quick and easy installation all wall art, including framed prints, canvas prints and metal prints are supplied with a ready to hang solution on the back. Generally, saw tooth hangers are applied as they allow wall art to hang flush against the wall. The serrated edge of the hanger prevents the frame from shifting or tilting when hung.
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Are the photo prints fade resistant?

Yes, we use archival quality photo paper photographic paper for vivid reproduction Prints are an accurate representations of the original artwork, which is preserved for artistic character and authenticity. We guarantee they match previews shown on our web site