k Interphase cell treated with Colchicine, light micrograph Fluorescent light micrograph of a cell in interphase of mitosis nuclear division that has been treated with the drug colchicine. Mitosis is the formation of two daughter nuclei from one parent nucleus. Fluorescent markers have been used to highlight alpha tubulin green, a component of microtubules, and DNA deoxyribonucleic acid, pink. Colchicine destabilises microtubules, part of the cell cytoskeleton involved in nuclear division. The microtubules become unable to assemble and so cannot move chromosomes around the cell., by DR. JUAN F. GIMENEZABIAN SCIENCE PHOTO LIBRARY Stock Photo - Afloimages
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Interphase cell treated with Colchicine, light micrograph Fluorescent light micrograph of a cell in interphase of mitosis  nuclear division  that has been treated with the drug colchicine. Mitosis is the formation of two daughter nuclei from one parent nucleus. Fluorescent markers have been used to highlight alpha tubulin  green , a component of microtubules, and DNA  deoxyribonucleic acid, pink . Colchicine destabilises microtubules, part of the cell cytoskeleton involved in nuclear division. The microtubules become unable to assemble and so cannot move chromosomes around the cell., by DR. JUAN F. GIMENEZ ABIAN   SCIENCE PHOTO LIBRARY
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Interphase cell treated with Colchicine, light micrograph

Fluorescent light micrograph of a cell in interphase of mitosis (nuclear division) that has been treated with the drug colchicine. Mitosis is the formation of two daughter nuclei from one parent nucleus. Fluorescent markers have been used to highlight alpha tubulin (green), a component of microtubules, and DNA (deoxyribonucleic acid, pink). Colchicine destabilises microtubules, part of the cell cytoskeleton involved in nuclear division. The microtubules become unable to assemble and so cannot move chromosomes around the cell., by DR. JUAN F. GIMENEZ-ABIAN / SCIENCE PHOTO LIBRARY

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