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Genes Collection (page 7)

"Unlocking the Secrets: Exploring the Fascinating World of Genes" The X and Y chromosomes: Unraveling the Blueprint of Life

Background imageGenes Collection: DNA and methyltransferase complex C014 / 0011

DNA and methyltransferase complex C014 / 0011
DNA and methyltransferase complex. Molecular model showing a molecule of methyltransferase bound to a DNA (deoxyribonucleic acid) strand (red and yellow)

Background imageGenes Collection: Damaged DNA, conceptual artwork C013 / 9999

Damaged DNA, conceptual artwork C013 / 9999
Damaged DNA, conceptual computer artwork

Background imageGenes Collection: Caduceus with DNA, artwork C013 / 9989

Caduceus with DNA, artwork C013 / 9989
Caduceus with DNA. Computer artwork of the Caduceus symbol entwined by a strand of DNA (deoxyribonucleic acid). The caduceus is the traditional symbol of the Greek god Hermes

Background imageGenes Collection: DNA molecule, artwork C013 / 9977

DNA molecule, artwork C013 / 9977
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: DNA molecule, artwork C013 / 9976

DNA molecule, artwork C013 / 9976
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: Chromosome, artwork C013 / 9967

Chromosome, artwork C013 / 9967
Chromosome. Computer artwork of a human chromosome. Chromosomes are composed of deoxyribonucleic acid (DNA) that contain sections, called genes, which encode the bodys genetic information

Background imageGenes Collection: DNA molecule, artwork C013 / 9975

DNA molecule, artwork C013 / 9975
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: DNA molecule, artwork C013 / 9974

DNA molecule, artwork C013 / 9974
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: DNA molecule, artwork C013 / 9972

DNA molecule, artwork C013 / 9972
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: DNA molecule, artwork C013 / 9973

DNA molecule, artwork C013 / 9973
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: Damaged chromosome, conceptual artwork C013 / 9970

Damaged chromosome, conceptual artwork C013 / 9970
Damaged chromosome, conceptual computer artwork. Chromosomes are composed of deoxyribonucleic acid (DNA) that contain sections, called genes, which encode the bodys genetic information

Background imageGenes Collection: DNA molecule, artwork C013 / 9971

DNA molecule, artwork C013 / 9971
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: Chromosomes, artwork C013 / 9968

Chromosomes, artwork C013 / 9968
Chromosomes. Computer artwork of human chromosomes. Chromosomes are composed of deoxyribonucleic acid (DNA) that contain sections, called genes, which encode the bodys genetic information

Background imageGenes Collection: DNA replication by helicase enzyme C013 / 9382

DNA replication by helicase enzyme C013 / 9382
Computer artwork of DNA Helicase breaking apart the hydrogen bonds of a DNA strand for replication. Helicases are a class of enzymes vital to all living organisms

Background imageGenes Collection: Nanopore DNA sequencing, conceptual image C013 / 8901

Nanopore DNA sequencing, conceptual image C013 / 8901
Nanopore DNA sequencing, conceptual image. Computer artwork of a DNA (deoxyribonucleic acid) strand (green and red) being sequenced (letters) as it passes through a nanopore (tiny hole)

Background imageGenes Collection: Albino hedgehog

Albino hedgehog. Close-up of an albino hedgehog (subfamily Erinaceinae) being held by a worker at the Sochi Arboretum exotarium park, Sochi, Russia

Background imageGenes Collection: DNA molecule, artwork C013 / 4688

DNA molecule, artwork C013 / 4688
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: DNA molecule, artwork C013 / 4687

DNA molecule, artwork C013 / 4687
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: Chromosomes, artwork C013 / 4619

Chromosomes, artwork C013 / 4619
Chromosomes. Computer artwork of human chromosomes. Chromosomes are composed of deoxyribonucleic acid (DNA) that contain sections, called genes, which encode the bodys genetic information

Background imageGenes Collection: Chromosomes, artwork C013 / 4620

Chromosomes, artwork C013 / 4620
Chromosomes. Computer artwork of human chromosomes. Chromosomes are composed of deoxyribonucleic acid (DNA) that contain sections, called genes, which encode the bodys genetic information

Background imageGenes Collection: Gene therapy, conceptual image C013 / 4716

Gene therapy, conceptual image C013 / 4716
Gene therapy, conceptual image. Computer artwork of DNA (deoxyribonucleic acid) molecules inside pill capsules, representing treatments to repair abnormally functioning genes

Background imageGenes Collection: Gene therapy, conceptual image C013 / 4717

Gene therapy, conceptual image C013 / 4717
Gene therapy, conceptual image. Computer artwork of a DNA (deoxyribonucleic acid) molecule inside a pill capsule, representing treatments to repair abnormally functioning genes

Background imageGenes Collection: Gene therapy, conceptual image C013 / 4715

Gene therapy, conceptual image C013 / 4715
Gene therapy, conceptual image. Computer artwork of DNA (deoxyribonucleic acid) molecules inside nano-robots, representing the use of nano-robots to repair abnormally functioning genes

Background imageGenes Collection: Forensic DNA profiling, conceptual artwor C013 / 4714

Forensic DNA profiling, conceptual artwor C013 / 4714
Forensic DNA profiling, conceptual artwork

Background imageGenes Collection: Gene therapy, conceptual image C013 / 4690

Gene therapy, conceptual image C013 / 4690
Gene therapy, conceptual image. Computer artwork of DNA (deoxyribonucleic acid) molecules inside pill capsules, representing treatments to repair abnormally functioning genes

Background imageGenes Collection: DNA molecule, artwork C013 / 4689

DNA molecule, artwork C013 / 4689
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageGenes Collection: White-tailed Deer TOM 598 Young albino fawn - Michigan. USA Odocoileus virginianus © Tom & Pat

White-tailed Deer TOM 598 Young albino fawn - Michigan. USA Odocoileus virginianus © Tom & Pat Leeson / ardea. com
TOM-598 White-tailed DEER - young albino fawn Michigan, USA. July Odocoileus virginianus Tom & Pat Leeson contact details: prints@ardea.com tel: +44 (0) 20 8318 1401

Background imageGenes Collection: Herpetologist taking liver from frog for genetic study purposes, Manu Road, Departemento Cuzco

Herpetologist taking liver from frog for genetic study purposes, Manu Road, Departemento Cuzco, Andes, Peru

Background imageGenes Collection: Chromosome and DNA molecules

Chromosome and DNA molecules. Computer artwork of a condensed chromosome with molecules of DNA (deoxyribonucleic acid) behind it

Background imageGenes Collection: Meiosis, SEM

Meiosis, SEM
Meiosis. Coloured scanning electron micrograph (SEM) of chromosomes during metaphase (I) of meiosis (gamete formation). Chromosomes consist of deoxyribonucleic acid (DNA) and proteins

Background imageGenes Collection: Electronic and biologic systems, artwork

Electronic and biologic systems, artwork
Electronic and biological systems. Computer artwork showing a comparison between electronic and biological systems, showing similarities between the components at different levels of complexity

Background imageGenes Collection: Chromosome, SEM

Chromosome, SEM
Chromosome. Coloured scanning electron micrograph (SEM) of a condensed chromosome showing chromomeres. Chromosomes, which consist of two identical chromatids joined at a centromere

Background imageGenes Collection: Yeast proteome

Yeast proteome. Researchers hand holding a tray containing part of the yeast (Saccharomyces cerevisiae) proteome. This is the complete set of proteins that makes up an organism



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"Unlocking the Secrets: Exploring the Fascinating World of Genes" The X and Y chromosomes: Unraveling the Blueprint of Life. A mesmerizing sight: Leopard's black panther showcases melanistic phase, a result of its genes. DNA molecule: Nature's intricate code for life captured in stunning computer models. Abstract artwork reveals the beauty hidden within the DNA molecule. Gregor Mendel - Pioneering Austrian botanist who laid the foundation for understanding genetic inheritance. Peering into our origins: DNA Double Helix with Autoradiograph offers a glimpse into our genetic makeup. Guinea pigs showcase Mendel's Law through a vibrant poster, highlighting genetic patterns in action. Z-DNA tetramer molecule C015/6557 - Unveiling unique structures within our chromosomes. Chromosomes - The carriers of hereditary information that shape who we are. Delving deep into genetics, this captivating journey takes us from unraveling the mysteries held by X and Y chromosomes to witnessing nature's marvels like a leopard donning its striking black panther coat due to specific genes at play. The awe-inspiring complexity of life is encapsulated in DNA molecules, whether portrayed as computer models or abstract artworks that depict their elegance and intricacy. We pay homage to Gregor Mendel, an Austrian botanist whose groundbreaking work paved the way for understanding how traits are passed down through generations. Through images like DNA Double Helix with Autoradiograph or posters demonstrating Mendel's Laws using guinea pigs as examples, we gain insight into our own origins and witness firsthand how genetics shape every living being on this planet. Zooming further into microscopic wonders, we encounter Z-DNA tetramer molecules and explore fascinating structures found within our very own chromosomes – repositories of invaluable hereditary information.