k Schizosaccharomyces pombe yeast, SEM Schizosaccharomyces pombe yeast cells. Coloured scanning electron micrograph SEM of S. pombe yeast cells dividing. S. pombe is a singlecelled fungus that is studied widely as a model organism for eukaryotic cell division. It is a rodshaped yeast that grows by elongation at its ends. It replicates by binary fission. When it reaches a certain size its genetic material deoxyribonucleic acid, DNA separates to opposite ends of the cell and a division septum wall grows across the centre of the cell, dividing it into two daughter cells that are identical to the parent cell. Magnification x800 when printed 10cm wide., by STEVE GSCHMEISSNERSCIENCE PHOTO LIBRARY Stock Photo - Afloimages
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Schizosaccharomyces pombe yeast, SEM Schizosaccharomyces pombe yeast cells. Coloured scanning electron micrograph  SEM  of S. pombe yeast cells dividing. S. pombe is a single celled fungus that is studied widely as a model organism for eukaryotic cell division. It is a rod shaped yeast that grows by elongation at its ends. It replicates by binary fission. When it reaches a certain size its genetic material  deoxyribonucleic acid, DNA  separates to opposite ends of the cell and a division septum  wall  grows across the centre of the cell, dividing it into two daughter cells that are identical to the parent cell. Magnification: x800 when printed 10cm wide., by STEVE GSCHMEISSNER SCIENCE PHOTO LIBRARY
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Schizosaccharomyces pombe yeast, SEM

Schizosaccharomyces pombe yeast cells. Coloured scanning electron micrograph (SEM) of S. pombe yeast cells dividing. S. pombe is a single-celled fungus that is studied widely as a model organism for eukaryotic cell division. It is a rod-shaped yeast that grows by elongation at its ends. It replicates by binary fission. When it reaches a certain size its genetic material (deoxyribonucleic acid, DNA) separates to opposite ends of the cell and a division septum (wall) grows across the centre of the cell, dividing it into two daughter cells that are identical to the parent cell. Magnification: x800 when printed 10cm wide., by STEVE GSCHMEISSNER/SCIENCE PHOTO LIBRARY

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