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SYNOPSIS Triplet conjugants of Paramecium caudatum which appeared naturally in mating mixtures and those of Paramecium multimicronucleatum which were produced by conjugation-inducing chemicals were isolated. Triplet conjugants lasting for more than 3 h were stained to examine macronuclear events. In P. caudatum , only 2 triplets among 182 (1%) contained macronuclear fragmentation in all 3 members. The most frequently occurring triplets (79%) were those producing 1 cell without and 2 cells with macronuclear fragments. There were also triplets (17%) producing 1 cell with, and 2 without macronuclear fragments, and some (3%) with 3 cells that contained no fragments. The length of persistence of the triplet was not responsible for the occurrence of macronuclear fragmentation in the 3rd cell of the triplet. In P. multimicronucleatum , the same 4 classes of triplets occurred, but the most frequently occurring class was that consisting of 3 cells (91%) with macronuclear fragments. Induction of nearly 100% of triplets with 3 such cells was possible by isolating the triplets' from a culture which was treated chemically at about 24 h after the last feeding. Treatment with chemicals in starved cultures resulted in triplets with incompletely fragmented or nonfragmented macronuclei. Further, in P. multimicronucleatum , chemicallyinduced triplets involving only holdfast pairs to which the 3rd cells were uniting often produced 3 cells with fragmented macronuclei.  相似文献   
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ABSTRACT. Some strains of P. caudatum contain macronuclear inclusion bodies that are morphologically distinct from bacteria. They vary in number as well as in size in each macronucleus. The inclusion bodies are basically divided into peripheral and inner areas. The peripheral area consists of fibrillar proteins of 22–24 nm in thickness, which are specifically stained with fast green in 45% acetic acid. On the other hand, chromatin-like granules are within the inner area of large inclusion bodies. The granules within the inner area changed their distribution depending upon the physiological state of their host cells. Transplantation experiments and crossbreeding analyses revealed that genetic factors responsible for the multiplication of the inclusion bodies can 'infect' other macronuclei (or cells) via the cytoplasm. These results suggest that the inclusion bodies are a non-bacterial macronuclear endosymbiont, possibly produced by a virus or a virus-like element.  相似文献   
3.
Trichocyst discharge is an effective defense of Paramecium against Dileptus margaritifer. The possible defensive function of backward swimming, which often follows trichocyst discharge upon Paramecium-Dileptus encounters was studied. Mutants incapable of backward swimming (pawnA in P. tetraurelia, cnrA in P. caudatum) escaped from dilepti nearly as frequently as wild-type cells. Double mutants (pawnA-nd7, cnrA-tnd2) were eaten nearly as frequently as mutants incapable of trichocyst discharge. Thus, in the defense of Paramecium against D. margaritifer, the role of backward swimming is minor, if any, compared to trichocyst discharge. Among escaped cells, about a half of wild-type and essentially none of pawnA (cnrA) cells showed backward swimming. Paramecium behavior during the encounter can be mimicked by the local, not global, application of lysozyme which is a strong secretagogue of trichocyst.  相似文献   
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