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Development in Electrofused Conjugants of Tetrahymena thermophila
Authors:ERIC S COLE  MARK A VIRTUE  KATHLEEN R STUART
Institution:Biology Department, St. Olaf College, Northfield, Minnesota 55057, USA. Colee@stolaf.edu
Abstract:Electric shock can create parabiotic fusions of living Tetrahymena cells. In this study, cells were mated and successful pairs were electrofused with either vegetatively growing cells or other mating pairs. In particular, we electrofused pairs from normal diploid x diploid] matings with vegetatively dividing cells in G- or M-phase of the cell cycle. We also fused diploid x diploid] conjugants with mating pairs involving an aneuploid partner diploid x "star"], which typically undergo an abortive conjugal pathway termed genomic exclusion. Using such parabiotic fusions we identified and characterized two developmentally critical landmarks: 1) the "abort" signal, which is initiated in pairs with nuclear defects (this first becomes evident soon after the completion of Meiosis I or the beginning of Meiosis II); and 2) the "terminal commitment point", a developmental stage in normal diploid x diploid] pairs after which conjugation no longer responds to a parabiotically transmitted abort signal (this correlates with the onset of the second postzygotic nuclear division). Finally we demonstrate that a conjugal-arrest-activity varies with the vegetative cell cycle, reaching its highest level of activity during M-phase and dropping just after cytokinesis.
Keywords:Cell cycle  ciliates  conjugation  electrofusion  genomic exclusion  meiosis  mitosis  parabiosis  sexual reproduction
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