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Single strand ribonucleic acid, RNA research
mRNA leaves the nucleus, it moves to a ribosome 3d rendering
Protein synthesis, Ribosomes building amino acid chains (polypeptides) during translation
Genetically Modified
3d helix chromosome or Dna structure, technology science background. 3d render illustration
Photomicrograph of filamentous blue-green algae, Oscillatoria species. Each band along the stand is one cell. This filament is very short probably having recently parted from a longer one. Filaments are typically many times longer. This algae is mobile, it moves and twists through the water. San Francisco Bay, California, USA. Live specimen. Wet mount, 40X objective, transmitted brightfield illumination. Note - motion blur of live specimen, very shallow depth of field, chromatic aberration and uneven focus are inherent in light microscopy.
DNA with biological concept, 3d rendering. 3D illustration.
background
Ribonucleic acid strands consisting of nucleotides important for protein bio-synthesis - 3d illustration
Dengue virus cells. 3D Render
mRNA (multicoloured strand) is decoded in a ribosome to produce an aminoacid chain, that folds into a protein (red). tRNA (dark violet) molecules carry single aminoacids that are incoporated into the growing chain.
3D rendered part of a DNA chain on a black background with a copy space for scientific designs
Spiral of DNA and RNA. An illustration of the differences in the structure of the DNA and RNA molecules.
Endosomes - 3d rendered image of Endosomes are membrane-bound organelles. They are parts of endocytic membrane transport pathway.  Endomembrane system in cells. Bilayer Lipid Membrane. Abstract medical illustration. Microscopic view. Microbiologic research concept.
DNA Double Helix, on white background. 3D rendering
3d rendering of Easter eggs background
3D illustration, concept of genetic engineering or genetic modification.
The three-dimensional structure of proteins is represented in a variety of conformations. This image is based on the ribbon structure of a protein. It is suitable for biology notebooks and book covers.\nThis image has not been created by AI.
RNA and proteins with biological concept, 3d rendering. 3D illustration.
Squash preparation of  onion root tip cells stained to reveal chromosomes,  Bright field illumination, light microscopy.  This image was taken with the X40 objective lens.  Depth of focus is extremely low at this magnification.  Smaller apertures give greater depth of focus, but image quality deteriorates and resolution is greatly reduced.  The aperture in this image was optimised for contrast and resolution. Chromatic abberation is inevitable in light microscopy, but has been kept to a minimum in this image.
Molecular model of messenger ribonucleic acid (mRNA). 3D illustration
Dna structure digital concept
Bacterial multidrug efflux pumps (E-CmeB) expel antibiotics  from inside the bacterium (bottom): ciprofloxacin (yellow), chloramphenicol (violet),  ampicillin (red).
3D Rendering of Molecule DNA Helix, Molecular Structure.
Nucleosome structure. Structure of an oligonucleosome, showing the packaging of DNA in chromosomes. 3D illustration.
plant Zea Stem C.S. under light mircoscope with white background
DNA close-up, DNA Molecule Model, DNA Strands, DNA animation
DNA strands. Double helix structure. Biotechnology and medical concept. Isolated on the white background.
In eukaryotic cells, DNA polymerase beta (POLB) performs base excision repair (BER) required for DNA maintenance, replication, recombination, and drug resistance. 3D cartoon model in two perpendicular projections, white background
3D rendering of microscopic molecular structure
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